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InVivoMAb Anti-SARS-CoV-2 RBD Antibody (S309) (ARO-A13172)

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概述
货号ARO-A13172
品牌ProteoGenix
描述
InVivoMAb Anti-SARS-CoV-2 RBD Antibody (S309) [S309] (ARO-A13172) is a human monoclonal antibody detecting Spike glycoprotein, S glycoprotein, E2, Peplomer protein, RBD, Spike protein S1, S, Receptor-Binding Domain in ELISA, Neutralization. Suitable for SARS-CoV-2(2019-nCoV), SARS-CoV.
Highlights
  • Protein A/G purified from cell culture supernatant. — Ensuring high specificity and minimal background.
  • Multi-Application — Validated across multiple applications.
  • Multi-Species — Cross-reactive for translational research.
种属反应性SARS-CoV-2(2019-nCoV), SARS-CoV
应用ELISA, Neutralization
宿主Human
同种型IgG1, kappa
克隆号S309
克隆类型Monoclonal
靶标Spike glycoprotein, S glycoprotein, E2, Peplomer protein, RBD, Spike protein S1, S, Receptor-Binding Domain
内毒素水平Please contact with the lab for this information.
纯度>95% as determined by SDS-PAGE.
相关产品 pH 7.4 Dilution Buffer
纯化方式Protein A/G purified from cell culture supernatant.
Accession号P0DTC2
状态Liquid
保存溶液 0.01M PBS, pH 7.4.

Please refer to the specific buffer information in the hardcopy of datasheet or the lot-specific COA.

稳定性和存储Use a manual defrost freezer and avoid repeated freeze-thaw cycles. Store at 4°C short term (1-2 weeks). Store at -20°C 12 months. Store at -80°C long term.
背景

Spike glycoprotein (RBD) is a ~141 kDa protein. Attaches the virion to the cell membrane by interacting with host receptor, initiating the infection. The major receptor is host ACE2. When S2/S2' has been cleaved, binding to the receptor triggers direct fusion at the cell membrane. When S2/S2' has not been cleaved, binding to the receptor results in internalization of the virus by endocytosis using host TFRC and GRM2 and leading to fusion of the virion membrane with the host endosomal membrane. Alternatively, may use NRP1/NRP2 and integrin as entry receptors.

1. Hoffmann, M. et al. (2020) Cell 181, 271-280.e8. PMID: 32142651
2. Walls, AC. et al. (2020) Cell 181, 281-292.e6. PMID: 32155444
3. Cao, W. et al. (2021) Biophysical journal 120, 1011-1019. PMID: 33607086
4. Takeda, M. (2022) Microbiology and immunology 66, 15-23. PMID: 34561887
5. Wrapp, D. et al. (2020) Science (New York, N.Y.) 367, 1260-1263. PMID: 32075877
6. Ou, X. et al. (2020) Nature communications 11, 1620. PMID: 32221306
7. Wang, J. et al. (2021) Cell discovery 7, 119. PMID: 34903715
8. Wang, X. et al. (2023) Journal of virology 97, e0161122. PMID: 36779763
9. Daly, JL. et al. (2020) Science (New York, N.Y.) 370, 861-865. PMID: 33082294
10. Cantuti-Castelvetri, L. et al. (2020) Science (New York, N.Y.) 370, 856-860. PMID: 33082293
NoteFor research use only. Not suitable for clinical or therapeutic use.
图片
参考文献
公式
质量 (g) = 浓度 (mol/L) × 体积 (L) × 分子量 (g/mol)
填写 质量、浓度、体积中的任意 2 项 + 分子量,自动计算未知值。
质量
=
浓度
×
体积
分子量 *
g/mol
公式
C₁ × V₁ = C₂ × V₂
填写 4 项中的任意 3 项,自动计算未知值。
母液
C₁ (起始浓度)
×
V₁ (起始体积)
=
工作液
C₂ (终浓度)
×
V₂ (终体积)

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