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首页> 外文期刊>Angewandte Chemie >Electrostatics and Intrinsic Disorder Drive Translocon Binding of the SRP Receptor FtsY
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Electrostatics and Intrinsic Disorder Drive Translocon Binding of the SRP Receptor FtsY

机译:SRP受体FtsY的静电和固有疾病驱动Translocon结合。

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摘要

Integral membrane proteins in bacteria are co-translationally targeted to the SecYEG translocon for membrane insertion via the signal recognition particle (SRP) pathway. The SRP receptor FtsY and its N-terminal A domain, which is lacking in any structural model of FtsY, were studied using NMR and fluorescence spectroscopy. The A domain is mainly disordered and highly flexible; it binds to lipids via its N terminus and the C-terminal membrane targeting sequence. The central A domain binds to the translocon non-specifically and maintains disorder. Translocon targeting and binding of the A domain is driven by electrostatic interactions. The intrinsically disordered A domain tethers FtsY to the translocon, and because of its flexibility, allows the FtsY NG domain to scan a large area for binding to the NG domain of ribosome-bound SRP, thereby promoting the formation of the quaternary transfer complex at the membrane.
机译:细菌中的整合膜蛋白通过信号识别颗粒(SRP)途径共翻译地靶向SecYEG translocon进行膜插入。使用NMR和荧光光谱法研究了FtsY的任何结构模型中都缺少的SRP受体FtsY及其N端A结构域。 A域主要是无序且高度灵活的;它通过其N末端和C端膜靶向序列与脂质结合。中央A结构域非特异性地结合至转座子并维持病症。 Translocon靶向和A域的绑定是由静电相互作用驱动的。内在无序的A结构域将FtsY束缚在转位子上,并且由于其灵活性,使得FtsY NG结构域可以扫描大面积以与核糖体结合的SRP的NG结构域结合,从而促进四价转移复合物在FPSY处的形成。膜。

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