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Generation of ligand-receptor alliances by SEA module-mediated cleavage of membrane-associated mucin proteins

机译:通过 SEA模块介导的膜相关粘蛋白的裂解产生配体-受体联盟

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摘要

A mechanism is described whereby one and the same gene can encode both a receptor protein as well as its specific ligand. Generation of this receptor–ligand partnership is effected by proteolytic cleavage within a specific module located in a membrane resident protein. It is postulated here that the "SEA" module, found in a number of heavily O-linked glycosylated membrane-associated proteins, serves as a site for proteolytic cleavage. The subunits generated by proteolytic cleavage of the SEA module reassociate, and can subsequently elicit a signaling cascade. We hypothesize that all membrane resident proteins containing such a "SEA" module will undergo cleavage, thereby generating a receptor–ligand alliance. This requires that the protein subunits resulting from the proteolytic cleavage reassociate with each other in a highly specific fashion. The same SEA module that serves as the site for proteolytic cleavage, probably also contains the binding sites for reassociation of the resultant two subunits. More than one type of module can function as a site for proteolytic cleavage; this can occur not only in one-pass membrane proteins but also in 7-transmembrane proteins and other membrane-associated proteins. The proposal presented here is likely to have significant practical consequences. It could well lead to the rational design and identification of molecules that, by binding to one of the cleaved partners, will act either as agonists or antagonists, alter signal transduction and, hence, cellular behavior.
机译:描述了一种机制,其中一个相同的基因可以编码受体蛋白及其特异性配体。这种受体-配体伙伴关系的产生是通过位于膜驻留蛋白中的特定模块内的蛋白水解切割来实现的。此处假定在大量与O紧密连接的糖基化膜相关蛋白中发现的“ SEA”模块充当蛋白水解切割的位点。通过SEA模块的蛋白水解切割产生的亚基会重新结合,并随后引发信号级联。我们假设所有含有这种“ SEA”模块的膜驻留蛋白都将发生裂解,从而产生受体-配体联盟。这要求由蛋白水解切割产生的蛋白质亚基以高度特异性的方式彼此重新缔合。用作蛋白水解切割位点的同一SEA模块可能还包含用于重新结合所得两个亚基的结合位点。超过一种类型的模块可以充当蛋白水解切割位点;这不仅可以在单程膜蛋白中发生,而且可以在7跨膜蛋白和其他膜相关蛋白中发生。这里提出的建议可能会产生重大的实际后果。它很可能导致分子的合理设计和鉴定,这些分子通过与裂解的配偶体之一结合,将起激动剂或拮抗剂的作用,从而改变信号传导并因此改变细胞行为。

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