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首页> 外文期刊>Molecular & cellular proteomics: MCP >Oligosaccharyltransferase Subunits Bind Polypeptide Substrate to Locally Enhance N-glycosylation
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Oligosaccharyltransferase Subunits Bind Polypeptide Substrate to Locally Enhance N-glycosylation

机译:寡糖转移酶亚基绑定多肽底物,以局部增强N-糖基化

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摘要

Oligosaccharyltransferase is a multiprotein complex that catalyzes asparagine-linked glycosylation of diverse proteins. Using yeast genetics and glycoproteomics, we found that transient interactions between nascent polypeptide and Ost3p/Ost6p, homologous subunits of oligosaccharyltransferase, were able to modulate glycosylation efficiency in a site-specific manner in vivo. These interactions were driven by hydrophobic and electrostatic complementarity between amino acids in the peptide-binding groove of Ost3p/Ost6p and the sequestered stretch of substrate polypeptide. Based on this dependence, we used in vivo scanning mutagenesis and in vitro biochemistry to map the precise interactions that affect site-specific glycosylation efficiency. We conclude that transient binding of substrate polypeptide by Ost3p/Ost6p increases glycosylation efficiency at asparagines proximal and C-terminal to sequestered sequences. We detail a novel mode of interaction between translocating nascent polypeptide and oligosaccharyltransferase in which binding to Ost3p/Ost6p segregates a short flexible loop of glycosylation-competent polypeptide substrate that is delivered to the oligosaccharyltransferase active site for efficient modification.
机译:寡糖基转移酶是一种多蛋白复合物,催化多种蛋白的天冬酰胺连接的糖基化。使用酵母遗传学和糖蛋白组学,我们发现新生多肽和Ost3p / Ost6p(寡糖基转移酶的同源亚基)之间的瞬时相互作用能够在体内以位点特异性方式调节糖基化效率。这些相互作用是由Ost3p / Ost6p的肽结合槽中的氨基酸与隔离的底物多肽片段之间的疏水性和静电互补性驱动的。基于这种依赖性,我们使用了体内扫描诱变和体外生物化学来绘制影响位点特异性糖基化效率的精确相互作用。我们得出结论,Ost3p / Ost6p对底物多肽的瞬时结合增加了在近端天冬酰胺和C端至隔离序列的天冬酰胺的糖基化效率。我们详细介绍了一种易位的新生多肽和寡糖基转移酶之间相互作用的新颖模式,其中与Ost3p / Ost6p的结合分离了糖基化能力强的多肽底物的短柔性环,该柔性底物被递送至寡糖基转移酶活性位点进行有效修饰。

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