Antibody Sampler Kits
ER Protein Folding Antibody Sampler Kit |
イイネ!(0) |
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| CSTコード | 包装 | 希望納入価格 (円) |
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|---|---|---|---|---|
| #4759S | 1 Kit | 103,000 | ログインすると国内在庫状況がご確認いただけます。
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- 2104:
- Western Blotting
- 2881:
- Western Blotting
- 3177:
- IHC / Frozen IHC / Paraffin Western Blotting
- 3264:
- Western Blotting
- 3501:
- IHC / Paraffin Immunofluorescence* Western Blotting
- 3798:
- IHC / Paraffin Western Blotting
- 5033:
- Flow Immunofluorescence* Western Blotting
| キット内容 | 容量 | 用途 | 種交差性 | 検出タンパク質の分子量 | Isotype |
|---|---|---|---|---|---|
| BiP (C50B12) Rabbit mAb #3177 | 40 µl | W IHC-P IHC-F | H M | 78 | Rabbit IgG |
| Ero1-Lα Antibody #3264 | 40 µl | W | H | 60 | Rabbit |
| ERp44 (D17A6) XP® Rabbit mAb #3798 | 40 µl | W IHC-P | H M R Mk | 44 | Rabbit IgG |
| ERp57 (G117) Antibody #2881 | 40 µl | W | H M R | 57 | Rabbit |
| ERp72 (D70D12) XP® Rabbit mAb #5033 | 40 µl | W IF-IC F | H M R Mk | 72 | Rabbit IgG |
| Grp94 Antibody #2104 | 40 µl | W | H M R Mk | 100 | Rabbit |
| PDI (C81H6) Rabbit mAb #3501 | 40 µl | W IHC-P IF-IC | H M R Mk | 57 | Rabbit |
| Anti-rabbit IgG, HRP-linked Antibody #7074 | 100 µl | Goat |
| 貯法 | |
|---|---|
| -20℃ |
| 社内データ |
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Western Blotting

Western blot analysis of extracts from various cell types using Grp94 Antibody #2104.
Western Blotting

Western blot analysis of extracts from various cell types using ERp57 (G117) Antibody #2881.
Western Blotting

Western blot analysis of extracts from various cell types using BiP (C50B12) Rabbit mAb #3177.
Western Blotting

Western blot analysis of extracts from various cell types using Ero1-Lα Antibody #3264.
Western Blotting

Western blot analysis of extracts from various cell lines using PDI (C81H6) Rabbit mAb #3501.
Western Blotting

Western blot analysis of extracts from various cell lines using ERp44 (D17A6) XP® Rabbit mAb #3798.
| バックグラウンド |
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After their synthesis, secretory proteins translocate into the endoplasmic reticulum (ER) where they are post-translationally modified and properly folded. To reach their native conformation, many secretory proteins require the formation of intra- or inter-molecular disulfide bonds (1). This process is called oxidative protein folding. Disulfide isomerase (PDI) catalyzes the formation and isomerization of these disulfide bonds (2). Studies on mechanisms of oxidative folding suggest that molecular oxygen oxidizes the ER-protein Ero1, which in turn oxidizes PDI through disulfide exchange (3). This event is then followed by PDI-catalyzed disulfide bond formation on folding proteins (3). Other ER resident proteins that possess the thioredoxin homology domains, including endoplasmic reticulum stress proteins 72, 57 and 44 (ERp72, ERp57 and ERp44), constitute the PDI family (4,5,6). The ER also contains a pool of molecular chaperones, including Grp94, to help proteins fold properly. Grp94 is a glucose-regulated protein (7) with sequence homology to Hsp90 (8). BiP is another chaperone whose synthesis is increased when protein folding is disturbed. BiP binds to misfolded proteins to prevent them from forming aggregates and assists in proper refolding (9).
- Huppa, J.B. and Ploegh, H.L. (1998) Cell 92, 145-8.
- Ellgaard, L. and Ruddock, L.W. (2005) EMBO Rep 6, 28-32.
- Tu, B.P. and Weissman, J.S. (2004) J Cell Biol 164, 341-6.
- Mazzarella, R.A. et al. (1990) J Biol Chem 265, 1094-101.
- Satoh, M. et al. (2005) Cell Stress Chaperones 10, 278-84.
- Jessop, C.E. et al. (2007) EMBO J 26, 28-40.
- Lee, A.S. et al. (1981) Proc Natl Acad Sci U S A 78, 4922-5.
- Sorger, P.K. and Pelham, H.R. (1987) J Mol Biol 194, 341-4.
- Kohno, K. et al. (1993) Mol Cell Biol 13, 877-90.
| 使用例 | |
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本製品は試験研究用です。

