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A duplicated motif controls assembly of zona pellucida domain proteins

机译:复制的基序控制透明带​​域蛋白的组装

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摘要

Many secreted eukaryotic glycoproteins that play fundamental roles in development, hearing, immunity, and cancer polymerize into filaments and extracellular matrices through zona pellucida (ZP) domains. ZP domain proteins are synthesized as precursors containing C-terminal propeptides that are cleaved at conserved sites. However, the consequences of this processing and the mechanism by which nascent proteins assemble are unclear. By microinjection of mutated DNA constructs into growing oocytes and mammalian cell transfection, we have identified a conserved duplicated motif [EHP (external hydrophobic patch)/IHP (internal hydrophobic patch)] regulating the assembly of mouse ZP proteins. Whereas the transmembrane domain (TMD) of ZP3 can be functionally replaced by an unrelated TMD, mutations in either EHP or IHP do not hinder secretion of full-length ZP3 but completely abolish its assembly. Because mutants truncated before the TMD are not processed, we conclude that the conserved TMD of mammalian ZP proteins does not engage them in specific interactions but is essential for C-terminal processing. Cleavage of ZP precursors results in loss of the EHP, thereby activating secreted polypeptides to assemble by using the IHP within the ZP domain. Taken together, these findings suggest a general mechanism for assembly of ZP domain proteins.
机译:许多分泌的真核糖蛋白在发育,听力,免疫力和癌症中起着基本作用,并通过透明带(ZP)结构域聚合成细丝和细胞外基质。 ZP域蛋白被合成为包含在保守位点切割的C末端前肽的前体。但是,这一过程的后果以及新生蛋白质组装的机制尚不清楚。通过将突变的DNA构建体显微注射到正在生长的卵母细胞中并进行哺乳动物细胞转染,我们已经确定了一个保守的重复基序[EHP(外部疏水性补丁)/ IHP(内部疏水性补丁)],可调节小鼠ZP蛋白的组装。 ZP3的跨膜结构域(TMD)可以在功能上被不相关的TMD替代,而EHP或IHP中的突变不会阻碍全长ZP3的分泌,但会完全废除其组装。因为不处理TMD之前被截断的突变体,我们得出的结论是,保守的哺乳动物ZP蛋白的TMD不会使它们参与特定的相互作用,但对于C末端加工是必不可少的。 ZP前体的切割导致EHP的丧失,从而通过在ZP域内使用IHP激活分泌的多肽进行组装。综上所述,这些发现提示了ZP域蛋白组装的一般机制。

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