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The Peptide Derived from erbB2 Auto-Inhibitor Herstatin Shared in the Same Epitope and Function with Functional Antibody 2C4

机译:衍生自ErbB2自动抑制剂Herstatin的肽在相同表位和功能抗体2C4中的功能

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Previous studies have shown that different epitopes of HER2 exhibit distinct functions and that the epitope bound by the antibody 2C4 plays a role in formation of hetereodimers between HER2 and other receptors of the HER family.In this study,we used computer modeling to determine that the epitope of HER2 which the C-terminal 79 amino acids of herstatin (named HSTC79) binds is similar to that bound by 2C4.Based on these theoretical results,recombinant HSTC79 fused with GST was expressed in Escherichia coli and purified by affinity chromatography.Experimental analysis showed that HSTC79 did specifically bind to HER2 and that the epitope of HER2 identified by HSTC79 was near that identified by 2C4.Furthermore,HSTC79 inhibited the growth of HER2-overexpressing cells.These results highlight the fact that the binding site architecture and certain key residues of HER2 may be very helpful for understanding the protein's biological role and providing insights for designing novel inhibitors of HER2.
机译:以前的研究表明,HER2的不同表位表现出明显的功能,并且由抗体2C4结合的表位在她的家庭的HERERODIMES之间形成了作用。在本研究中,我们使用计算机建模来确定HERE2的表位,HERSTATIN(命名HSTC79)结合的C末端79氨基酸与2c4的结合相似。基于这些理论结果,与GST融合的重组HSTC79在大肠杆菌中表达并通过亲和层析纯化。分析分析表明HSTC79确实特异性结合HER2,并且HSTC79鉴定的HER2的表位接近2c4.Muttimore,HSTC79抑制了HER2-过度抑制细胞的生长。这些结果突出了结合位点架构和某些关键残留物的生长HER2可能非常有助于理解蛋白质的生物学作用,并为设计H的新抑制剂提供洞察ER2。

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