価格表

在庫・価格 : 2024年05月08日 03時26分 現在

商品名 商品コード メーカー 包装 価格 在庫 リスト
Anti-p95/nibrin/NBS1, Human, Rabbit-Poly
データシート
NB100-143 NOVノバス バイオロジカルス
Novus biologicals, LLC
50 μl ¥103,000 1個 追加

在庫・価格 : 2024年05月08日 03時26分 現在

Anti-p95/nibrin/NBS1, Human, Rabbit-Poly

  • 商品コード:NB100-143
  • メーカー:NOV
  • 包装:50μl
  • 価格: ¥103,000
  • 在庫:1個
使用文献
No. 文献情報 備考 参照
1 Wang Y et al. BASC, a super complex of BRCA1-associated proteins involved in the recognition and repair of aberrant DNA structures. Genes Dev. 2000 Apr;14(8):927-39
Wang Y et al
2000/01/01
Western Blot, Immunoprecipitation, Immunofluorescence, Human PubMed
2 Gatei M et al. ATM-dependent phosphorylation of nibrin in response to radiation exposure. Nat. Genet. 2000 May;25(1):115-9
Gatei M et al
2000/01/01
PubMed
3 Wu G et al. NBS1 and TRF1 colocalize at promyelocytic leukemia bodies during late S/G2 phases in immortalized telomerase-negative cells. Implication of NBS1 in alternative lengthening of telomeres. J. Biol. Chem. 2000 Sep;275(39):30618-22
Wu G et al
2000/01/01
Immunoprecipitation, Human PubMed
4 Wu X et al. Independence of R/M/N focus formation and the presence of intact BRCA1. Science 2000 Jul;289(5476):11
Wu X et al
2000/01/01
PubMed
5 Paull TT et al. A critical role for histone H2AX in recruitment of repair factors to nuclear foci after DNA damage. Curr. Biol. ;10(15):886-95
Paull TT et al
Immunofluorescence, Human PubMed
6 Harfst E et al. Normal V(D)J recombination in cells from patients with Nijmegen breakage syndrome. Mol. Immunol. 2000 Oct;37(15):915-29
Harfst E et al
2000/01/01
Western Blot, Human PubMed
7 Buscemi G et al. Chk2 activation dependence on Nbs1 after DNA damage. Mol. Cell. Biol. 2001 Aug;21(15):5214-22
Buscemi G et al
2001/01/01
Western Blot, Immunoprecipitation, Immunofluorescence, Human PubMed
8 Huang J et al. Reconstitution of the mammalian DNA double-strand break end-joining reaction reveals a requirement for an Mre11/Rad50/NBS1-containing fraction. Nucleic Acids Res. 2002 Feb;30(3):667-74
Huang J et al
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Human PubMed
9 Giannini G et al. Human MRE11 is inactivated in mismatch repair-deficient cancers. EMBO Rep. 2002 Mar;3(3):248-54
Giannini G et al
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Human PubMed
10 Franchitto A et al. Bloom"s syndrome protein is required for correct relocalization of RAD50/MRE11/NBS1 complex after replication fork arrest. J. Cell Biol. 2002 Apr;157(1):19-30
Franchitto A et al
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Western Blot, Immunoprecipitation, Immunofluorescence, Human PubMed
11 Beamish H et al. Functional link between BLM defective in Bloom"s syndrome and the ataxia-telangiectasia-mutated protein, ATM. J. Biol. Chem. 2002 Aug;277(34):30515-23
Beamish H et al
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Western Blot, Immunoprecipitation, Flow Cytometry, Human PubMed
12 Stracker TH et al. Adenovirus oncoproteins inactivate the Mre11-Rad50-NBS1 DNA repair complex. Nature 2002 Jul;418(6895):348-52
Stracker TH et al
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PubMed
13 Brown KD et al. The mismatch repair system is required for S-phase checkpoint activation. Nat. Genet. 2003 Jan;33(1):80-4
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PubMed
14 Lukas C et al. Distinct spatiotemporal dynamics of mammalian checkpoint regulators induced by DNA damage. Nat. Cell Biol. 2003 Mar;5(3):255-60
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Human PubMed
15 Goldberg M et al. MDC1 is required for the intra-S-phase DNA damage checkpoint. Nature 2003 Feb;421(6926):952-6
Goldberg M et al
2003/01/01
Immunofluorescence, Human PubMed
16 Cerosaletti KM et al. Nibrin forkhead-associated domain and breast cancer C-terminal domain are both required for nuclear focus formation and phosphorylation. J. Biol. Chem. 2003 Jun;278(24):21944-51
Cerosaletti KM et al
2003/01/01
Immunoprecipitation, Western Blot, Immunofluorescence, Human PubMed
17 Scott JE et al. Supramolecular organization in streptococcal pericellular capsules is based on hyaluronan tertiary structures. Exp. Cell Res. 2003 Apr;285(1):1-8
Scott JE et al
2003/01/01
Western Blot, Immunoprecipitation, Flow Cytometry, Huma PubMed
18 Donahue SL et al. Deficient regulation of DNA double-strand break repair in Fanconi anemia fibroblasts. J. Biol. Chem. 2003 Aug;278(32):29487-95
Donahue SL et al
2003/01/01
Western Blot, Human PubMed
19 Lee JH et al. Distinct functions of Nijmegen breakage syndrome in ataxia telangiectasia mutated-dependent responses to DNA damage. Mol. Cancer Res. 2003 Jul;1(9):674-81
Lee JH et al
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Immunoprecipitation, Western Blot, Human PubMed
20 Laposa RR et al. Recapitulation of the cellular xeroderma pigmentosum-variant phenotypes using short interfering RNA for DNA polymerase H. Cancer Res. 2003 Jul;63(14):3909-12
Laposa RR et al
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Western Blot, Human PubMed
21 Udayakumar D et al. Distinct pathways of nonhomologous end joining that are differentially regulated by DNA-dependent protein kinase-mediated phosphorylation. J. Biol. Chem. 2003 Oct;278(43):41631-5
Udayakumar D et al
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Western Blot, Human PubMed
22 Krause DR et al. Suppression of Tousled-like kinase activity after DNA damage or replication block requires ATM, NBS1 and Chk1. Oncogene 2003 Sep;22(38):5927-37
Krause DR et al
2003/01/01
PubMed
23 Davalos AR et al. Bloom syndrome cells undergo p53-dependent apoptosis and delayed assembly of BRCA1 and NBS1 repair complexes at stalled replication forks. J. Cell Biol. 2003 Sep;162(7):1197-209
Davalos AR et al
2003/01/01
Western Blot, Immunoprecipitation, Immunofluorescence, Human PubMed
24 Xu X et al. NFBD1/MDC1 regulates ionizing radiation-induced focus formation by DNA checkpoint signaling and repair factors. FASEB J. 2003 Oct;17(13):1842-8
Xu X et al
2003/01/01
Immunofluorescence, Human PubMed
25 Zhang J et al. Chk2 phosphorylation of BRCA1 regulates DNA double-strand break repair. Mol. Cell. Biol. 2004 Jan;24(2):708-18
Zhang J et al
2004/01/01
Immunofluorescence, Immunoprecipitation, Western Blot, Human PubMed
26 Cheng WH et al. Linkage between Werner syndrome protein and the Mre11 complex via Nbs1. J. Biol. Chem. 2004 May;279(20):21169-76
Cheng WH et al
2004/01/01
Western Blot, Immunofluorescence, Immunoprecipitation, Human PubMed
27 Wilkinson DE et al. Recruitment of cellular recombination and repair proteins to sites of herpes simplex virus type 1 DNA replication is dependent on the composition of viral proteins within prereplicative sites and correlates with the induction of the DN
Wilkinson DE et al
2004/01/01
Immunofluorescence, Western Blot, Monkey PubMed
28 Fabbro M et al. BRCA1-BARD1 complexes are required for p53Ser-15 phosphorylation and a G1/S arrest following ionizing radiation-induced DNA damage. J. Biol. Chem. 2004 Jul;279(30):31251-8
Fabbro M et al
2004/01/01
Immunofluorescence, Western Blot, Human PubMed
29 Kitagawa R et al. Phosphorylation of SMC1 is a critical downstream event in the ATM-NBS1-BRCA1 pathway. Genes Dev. 2004 Jun;18(12):1423-38
Kitagawa R et al
2004/01/01
Western Blot, Immunofluorescence, Mouse/Human PubMed
30 Donahue SL et al. A Rad50-dependent pathway of DNA repair is deficient in Fanconi anemia fibroblasts. Nucleic Acids Res. 2004;32(10):3248-57
Donahue SL et al
2004/01/01
Human PubMed
31 Lukas C et al. Mdc1 couples DNA double-strand break recognition by Nbs1 with its H2AX-dependent chromatin retention. EMBO J. 2004 Jul;23(13):2674-83
Lukas C et al
2004/01/01
Human PubMed
32 Cerosaletti K et al. Independent roles for nibrin and Mre11-Rad50 in the activation and function of Atm. J. Biol. Chem. 2004 Sep;279(37):38813-9
Cerosaletti K et al
2004/01/01
Immunofluorescence, Western Blot, Human PubMed
33 Demuth I et al. An inducible null mutant murine model of Nijmegen breakage syndrome proves the essential function of NBS1 in chromosomal stability and cell viability. Hum. Mol. Genet. 2004 Oct;13(20):2385-97
Demuth I et al
2004/01/01
Mouse PubMed
34 Collis SJ et al. Evasion of early cellular response mechanisms following low level radiation-induced DNA damage. J. Biol. Chem. 2004 Nov;279(48):49624-32
Collis SJ et al
2004/01/01
Immunofluorescence, Western Blot, Flow Cytometry, Human PubMed
35 Demuth I et al. Human SNM1B is required for normal cellular response to both DNA interstrand crosslink-inducing agents and ionizing radiation. Oncogene 2004 Nov;23(53):8611-8
Demuth I et al
2004/01/01
PubMed
36 Kurz EU et al. Doxorubicin activates ATM-dependent phosphorylation of multiple downstream targets in part through the generation of reactive oxygen species. J. Biol. Chem. 2004 Dec;279(51):53272-81
Kurz EU et al
2004/01/01
Western Blot, Immunoprecipitation, Immunofluorescence, Human PubMed
37 Fan R et al. Defective DNA strand break repair after DNA damage in prostate cancer cells: implications for genetic instability and prostate cancer progression. Cancer Res. 2004 Dec;64(23):8526-33
Fan R et al
2004/01/01
PubMed
38 Alt JR et al. Mdm2 binds to Nbs1 at sites of DNA damage and regulates double strand break repair. J. Biol. Chem. 2005 May;280(19):18771-81
Alt JR et al
2005/01/01
Immunofluorescence, Human PubMed
39 Lilley CE et al. DNA repair proteins affect the lifecycle of herpes simplex virus 1. Proc. Natl. Acad. Sci. U.S.A. 2005 Apr;102(16):5844-9
Lilley CE et al
2005/01/01
Human, Western Blot PubMed
40 Pan J et al. Farnesyltransferase inhibitors induce DNA damage via reactive oxygen species in human cancer cells. Cancer Res. 2005 May;65(9):3671-81
Pan J et al
2005/01/01
PubMed
41 Seemanov叩 E et al. Nijmegen breakage syndrome (NBS) with neurological abnormalities and without chromosomal instability. J. Med. Genet. 2006 Mar;43(3):218-24
Seemanov叩 E et al
2006/01/01
PubMed
42 Tseng SF et al. Importin KPNA2 is required for proper nuclear localization and multiple functions of NBS1. J. Biol. Chem. 2005 Nov;280(47):39594-600
Tseng SF et al
2005/01/01
PubMed
43 Verdun RE et al. Functional human telomeres are recognized as DNA damage in G2 of the cell cycle. Mol. Cell 2005 Nov;20(4):551-61
Verdun RE et al
2005/01/01
PubMed
44 Varon R et al. Mild Nijmegen breakage syndrome phenotype due to alternative splicing. Hum. Mol. Genet. 2006 Mar;15(5):679-89
Varon R et al
2006/01/01
PubMed
45 Yang MH et al. Increased NBS1 expression is a marker of aggressive head and neck cancer and overexpression of NBS1 contributes to transformation. Clin. Cancer Res. 2006 Jan;12(2):507-15
Yang MH et al
2006/01/01
PubMed
46 Myers JS et al. Rapid activation of ATR by ionizing radiation requires ATM and Mre11. J. Biol. Chem. 2006 Apr;281(14):9346-50
Myers JS et al
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PubMed
47 Gueven N et al. Defective p53 response and apoptosis associated with an ataxia-telangiectasia-like phenotype. Cancer Res. 2006 Mar;66(6):2907-12
Gueven N et al
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PubMed
48 Sheen MR et al. Mre11-Rad50-Nbs1 complex is activated by hypertonicity. Am. J. Physiol. Renal Physiol. 2006 Nov;291(5):F1014-20
Sheen MR et al
2006/01/01
PubMed
49 Kr端ger L et al. Cancer incidence in Nijmegen breakage syndrome is modulated by the amount of a variant NBS protein. Carcinogenesis 2007 Jan;28(1):107-11
Kr端ger L et al
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PubMed
50 Takemura H et al. Defective Mre11-dependent activation of Chk2 by ataxia telangiectasia mutated in colorectal carcinoma cells in response to replication-dependent DNA double strand breaks. J. Biol. Chem. 2006 Oct;281(41):30814-23
Takemura H et al
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PubMed
51 McCabe N et al. Deficiency in the repair of DNA damage by homologous recombination and sensitivity to poly(ADP-ribose) polymerase inhibition. Cancer Res. 2006 Aug;66(16):8109-15
McCabe N et al
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PubMed
52 Dote H et al. Inhibition of hsp90 compromises the DNA damage response to radiation. Cancer Res. 2006 Sep;66(18):9211-20
Dote H et al
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PubMed
53 Mirzoeva OK et al. The Mre11/Rad50/Nbs1 complex interacts with the mismatch repair system and contributes to temozolomide-induced G2 arrest and cytotoxicity. Mol. Cancer Ther. 2006 Nov;5(11):2757-66
Mirzoeva OK et al
2006/01/01
PubMed
54 Compton SA et al. Xrcc3 and Nbs1 are required for the production of extrachromosomal telomeric circles in human alternative lengthening of telomere cells. Cancer Res. 2007 Feb;67(4):1513-9
Compton SA et al
2007/01/01
PubMed
55 Jacquemont C et al. Proteasome function is required for DNA damage response and fanconi anemia pathway activation. Cancer Res. 2007 Aug;67(15):7395-405
Jacquemont C et al
2007/01/01
PubMed
56 Stewart GS et al. RIDDLE immunodeficiency syndrome is linked to defects in 53BP1-mediated DNA damage signaling. Proc. Natl. Acad. Sci. U.S.A. 2007 Oct;104(43):16910-5
Stewart GS et al
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PubMed
57 . ;

PubMed
58 Galron R et al. Astrocyte dysfunction associated with cerebellar attrition in a Nijmegen breakage syndrome animal model. J. Mol. Neurosci. 2011 Oct;45(2):202-11
Galron R et al
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PubMed
59 Zhao X et al. Ataxia telangiectasia-mutated damage-signaling kinase- and proteasome-dependent destruction of Mre11-Rad50-Nbs1 subunits in Simian virus 40-infected primate cells. J. Virol. 2008 Jun;82(11):5316-28
Zhao X et al
2008/01/01
PubMed
60 Nahas SA et al. Rapid flow cytometry-based structural maintenance of chromosomes 1 (SMC1) phosphorylation assay for identification of ataxia-telangiectasia homozygotes and heterozygotes. Clin. Chem. 2009 Mar;55(3):463-72
Nahas SA et al
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PubMed
61 Siwicki JK et al. Telomere maintenance and cell cycle regulation in spontaneously immortalized T-cell lines from Nijmegen breakage syndrome patients. Exp. Cell Res. 2003 Jul;287(1):178-89
Siwicki JK et al
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PubMed
62 Howlett NG et al. The Fanconi anemia pathway is required for the DNA replication stress response and for the regulation of common fragile site stability. Hum. Mol. Genet. 2005 Mar;14(5):693-701
Howlett NG et al
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PubMed
63 Kanai R et al. Oncolytic virus-mediated manipulation of DNA damage responses: synergy with chemotherapy in killing glioblastoma stem cells. J. Natl. Cancer Inst. 2012 Jan;104(1):42-55
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PubMed
64 Lakdawala SS et al. Differential requirements of the C terminus of Nbs1 in suppressing adenovirus DNA replication and promoting concatemer formation. J. Virol. 2008 Sep;82(17):8362-72
Lakdawala SS et al
2008/01/01
PubMed
65 Vogel R et al. Adeno-associated virus type 2 modulates the host DNA damage response induced by herpes simplex virus 1 during coinfection. J. Virol. 2012 Jan;86(1):143-55
Vogel R et al
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PubMed
66 Ewald B et al. ATM and the Mre11-Rad50-Nbs1 complex respond to nucleoside analogue-induced stalled replication forks and contribute to drug resistance. Cancer Res. 2008 Oct;68(19):7947-55
Ewald B et al
2008/01/01
PubMed
67 Yan T et al. Differential cellular responses to prolonged LDR-IR in MLH1-proficient and MLH1-deficient colorectal cancer HCT116 cells. Clin. Cancer Res. 2009 Nov;15(22):6912-20
Yan T et al
2009/01/01
PubMed
68 Blickwedehl J et al. Role for proteasome activator PA200 and postglutamyl proteasome activity in genomic stability. Proc. Natl. Acad. Sci. U.S.A. 2008 Oct;105(42):16165-70
Blickwedehl J et al
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PubMed
69 Cervelli T et al. Processing of recombinant AAV genomes occurs in specific nuclear structures that overlap with foci of DNA-damage-response proteins. J. Cell. Sci. 2008 Feb;121(Pt 3):349-57
Cervelli T et al
2008/01/01
PubMed
70 Kato T et al. Activation of Holliday junction recognizing protein involved in the chromosomal stability and immortality of cancer cells. Cancer Res. 2007 Sep;67(18):8544-53
Kato T et al
2007/01/01
PubMed
71 Gatz SA et al. Resveratrol modulates DNA double-strand break repair pathways in an ATM/ATR-p53- and -Nbs1-dependent manner. Carcinogenesis 2008 Mar;29(3):519-27
Gatz SA et al
2008/01/01
PubMed
72 Schwartz RA et al. Adeno-associated virus replication induces a DNA damage response coordinated by DNA-dependent protein kinase. J. Virol. 2009 Jun;83(12):6269-78
Schwartz RA et al
2009/01/01
PubMed
73 Spycher C et al. Constitutive phosphorylation of MDC1 physically links the MRE11-RAD50-NBS1 complex to damaged chromatin. J. Cell Biol. 2008 Apr;181(2):227-40
Spycher C et al
2008/01/01
PubMed
74 Shimada M et al. Inactivation of the Nijmegen breakage syndrome gene leads to excess centrosome duplication via the ATR/BRCA1 pathway. Cancer Res. 2009 Mar;69(5):1768-75
Shimada M et al
2009/01/01
PubMed
75 Bohgaki T et al. Genomic instability, defective spermatogenesis, immunodeficiency, and cancer in a mouse model of the RIDDLE syndrome. PLoS Genet. 2011 Apr;7(4):e1001381
Bohgaki T et al
2011/01/01
PubMed
76 Schwartz RA et al. Distinct requirements of adenovirus E1b55K protein for degradation of cellular substrates. J. Virol. 2008 Sep;82(18):9043-55
Schwartz RA et al
2008/01/01
PubMed
77 Quanz M et al. Small-molecule drugs mimicking DNA damage: a new strategy for sensitizing tumors to radiotherapy. Clin. Cancer Res. 2009 Feb;15(4):1308-16
Quanz M et al
2009/01/01
PubMed
78 Tanaka T et al. Gefitinib radiosensitizes non-small cell lung cancer cells by suppressing cellular DNA repair capacity. Clin. Cancer Res. 2008 Feb;14(4):1266-73
Tanaka T et al
2008/01/01
PubMed
79 Bouska A et al. Mdm2 promotes genetic instability and transformation independent of p53. Mol. Cell. Biol. 2008 Aug;28(15):4862-74
Bouska A et al
2008/01/01
PubMed
80 Karen KA et al. Temporal regulation of the Mre11-Rad50-Nbs1 complex during adenovirus infection. J. Virol. 2009 May;83(9):4565-73
Karen KA et al
2009/01/01
PubMed
81 Schwartz RA et al. The Mre11/Rad50/Nbs1 complex limits adeno-associated virus transduction and replication. J. Virol. 2007 Dec;81(23):12936-45
Schwartz RA et al
2007/01/01
PubMed
82 So S et al. Autophosphorylation at serine 1981 stabilizes ATM at DNA damage sites. J. Cell Biol. 2009 Dec;187(7):977-90
So S et al
2009/01/01
PubMed
83 Boichuk S et al. Functional connection between Rad51 and PML in homology-directed repair. PLoS ONE 2011;6(10):e25814
Boichuk S et al
2011/01/01
PubMed
84 D辿ry U et al. A glycine-arginine domain in control of the human MRE11 DNA repair protein. Mol. Cell. Biol. 2008 May;28(9):3058-69
D辿ry U et al
2008/01/01
PubMed
85 Li L et al. A role for DEAD box 1 at DNA double-strand breaks. Mol. Cell. Biol. 2008 Oct;28(20):6413-25
Li L et al
2008/01/01
PubMed
86 Kuo KT et al. Prognostic Significance of NBS1 and Snail Expression in Esophageal Squamous Cell Carcinoma. Ann. Surg. Oncol. 2012 Jul;19 Suppl 3:549-57
Kuo KT et al
2012/01/01
Applications: IHC, Species: Human PubMed
87 Soares DG et al. Ataxia telangiectasia mutated- and Rad3-related kinase drives both the early and the late DNA-damage response to the monofunctional antitumour alkylator S23906. Biochem. J. 2011 Jul;437(1):63-73
Soares DG et al
2011/01/01
Species: Human, Applications: ICC/IF PubMed
88 Wohlbold L et al. Chemical genetics reveals a specific requirement for cdk2 activity in the DNA damage response and identifies nbs1 as a cdk2 substrate in human cells. PLoS Genet. 2012 Aug;8(8):e1002935
Wohlbold L et al
2012/01/01
Species: Human, Applications: WB PubMed
89 Gatei M et al. ATM protein-dependent phosphorylation of Rad50 protein regulates DNA repair and cell cycle control. J. Biol. Chem. 2011 Sep;286(36):31542-56
Gatei M et al
2011/01/01
Species: Human, Applications: WB PubMed
90 Sohn SY et al. Adenovirus Regulates Sumoylation of Mre11-Rad50-Nbs1 Components through a Paralog-Specific Mechanism. J. Virol. 2012 Sep;86(18):9656-65
Sohn SY et al
2012/01/01
Species: Human, Applications: ICC/IF, WB PubMed
91 Someya M et al. Effects of depletion of dihydropyrimidine dehydrogenase on focus formation and RPA phosphorylation. J. Radiat. Res. 2012;53(2):250-6
Someya M et al
2012/01/01
Applications: ICC/IF PubMed
92 Ou HD et al. A structural basis for the assembly and functions of a viral polymer that inactivates multiple tumor suppressors. Cell 2012 Oct;151(2):304-19
Ou HD et al
2012/01/01
Species: Human, Applications: ICC/IF PubMed
93 Degl"Innocenti D et al. DUSP6/MKP3 is overexpressed in papillary and poorly differentiated thyroid carcinoma and contributes to neoplastic properties of thyroid cancer cells. Endocr. Relat. Cancer 2013;20(1):23-37
Degl"Innocenti D et al
2013/01/01
Species: Human, Applications: WB PubMed
94 Watanabe S et al. Mutant fusion proteins with enhanced fusion activity promote measles virus spread in human neuronal cells and brains of suckling hamsters. J. Virol. 2013 Mar;87(5):2648-59
Watanabe S et al
2013/01/01
Species: Hamster, Applications: IHC, ICC/IF PubMed
95 Hsu DS et al. Identification of increased NBS1 expression as a prognostic marker of squamous cell carcinoma of the oral cavity. Cancer Sci. 2010 Apr;101(4):1029-37
Hsu DS et al
2010/01/01
Species: Human, Applications: IHC, WB PubMed
96 Duquette ML et al. CtIP is required to initiate replication-dependent interstrand crosslink repair. PLoS Genet. 2012;8(11):e1003050
Duquette ML et al
2012/01/01
Species: Human, Applications: ICC/IF PubMed
97 Murad NA et al. Mitochondrial dysfunction in a novel form of autosomal recessive ataxia. Mitochondrion 2013 May;13(3):235-45
Murad NA et al
2013/01/01
Species: Human, Applications: WB PubMed
98 Zhang T et al. Competition between NBS1 and ATMIN controls ATM signaling pathway choice. Cell Rep 2012 Dec;2(6):1498-504
Zhang T et al
2012/01/01
Species: Mouse, Applications: WB, ICC/IF PubMed
99 Sim探es M et al. Host DNA damage response facilitates African swine fever virus infection. Vet. Microbiol. 2013 Jan;
Sim探es M et al
2013/01/01
PubMed
100 Kozlov SV et al. Involvement of novel autophosphorylation sites in ATM activation. EMBO J. 2006 Aug;25(15):3504-14
Kozlov SV et al
2006/01/01
Species: Human, Applications: WB PubMed
101 Boulware SB et al. Triplex-forming oligonucleotides targeting c-MYC potentiate the anti-tumor activity of gemcitabine in a mouse model of human cancer. Mol. Carcinog. 2013 May;
Boulware SB et al
2013/01/01
Species: Human, Applications: ChIP PubMed
102 Chan KL et al. BLM is required for faithful chromosome segregation and its localization defines a class of ultrafine anaphase bridges. EMBO J. 2007 Jul;26(14):3397-409
Chan KL et al
2007/01/01
Species: Human, Applications: ICC/IF PubMed
103 Croset A et al. Inhibition of DNA damage repair by artificial activation of PARP with siDNA. Nucleic Acids Res. 2013 Aug;41(15):7344-55
Croset A et al
2013/01/01
Species: Human, Applications: ICC/IF PubMed
104 Wang JQ et al. Interaction between NBS1 and the mTOR/Rictor/SIN1 complex through specific domains. PLoS ONE 2013;8(6):e65586
Wang JQ et al
2013/01/01
Species: Human, Applications: WB PubMed
105 Silva BA et al. Targeting telomere-containing chromosome ends with a near-infrared femtosecond laser to study the activation of the DNA damage response and DNA damage repair pathways. J Biomed Opt 2013 Sep;18(9):095003
Silva BA et al
2013/01/01
Species: Mammal, Applications: ICC/IF PubMed
106 Goldstein M et al. Nucleolin mediates nucleosome disruption critical for DNA double-strand break repair. Proc. Natl. Acad. Sci. U.S.A. 2013 Oct;110(42):16874-9
Goldstein M et al
2013/01/01
Species: Human, Applications: ChIP, IP PubMed
107 Britton S et al. A new method for high-resolution imaging of Ku foci to decipher mechanisms of DNA double-strand break repair. J. Cell Biol. 2013 Aug;202(3):579-95
Britton S et al
2013/01/01
Species: Human, Applications: WB, ICC/IF PubMed
108 Chen YC et al. Activation of phosphoinositide 3-kinase by the NBS1 DNA repair protein through a novel activation motif. J. Mol. Med. 2008 Apr;86(4):401-12
Chen YC et al
2008/01/01
Applications: WB, IHC PubMed
109 Wang WY et al. Interaction of FUS and HDAC1 regulates DNA damage response and repair in neurons. Nat. Neurosci. 2013 Oct;16(10):1383-91
Wang WY et al
2013/01/01
Species: Human, Applications: ChIP PubMed
110 Eller MS et al. Induction of a p95/Nbs1-mediated S phase checkpoint by telomere 3" overhang specific DNA. FASEB J. 2003 Feb;17(2):152-62
Eller MS et al
2003/01/01
PubMed
111 Porro A et al. Functional characterization of the TERRA transcriptome at damaged telomeres. Nat Commun 2014;5:5379
Porro A et al
2014/01/01
Species: Human, Applications: WB PubMed
112 Tahara M et al. The use of Olaparib (AZD2281) potentiates SN-38 cytotoxicity in colon cancer cells by indirect inhibition of Rad51-mediated repair of DNA double-strand breaks. Mol. Cancer Ther. 2014 May;13(5):1170-80
Tahara M et al
2014/01/01
Species: Human, Applications: WB PubMed
113 Pessina F et al. The RSF1 histone-remodelling factor facilitates DNA double-strand break repair by recruiting centromeric and Fanconi Anaemia proteins. PLoS Biol. 2014 May;12(5):e1001856
Pessina F et al
2014/01/01
Species: Human, Applications: WB, ICC/IF PubMed
114 Lajud SA et al. Dual disruption of DNA repair and telomere maintenance for the treatment of head and neck cancer. Clin. Cancer Res. 2014 Dec;20(24):6465-78
Lajud SA et al
2014/01/01
Species: Human, Applications: WB PubMed
115 Gatei M et al. RAD50 phosphorylation promotes ATR downstream signaling and DNA restart following replication stress. Hum. Mol. Genet. 2014 Aug;23(16):4232-48
Gatei M et al
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