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Promiscuous targeting of polytopic membrane proteins to SecYEG or YidC by the Escherichia coli signal recognition particle

机译:大肠杆菌信号识别颗粒将多聚异位膜蛋白混杂靶向SecYEG或YidC

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Protein insertion into the bacterial inner membrane is facilitated by SecYEG or YidC. Although SecYEG most likely constitutes the major integration site, small membrane proteins have been shown to integrate via YidC. We show that YidC can also integrate multispanning membrane proteins such as mannitol permease or TatC, which had been considered to be exclusively integrated by SecYEG. Only SecA-dependent multispanning membrane proteins strictly require SecYEG for integration, which suggests that SecA can only interact with the SecYEG translocon, but not with the YidC insertase. Targeting of multispanning membrane proteins to YidC is mediated by signal recognition particle (SRP), and we show by site-directed cross-linking that the C-terminus of YidC is in contact with SRP, the SRP receptor, and ribosomal proteins. These findings indicate that SRP recognizes membrane proteins independent of the downstream integration site and that many membrane proteins can probably use either SecYEG or YidC for integration. Because protein synthesis is much slower than protein transport, the use of YidC as an additional integration site for multispanning membrane proteins may prevent a situation in which the majority of SecYEG complexes are occupied by translating ribosomes during cotranslational insertion, impeding the translocation of secretory proteins.
机译:SecYEG或YidC促进蛋白质插入细菌内膜。尽管SecYEG最有可能构成主要的整合位点,但已证明小膜蛋白可通过YidC整合。我们显示,YidC还可以整合多跨膜蛋白,例如甘露醇通透酶或TatC,后者被SecYEG专门整合。仅SecA依赖性多跨膜蛋白严格要求SecYEG进行整合,这表明SecA只能与SecYEG转运子相互作用,而不能与YidC插入酶相互作用。多跨膜蛋白对YidC的靶向作用是由信号识别颗粒(SRP)介导的,我们通过定点交联表明YidC的C末端与SRP,SRP受体和核糖体蛋白接触。这些发现表明SRP可以识别膜蛋白,而与下游整合位点无关,并且许多膜蛋白可能使用SecYEG或YidC进行整合。由于蛋白质合成比蛋白质运输要慢得多,因此使用YidC作为跨膜蛋白质的附加整合位点可以防止在共翻译插入过程中大多数SecYEG复合物被翻译成核糖体占据的情况,从而阻止分泌蛋白质的转运。

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