Recombinant SARS-COV-2 Spike RBD(K417N) Protein产品图

Recombinant SARS-COV-2 Spike R

BD(K417N) Protein
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  • ¥780 - 4000
  • ABclonal
  • RP01329
  • 2026年07月13日
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      10 μg/20 μg/50 μg/100 μg

    规格:10 μg产品价格:¥780.0
    规格:20 μg产品价格:¥1250.0
    规格:50 μg产品价格:¥2500.0
    规格:100 μg产品价格:¥4000.0
    The spike (S) glycoprotein of coronaviruses contains protrusions that will only bind to certain receptors on the host cell. Known receptors bind S1 are ACE2, angiotensin-converting enzyme 2; DPP4, dipeptidyl peptidase-4; APN, aminopeptidase N; CEACAM, carcinoembryonic antigen-related cell adhesion molecule 1; Sia, sialic acid; O-ac Sia, O-acetylated sialic acid. The spike is essential for both host specificity and viral infectivity. The term 'peplomer' is typically used to refer to a grouping of heterologous proteins on the virus surface that function together. The spike (S) glycoprotein of coronaviruses is known to be essential in the binding of the virus to the host cell at the advent of the infection process. It's been reported that SARS-CoV-2 (COVID-19 coronavirus, 2019-nCoV) can infect the human respiratory epithelial cells through interaction with the human ACE2 receptor. The spike protein is a large type I transmembrane protein containing two subunits, S1 and S2. S1 mainly contains a receptor binding domain (RBD), which is responsible for recognizing the cell surface receptor. S2 contains basic elements needed for the membrane fusion. The S protein plays key parts in the induction of neutralizing-antibody and T-cell responses, as well as protective immunity. The main functions for the Spike protein are summarized as: Mediate receptor binding and membrane fusion; Defines the range of the hosts and specificity of the virus; Main component to bind with the neutralizing antibody; Key target for vaccine design; Can be transmitted between different hosts through gene recombination or mutation of the receptor binding domain (RBD), leading to a higher mortality rate.

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    图标文献和实验
    相关实验
    • Preparation of Recombinant Protein Spotted Arrays for Proteome‐Wide Identification of Kinase Targets

      ‐throughput protein expression screening. Genomics 65:1‐8.    Cheung, K.H., Hager, J., Nelson, K., White, K., Li, Y., Snyder, M., Williams, K., and Miller, P. 2002. A dynamic approach

    • 新冠病毒及变异株疫苗新突破:环状 RNA 疫苗

      日前,北京大学生命科学学院魏文胜课题组在 Cell 杂志上在线发表题为“Circular RNA Vaccines against SARS-CoV-2 and Emerging Variants”的研究论文。 魏文胜团队首先建立了体外高效制备高纯度环状 RNA 的技术平台,针对新型冠状病毒及其变异株,设计了编码新冠病毒刺突蛋白(Spike)受体结构域(RBD)的环状 RNA 疫苗。 该项研究中制备的针对新冠病毒德尔塔变异株的环状 RNA 疫苗(circRNARBD

    • Cell Death Differ:中大五院黄曦团队发现新冠病毒引起肺损伤的分子机制

      上皮细胞线粒体凋亡,并导致肺水肿的发生。 图片来源:Cell death & differentiation 病毒相关蛋白与细胞蛋白相互作用影响细胞凋亡过程。作者首先分别将携带刺突蛋白(Spike protein, S 蛋白),核衣壳蛋白(Nucleocapsid, N 蛋白),膜蛋白(Membrane protein, M 蛋白)和包膜蛋白(Envelope protein,E 蛋白)真核表达质粒载体分别转染人肺上皮 H292 细胞和人血管内皮 EA.hy926 细胞,通过荧光分光光度法检测胞内活化

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    Recombinant SARS-COV-2 Spike RBD(K417N) Protein
    ¥780 - 4000