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在庫・価格 : 2025年04月26日 15時28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-PSD 95, Mouse-Mono(108E10)
データシート
124011 SS2シナプティックシステムズ
Synaptic Systems GmbH
100 μg ¥121,000
(未発注)
追加

在庫・価格 : 2025年04月26日 15時28分 現在

Anti-PSD 95, Mouse-Mono(108E10)

  • 商品コード:124011
  • メーカー:SS2
  • 包装:100μg
  • 価格: ¥121,000
  • 在庫:無(未発注)
使用文献
No. 文献情報 備考 参照
1 Perlini LE et al. Effects of phosphorylation and neuronal activity on the control of synapse formation by synapsin I. J. Cell. Sci. 2011 Nov;124(Pt 21):3643-53
Perlini LE et al
2011/01/01
application: WB PubMed
2 Fossati G et al. Reduced SNAP-25 increases PSD-95 mobility and impairs spine morphogenesis. Cell Death Differ. 2015 Sep;22(9):1425-36
Fossati G et al
2015/01/01
application: ICC PubMed
3 Kumar A et al. Long-term primary culture of neurons taken from chick embryo brain: A model to study neural cell biology, synaptogenesis and its dynamic properties. J. Neurosci. Methods 2016 Apr;263:123-33
Kumar A et al
2016/01/01
application: ICC, species: chicken PubMed
4 Nigam SM et al. Endogenous APP accumulates in synapses after BACE1 inhibition. Neurosci. Res. 2016 Aug;109:9-15
Nigam SM et al
2016/01/01
application: ICC PubMed
5 Hensel N et al. Fibroblast growth factor 23 signaling in hippocampal cells: impact on neuronal morphology and synaptic density. J. Neurochem. 2016 06;137(5):756-69
Hensel N et al
2016/01/01
application: ICC PubMed
6 Valente P et al. PRRT2 Is a Key Component of the Ca(2+)-Dependent Neurotransmitter Release Machinery. Cell Rep 2016 Apr;15(1):117-131
Valente P et al
2016/01/01
application: WB PubMed
7 Sialana FJ et al. Mass spectrometric analysis of synaptosomal membrane preparations for the determination of brain receptors, transporters and channels. Proteomics 2016 11;16(22):2911-2920
Sialana FJ et al
2016/01/01
application: WB PubMed
8 Hakim V et al. The effects of proteasomal inhibition on synaptic proteostasis. EMBO J. 2016 10;35(20):2238-2262
Hakim V et al
2016/01/01
application: ICC PubMed
9 Manca P et al. Distribution of SNAP25, VAMP1 and VAMP2 in mature and developing deep cerebellar nuclei after estrogen administration. Neuroscience 2014 Apr;266:102-15
Manca P et al
2014/01/01
application: IHC, WB PubMed
10 Reim D et al. Proteomic Analysis of Post-synaptic Density Fractions from <i>Shank3</i> Mutant Mice Reveals Brain Region Specific Changes Relevant to Autism Spectrum Disorder. Front Mol Neurosci 2017;10:26
Reim D et al
2017/01/01
application: WB PubMed
11 Chiacchiaretta M et al. Neuronal hyperactivity causes Na<sup>+</sup>/H<sup>+</sup> exchanger-induced extracellular acidification at active synapses. J. Cell. Sci. 2017 04;130(8):1435-1449
Chiacchiaretta M et al
2017/01/01
application: ICC, species: mouse PubMed
12 McDonough PM et al. Assay of Calcium Transients and Synapses in Rat Hippocampal Neurons by Kinetic Image Cytometry and High-Content Analysis: An In Vitro Model System for Postchemotherapy Cognitive Impairment. Assay Drug Dev Technol 2017 Jul;15(5):220-236
McDonough PM et al
2017/01/01
application: ICC, species: rat PubMed
13 Schmeisser MJ et al. I&#x3BA;B kinase/nuclear factor &#x3BA;B-dependent insulin-like growth factor 2 (Igf2) expression regulates synapse formation and spine maturation via Igf2 receptor signaling. J. Neurosci. 2012 Apr;32(16):5688-703
Schmeisser MJ et al
2012/01/01
application: WB, species: mouse PubMed
14 Murase S et al. Neuronal activity-dependent STAT3 localization to nucleus is dependent on Tyr-705 and Ser-727 phosphorylation in rat hippocampal neurons. Eur. J. Neurosci. 2014 Feb;39(4):557-65
Murase S et al
2014/01/01
application: ICC, species: rat PubMed
15 Cohen LD et al. Metabolic turnover of synaptic proteins: kinetics, interdependencies and implications for synaptic maintenance. PLoS ONE 2013;8(5):e63191
Cohen LD et al
2013/01/01
application: ICC, species: rat PubMed
16 Cavalcanti-de-Albuquerque JP et al. Mitochondria-Bound Hexokinase (mt-HK) Activity Differ in Cortical and Hypothalamic Synaptosomes: Differential Role of mt-HK in H<sub>2</sub>O<sub>2</sub> Depuration. Mol. Neurobiol. 2018 Jul;55(7):5889-5900
Cavalcanti-de-Albuquerque JP et al
2018/01/01
application: WB, species: rat PubMed
17 Li J et al. Structural Basis for Teneurin Function in Circuit-Wiring: A Toxin Motif at the Synapse. Cell 2018 Apr;173(3):735-748.e15
Li J et al
2018/01/01
application: ICC, species: mouse PubMed
18 Emperador-Melero J et al. Vti1a/b regulate synaptic vesicle and dense core vesicle secretion via protein sorting at the Golgi. Nat Commun 2018 08;9(1):3421
Emperador-Melero J et al
2018/01/01
application: ICC, species: mouse PubMed
19 Lazarevic V et al. Riluzole attenuates the efficacy of glutamatergic transmission by interfering with the size of the readily releasable neurotransmitter pool. Neuropharmacology 2018 12;143:38-48
Lazarevic V et al
2018/01/01
application: ICC, species: rat PubMed
20 Sun XD et al. Neogenin in Amygdala for Neuronal Activity and Information Processing. J. Neurosci. 2018 Oct;38(44):9600-9613
Sun XD et al
2018/01/01
application: WB, species: mouse PubMed
21 Borin M et al. Rac1 activation links tau hyperphosphorylation and A&#x3B2; dysmetabolism in Alzheimer&#39;s disease. Acta Neuropathol Commun 2018 Jul;6(1):61
Borin M et al
2018/01/01
application: WB, species: mouse PubMed
22 Kaczmarek-Hajek K et al. Re-evaluation of neuronal P2X7 expression using novel mouse models and a P2X7-specific nanobody. Elife 2018 08;7
Kaczmarek-Hajek K et al
2018/01/01
PubMed
23 Soykan T et al. Synaptic Vesicle Endocytosis Occurs on Multiple Timescales and Is Mediated by Formin-Dependent Actin Assembly. Neuron 2017 Feb;93(4):854-866.e4
Soykan T et al
2017/01/01
PubMed
24 Lazarevic V et al. Fluoxetine Suppresses Glutamate- and GABA-Mediated Neurotransmission by Altering SNARE Complex. Int J Mol Sci 2019 Aug;20(17)
Lazarevic V et al
2019/01/01
PubMed
25 Klotz L et al. Localization of group II and III metabotropic glutamate receptors at pre- and postsynaptic sites of inner hair cell ribbon synapses. FASEB J 2019 12;33(12):13734-13746
Klotz L et al
2019/01/01
PubMed
26 Inagaki R et al. Kir6.1 Heterozygous Mice Exhibit Aberrant Amygdala-Dependent Cued Fear Memory. Mol Neurobiol 2020 Mar;57(3):1622-1635
Inagaki R et al
2020/01/01
PubMed
27 Schoen M et al. Super-Resolution Microscopy Reveals Presynaptic Localization of the ALS/FTD Related Protein FUS in Hippocampal Neurons. Front Cell Neurosci 2015;9:496
Schoen M et al
2015/01/01
PubMed
28 Zhang RS et al. Latrophilin-2 and latrophilin-3 are redundantly essential for parallel-fiber synapse function in cerebellum. Elife 2020 03;9
Zhang RS et al
2020/01/01
PubMed
29 Li J et al. Alternative splicing controls teneurin-latrophilin interaction and synapse specificity by a shape-shifting mechanism. Nat Commun 2020 05;11(1):2140
Li J et al
2020/01/01
PubMed
30 Saldate JJ et al. The ubiquitin-proteasome system functionally links neuronal Tomosyn-1 to dendritic morphology. J. Biol. Chem. 2018 Feb;293(7):2232-2246
Saldate JJ et al
2018/01/01
PubMed
31 Li B et al. Neuronal Inactivity Co-opts LTP Machinery to Drive Potassium Channel Splicing and Homeostatic Spike Widening. Cell 2020 06;181(7):1547-1565.e15
Li B et al
2020/01/01
PubMed
32 Lin PY et al. VAMP4 Maintains a Ca<sup>2+</sup>-Sensitive Pool of Spontaneously Recycling Synaptic Vesicles. J Neurosci 2020 07;40(28):5389-5401
Lin PY et al
2020/01/01
PubMed
33 Mannara F et al. Allosteric modulation of NMDA receptors prevents the antibody effects of patients with anti-NMDAR encephalitis. Brain 2020 09;143(9):2709-2720
Mannara F et al
2020/01/01
PubMed
34 Argent L et al. Caspr2 interacts with type 1 inositol 1,4,5-trisphosphate receptor in the developing cerebellum and regulates Purkinje cell morphology. J Biol Chem 2020 09;295(36):12716-12726
Argent L et al
2020/01/01
PubMed
35 Wu X et al. Vesicle Tethering on the Surface of Phase-Separated Active Zone Condensates. Mol Cell 2021 01;81(1):13-24.e7
Wu X et al
2021/01/01
PubMed
36 Grabrucker S et al. Activation of the medial preoptic area (MPOA) ameliorates loss of maternal behavior in a Shank2 mouse model for autism. EMBO J 2021 03;40(5):e104267
Grabrucker S et al
2021/01/01
PubMed
37 Frei JA et al. Regulation of Neural Circuit Development by Cadherin-11 Provides Implications for Autism. eNeuro ;8(4)
Frei JA et al
PubMed
38 Sando R et al. Latrophilin GPCR signaling mediates synapse formation. Elife 2021 03;10
Sando R et al
2021/01/01
PubMed
39 Hoffmann C et al. Synapsin Condensates Recruit alpha-Synuclein. J Mol Biol 2021 06;433(12):166961
Hoffmann C et al
2021/01/01
PubMed
40 Jeckel P et al. Autism Spectrum Disorder Risk Factor Met Regulates the Organization of Inhibitory Synapses. Front Mol Neurosci 2021;14:659856
Jeckel P et al
2021/01/01
PubMed
  • No.: 1
  • 文献情報:
    Perlini LE et al. Effects of phosphorylation and neuronal activity on the control of synapse formation by synapsin I. J. Cell. Sci. 2011 Nov;124(Pt 21):3643-53
    Perlini LE et al
    2011/01/01
  • 備考:
    application: WB
  • 参照:
    PubMed
  • No.: 2
  • 文献情報:
    Fossati G et al. Reduced SNAP-25 increases PSD-95 mobility and impairs spine morphogenesis. Cell Death Differ. 2015 Sep;22(9):1425-36
    Fossati G et al
    2015/01/01
  • 備考:
    application: ICC
  • 参照:
    PubMed
  • No.: 3
  • 文献情報:
    Kumar A et al. Long-term primary culture of neurons taken from chick embryo brain: A model to study neural cell biology, synaptogenesis and its dynamic properties. J. Neurosci. Methods 2016 Apr;263:123-33
    Kumar A et al
    2016/01/01
  • 備考:
    application: ICC, species: chicken
  • 参照:
    PubMed
  • No.: 4
  • 文献情報:
    Nigam SM et al. Endogenous APP accumulates in synapses after BACE1 inhibition. Neurosci. Res. 2016 Aug;109:9-15
    Nigam SM et al
    2016/01/01
  • 備考:
    application: ICC
  • 参照:
    PubMed
  • No.: 5
  • 文献情報:
    Hensel N et al. Fibroblast growth factor 23 signaling in hippocampal cells: impact on neuronal morphology and synaptic density. J. Neurochem. 2016 06;137(5):756-69
    Hensel N et al
    2016/01/01
  • 備考:
    application: ICC
  • 参照:
    PubMed
  • No.: 6
  • 文献情報:
    Valente P et al. PRRT2 Is a Key Component of the Ca(2+)-Dependent Neurotransmitter Release Machinery. Cell Rep 2016 Apr;15(1):117-131
    Valente P et al
    2016/01/01
  • 備考:
    application: WB
  • 参照:
    PubMed
  • No.: 7
  • 文献情報:
    Sialana FJ et al. Mass spectrometric analysis of synaptosomal membrane preparations for the determination of brain receptors, transporters and channels. Proteomics 2016 11;16(22):2911-2920
    Sialana FJ et al
    2016/01/01
  • 備考:
    application: WB
  • 参照:
    PubMed
  • No.: 8
  • 文献情報:
    Hakim V et al. The effects of proteasomal inhibition on synaptic proteostasis. EMBO J. 2016 10;35(20):2238-2262
    Hakim V et al
    2016/01/01
  • 備考:
    application: ICC
  • 参照:
    PubMed
  • No.: 9
  • 文献情報:
    Manca P et al. Distribution of SNAP25, VAMP1 and VAMP2 in mature and developing deep cerebellar nuclei after estrogen administration. Neuroscience 2014 Apr;266:102-15
    Manca P et al
    2014/01/01
  • 備考:
    application: IHC, WB
  • 参照:
    PubMed
  • No.: 10
  • 文献情報:
    Reim D et al. Proteomic Analysis of Post-synaptic Density Fractions from <i>Shank3</i> Mutant Mice Reveals Brain Region Specific Changes Relevant to Autism Spectrum Disorder. Front Mol Neurosci 2017;10:26
    Reim D et al
    2017/01/01
  • 備考:
    application: WB
  • 参照:
    PubMed
  • No.: 11
  • 文献情報:
    Chiacchiaretta M et al. Neuronal hyperactivity causes Na<sup>+</sup>/H<sup>+</sup> exchanger-induced extracellular acidification at active synapses. J. Cell. Sci. 2017 04;130(8):1435-1449
    Chiacchiaretta M et al
    2017/01/01
  • 備考:
    application: ICC, species: mouse
  • 参照:
    PubMed
  • No.: 12
  • 文献情報:
    McDonough PM et al. Assay of Calcium Transients and Synapses in Rat Hippocampal Neurons by Kinetic Image Cytometry and High-Content Analysis: An In Vitro Model System for Postchemotherapy Cognitive Impairment. Assay Drug Dev Technol 2017 Jul;15(5):220-236
    McDonough PM et al
    2017/01/01
  • 備考:
    application: ICC, species: rat
  • 参照:
    PubMed
  • No.: 13
  • 文献情報:
    Schmeisser MJ et al. I&#x3BA;B kinase/nuclear factor &#x3BA;B-dependent insulin-like growth factor 2 (Igf2) expression regulates synapse formation and spine maturation via Igf2 receptor signaling. J. Neurosci. 2012 Apr;32(16):5688-703
    Schmeisser MJ et al
    2012/01/01
  • 備考:
    application: WB, species: mouse
  • 参照:
    PubMed
  • No.: 14
  • 文献情報:
    Murase S et al. Neuronal activity-dependent STAT3 localization to nucleus is dependent on Tyr-705 and Ser-727 phosphorylation in rat hippocampal neurons. Eur. J. Neurosci. 2014 Feb;39(4):557-65
    Murase S et al
    2014/01/01
  • 備考:
    application: ICC, species: rat
  • 参照:
    PubMed
  • No.: 15
  • 文献情報:
    Cohen LD et al. Metabolic turnover of synaptic proteins: kinetics, interdependencies and implications for synaptic maintenance. PLoS ONE 2013;8(5):e63191
    Cohen LD et al
    2013/01/01
  • 備考:
    application: ICC, species: rat
  • 参照:
    PubMed
  • No.: 16
  • 文献情報:
    Cavalcanti-de-Albuquerque JP et al. Mitochondria-Bound Hexokinase (mt-HK) Activity Differ in Cortical and Hypothalamic Synaptosomes: Differential Role of mt-HK in H<sub>2</sub>O<sub>2</sub> Depuration. Mol. Neurobiol. 2018 Jul;55(7):5889-5900
    Cavalcanti-de-Albuquerque JP et al
    2018/01/01
  • 備考:
    application: WB, species: rat
  • 参照:
    PubMed
  • No.: 17
  • 文献情報:
    Li J et al. Structural Basis for Teneurin Function in Circuit-Wiring: A Toxin Motif at the Synapse. Cell 2018 Apr;173(3):735-748.e15
    Li J et al
    2018/01/01
  • 備考:
    application: ICC, species: mouse
  • 参照:
    PubMed
  • No.: 18
  • 文献情報:
    Emperador-Melero J et al. Vti1a/b regulate synaptic vesicle and dense core vesicle secretion via protein sorting at the Golgi. Nat Commun 2018 08;9(1):3421
    Emperador-Melero J et al
    2018/01/01
  • 備考:
    application: ICC, species: mouse
  • 参照:
    PubMed
  • No.: 19
  • 文献情報:
    Lazarevic V et al. Riluzole attenuates the efficacy of glutamatergic transmission by interfering with the size of the readily releasable neurotransmitter pool. Neuropharmacology 2018 12;143:38-48
    Lazarevic V et al
    2018/01/01
  • 備考:
    application: ICC, species: rat
  • 参照:
    PubMed
  • No.: 20
  • 文献情報:
    Sun XD et al. Neogenin in Amygdala for Neuronal Activity and Information Processing. J. Neurosci. 2018 Oct;38(44):9600-9613
    Sun XD et al
    2018/01/01
  • 備考:
    application: WB, species: mouse
  • 参照:
    PubMed
  • No.: 21
  • 文献情報:
    Borin M et al. Rac1 activation links tau hyperphosphorylation and A&#x3B2; dysmetabolism in Alzheimer&#39;s disease. Acta Neuropathol Commun 2018 Jul;6(1):61
    Borin M et al
    2018/01/01
  • 備考:
    application: WB, species: mouse
  • 参照:
    PubMed
  • No.: 22
  • 文献情報:
    Kaczmarek-Hajek K et al. Re-evaluation of neuronal P2X7 expression using novel mouse models and a P2X7-specific nanobody. Elife 2018 08;7
    Kaczmarek-Hajek K et al
    2018/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 23
  • 文献情報:
    Soykan T et al. Synaptic Vesicle Endocytosis Occurs on Multiple Timescales and Is Mediated by Formin-Dependent Actin Assembly. Neuron 2017 Feb;93(4):854-866.e4
    Soykan T et al
    2017/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 24
  • 文献情報:
    Lazarevic V et al. Fluoxetine Suppresses Glutamate- and GABA-Mediated Neurotransmission by Altering SNARE Complex. Int J Mol Sci 2019 Aug;20(17)
    Lazarevic V et al
    2019/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 25
  • 文献情報:
    Klotz L et al. Localization of group II and III metabotropic glutamate receptors at pre- and postsynaptic sites of inner hair cell ribbon synapses. FASEB J 2019 12;33(12):13734-13746
    Klotz L et al
    2019/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 26
  • 文献情報:
    Inagaki R et al. Kir6.1 Heterozygous Mice Exhibit Aberrant Amygdala-Dependent Cued Fear Memory. Mol Neurobiol 2020 Mar;57(3):1622-1635
    Inagaki R et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 27
  • 文献情報:
    Schoen M et al. Super-Resolution Microscopy Reveals Presynaptic Localization of the ALS/FTD Related Protein FUS in Hippocampal Neurons. Front Cell Neurosci 2015;9:496
    Schoen M et al
    2015/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 28
  • 文献情報:
    Zhang RS et al. Latrophilin-2 and latrophilin-3 are redundantly essential for parallel-fiber synapse function in cerebellum. Elife 2020 03;9
    Zhang RS et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 29
  • 文献情報:
    Li J et al. Alternative splicing controls teneurin-latrophilin interaction and synapse specificity by a shape-shifting mechanism. Nat Commun 2020 05;11(1):2140
    Li J et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 30
  • 文献情報:
    Saldate JJ et al. The ubiquitin-proteasome system functionally links neuronal Tomosyn-1 to dendritic morphology. J. Biol. Chem. 2018 Feb;293(7):2232-2246
    Saldate JJ et al
    2018/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 31
  • 文献情報:
    Li B et al. Neuronal Inactivity Co-opts LTP Machinery to Drive Potassium Channel Splicing and Homeostatic Spike Widening. Cell 2020 06;181(7):1547-1565.e15
    Li B et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 32
  • 文献情報:
    Lin PY et al. VAMP4 Maintains a Ca<sup>2+</sup>-Sensitive Pool of Spontaneously Recycling Synaptic Vesicles. J Neurosci 2020 07;40(28):5389-5401
    Lin PY et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 33
  • 文献情報:
    Mannara F et al. Allosteric modulation of NMDA receptors prevents the antibody effects of patients with anti-NMDAR encephalitis. Brain 2020 09;143(9):2709-2720
    Mannara F et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 34
  • 文献情報:
    Argent L et al. Caspr2 interacts with type 1 inositol 1,4,5-trisphosphate receptor in the developing cerebellum and regulates Purkinje cell morphology. J Biol Chem 2020 09;295(36):12716-12726
    Argent L et al
    2020/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 35
  • 文献情報:
    Wu X et al. Vesicle Tethering on the Surface of Phase-Separated Active Zone Condensates. Mol Cell 2021 01;81(1):13-24.e7
    Wu X et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 36
  • 文献情報:
    Grabrucker S et al. Activation of the medial preoptic area (MPOA) ameliorates loss of maternal behavior in a Shank2 mouse model for autism. EMBO J 2021 03;40(5):e104267
    Grabrucker S et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 37
  • 文献情報:
    Frei JA et al. Regulation of Neural Circuit Development by Cadherin-11 Provides Implications for Autism. eNeuro ;8(4)
    Frei JA et al
  • 備考:
  • 参照:
    PubMed
  • No.: 38
  • 文献情報:
    Sando R et al. Latrophilin GPCR signaling mediates synapse formation. Elife 2021 03;10
    Sando R et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 39
  • 文献情報:
    Hoffmann C et al. Synapsin Condensates Recruit alpha-Synuclein. J Mol Biol 2021 06;433(12):166961
    Hoffmann C et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed
  • No.: 40
  • 文献情報:
    Jeckel P et al. Autism Spectrum Disorder Risk Factor Met Regulates the Organization of Inhibitory Synapses. Front Mol Neurosci 2021;14:659856
    Jeckel P et al
    2021/01/01
  • 備考:
  • 参照:
    PubMed