抗IL-17B Receptor抗体(Anti-IL-17B Receptor, Mouse, Goat-Poly, Biotin antibody)
掲載日情報:2021/01/28 現在Webページ番号:29758
IL-17B Receptorに対する抗体(Anti-IL-17B Receptor, Mouse, Goat-Poly, Biotin )です。
※ 本製品は研究用です。研究用以外には使用できません。
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- 価格
- Product Details
- Applications and Data
- References
- Related Research Areas
- Related Product & Information
- Citations
価格
[在庫・価格 :2025年04月26日 20時55分現在]
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Anti-IL-17B Receptor, Mouse, Goat-Poly, Biotin |
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[在庫・価格 :2025年04月26日 20時55分現在]
Anti-IL-17B Receptor, Mouse, Goat-Poly, Biotin
文献数: 4
- 商品コード:BAF1040
- メーカー:RSD
- 包装:50μg
- 価格:¥111,000
- 在庫:無(未発注)
- 納期:10日程度 ※※ 表示されている納期は弊社に在庫がなく、取り寄せた場合の目安納期となります。
- 法規制等:
説明文 | マッチドペア:Mouse IL-17 RB サンドイッチELISAの検出用抗体として利用可能,補足用抗体として#MAB10401,スタンダードとして#1040-BR-050を用いる。 別名:CRL4IL-17 receptor homolog 1 Genbank No: 55540 Protein Accession No: Q9JIP3 |
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法規制等 | |||
保存条件 | -20℃ | 法規備考 | |
抗原種 | Mouse | 免疫動物 | Goat |
交差性 | Mouse | 適用 | ELISA,Western Blot |
標識 | Biotin | 性状 | Antigen Affinity Purified |
吸収処理 | クラス | IgG | |
クロナリティ | Polyclonal | フォーマット | |
掲載カタログ |
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製品記事 | Helper T Cells Marker Antibodies |
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関連記事 | R&D Systems(R&Dシステムズ)社 ELISA用ペア抗体を使用したELISA 構築ガイド |
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Product Details
Species Reactivity | Mouse |
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Label | Biotin |
Immunogen | Mouse myeloma cell line NS0-derived recombinant mouse IL‑17 RBArg18-Gly286Accession # Q9JIP3 |
Source | Polyclonal Goat IgG |
Purification | Antigen Affinity-purified |
Specificity | Detects mouse IL‑17 RB in ELISAs and Western blots. In sandwich immunoassays, less than 0.5% cross-reactivity with recombinant human IL‑17 RB, recombinant mouse (rm) IL-17 and rmIL-17 R is observed. |
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Applications and Data
Recommended Concentration | Sample | |
Western Blot | 0.1 µg/mL | Recombinant Mouse IL‑17 RB Fc Chimera (Catalog # 1040-BR) |
Mouse IL-17 RB Sandwich Immunoassay | Reagent | |
ELISA Capture (Matched Antibody Pair) | 2-8 µg/mL | Mouse IL‑17 RB Antibody (Catalog #MAB10401 ) |
ELISA Detection (Matched Antibody Pair) | 0.1-0.4 µg/mL | Mouse IL‑17 RB Biotinylated Antibody (Catalog #BAF1040 ) |
ELISA Standard | Recombinant Mouse IL-17 RB Fc Chimera Protein, CF (Catalog #1040-BR ) | |
Please Note: Optimal dilutions should be determined by each laboratory for each application.General Protocolsare available in the Technical Information section on our website. | Preparation and Storage | |
Reconstitution | Reconstitute at 0.2 mg/mL in sterile PBS. | Reconstitution Buffer Available |
Shipping | The product is shipped at ambient temperature. Upon receipt, store it immediately at the temperature recommended below. | |
Stability & Storage | Use a manual defrost freezer and avoid repeated freeze-thaw cycles. 12 months from date of receipt, -20 to -70 °C as supplied. | |
1 month, 2 to 8 °C under sterile conditions after reconstitution. | ||
6 months, -20 to -70 °C under sterile conditions after reconstitution. | ||
Background: IL-17 RB | The interleukin 17 (IL-17) family of cytokines, comprising six members (IL-17, IL-17B through IL-17F), are structurally related proteins with a conserved cysteine-knot structure. These proinflammatory cytokines can induce local cytokine production and are involved in the regulation of the immune response. The cognate receptors activated by some of these cytokines have been identified (1, 2). Interleukin-17B Receptor (IL-17RB), also known as IL-17 Rh1, IL-17E R and EVI27, represents the second receptor of the IL-17 family cytokines to be recognized (2‑4). Mouse IL17B R cDNA encodes a 499 amino acid (aa) residue type I membrane protein with a putative 17 aa signal peptide, a 269 aa extracellular domain, a 21 aa transmembrane domain and a 192 aa cytoplasmic tail. As a result of alternative splicing, a secreted variant of IL-17B R also exists (4). Human and mouse IL‑17B R share 76% aa sequence identity. The IL-17B R protein sequence is only 19.2% and 18.2% identical to the human and mouse IL-17 R sequence, respectively. However, the receptors share many conserved cysteine residues within their extracellular domains as well as additional conserved elements within their cytoplasmic domains. At least three additional type I transmembrane receptors with homology to IL‑17 R, including IL-17 RL (IL-17 RC), IL-17 RD, and IL-17 RE, have been reported (2, 6). By Northern blot analysis, mouse IL-17B R is highly expressed in liver and testes and is expressed at lower levels in kidney and lung. It is also expressed in some hematopoietic cell lines, including selected T cell, B cell, and myeloid cell lines (2‑4). The expression of IL-17B R is significantly up‑regulated under inflammatory conditions (7). IL-17 RB binds strongly to IL-17E and weakly to IL-17B. It does not bind IL-17 or IL-17F. Activation of IL-17B R by its ligands results in the activation of nuclear factor kappa-B (2‑4). |
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References
Aggarwal, S. and A.L. Gurney (2002) J. Leukoc. Biol. 71:1. | |
Moseley, T.A. et al. (2003) Cytokine & Growth Factor Rev. 14:155. | |
Shi, Y. et al. (2000) J. Biol. Chem. 275:19167. | |
Lee, J. et al. (2001) J. Biol. Chem. 276:1660. | |
Tian, E. et al. (2000) Oncogene 19:2098. | |
Haudenschild, D. et al. (2002) J. Biol. Chem. 277:4309. | |
Hurst, S.D. et al. (2002) J. Immunol. 169:443. | |
Long Name: | Interleukin 17B Receptor |
Entrez Gene IDs: | 55540 (Human); 50905 (Mouse) |
Alternate Names: | CRL4IL-17 receptor homolog 1; cytokine receptor CRL4; Cytokine receptor-like 4; Evi27; EVI27IL-17B receptor; IL-17 RB; IL-17 receptor B; IL-17 RH1; IL17BRinterleukin 17B receptor; IL-17ER; IL17RB; IL-17RB; IL17Rh1; IL-17Rh1; IL17RH1MGC5245; interleukin 17 receptor B; interleukin 17 receptor homolog 1; interleukin-17 receptor B; Interleukin-17B receptor |
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Related Research Areas
Group 2 ILCs | ||
IL-17 Family | ||
Natural Killer T (NKT) Cells | ||
Th2 Cells | ||
Th9 Cells | ||
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Related Product & Information
Background | IL-17 RB |
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background_content | Background: IL-17 RB The interleukin 17 (IL-17) family of cytokines, comprising six members (IL-17, IL-17B through IL-17F), are structurally related proteins with a conserved cysteine-knot structure. These proinflammatory cytokines can induce local cytokine production and are involved in the regulation of the immune response. The cognate receptors activated by some of these cytokines have been identified (1, 2). Interleukin-17B Receptor (IL-17RB), also known as IL-17 Rh1, IL-17E R and EVI27, represents the second receptor of the IL-17 family cytokines to be recognized (2‑4). Mouse IL17B R cDNA encodes a 499 amino acid (aa) residue type I membrane protein with a putative 17 aa signal peptide, a 269 aa extracellular domain, a 21 aa transmembrane domain and a 192 aa cytoplasmic tail. As a result of alternative splicing, a secreted variant of IL-17B R also exists (4). Human and mouse IL‑17B R share 76% aa sequence identity. The IL-17B R protein sequence is only 19.2% and 18.2% identical to the human and mouse IL-17 R sequence, respectively. However, the receptors share many conserved cysteine residues within their extracellular domains as well as additional conserved elements within their cytoplasmic domains. At least three additional type I transmembrane receptors with homology to IL‑17 R, including IL-17 RL (IL-17 RC), IL-17 RD, and IL-17 RE, have been reported (2, 6). By Northern blot analysis, mouse IL-17B R is highly expressed in liver and testes and is expressed at lower levels in kidney and lung. It is also expressed in some hematopoietic cell lines, including selected T cell, B cell, and myeloid cell lines (2‑4). The expression of IL-17B R is significantly up‑regulated under inflammatory conditions (7). IL-17 RB binds strongly to IL-17E and weakly to IL-17B. It does not bind IL-17 or IL-17F. Activation of IL-17B R by its ligands results in the activation of nuclear factor kappa-B (2‑4). |
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Citations
- RORgammat+ innate lymphoid cells regulate intestinal homeostasis by integrating negative signals from the symbiotic microbiota.
Authors: Sawa S, Lochner M, Satoh-Takayama N, Dulauroy S, Berard M, Kleinschek M, Cua D, Di Santo JP, Eberl G
Nat. Immunol., 2011;12(4):320-6.
Species: Mouse
Sample Type: Whole Cells
Application: Flow - IL-33-responsive lineage- CD25+ CD44(hi) lymphoid cells mediate innate type 2 immunity and allergic inflammation in the lungs.
Authors: Bartemes KR, Iijima K, Kobayashi T, Kephart GM, McKenzie AN, Kita H
J. Immunol., 2011;188(3):1503-13.
Species: Mouse
Sample Type: Whole Cells
Application: Flow
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