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Exploring the Interactions Between Signal Sequences and E. coli SRP by Two Distinct and Complementary Crosslinking Methods

机译:通过两种不同的互补交联方法探索信号序列与大肠杆菌SRP之间的相互作用

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摘要

Photoaffinity crosslinking comprises a group of invaluable techniques used to investigate in detail a binding interaction between two polypeptides. As the diverse photo crosslinking techniques available display inherent differences, the method of choice will provide specific information about a particular system under study. We used two complementary crosslinking approaches: photo-induced crosslinking of unmodified proteins (PICUP) and benzophenone-mediated (BPM) crosslinking to extensively examine the interaction between the signal recognition particle (SRP) and signal sequences. Signal peptide binding by SRP presents a central puzzle in the protein targeting process because signal sequences must be recognized with fidelity but lack strict primary structural homology. The concurrent use of PICUP and BPM crosslinking to link signal peptides to E. coli SRP allowed us to explore the crosslinking pattern resulting from using different crosslinking chemistries, varying the position of the photoprobe in the hydrophobic core of the signal sequence, and shifting the crosslinking reactive group away from the signal peptide backbone. By PICUP, signal peptides crosslinked exclusively to the NG domain of the SRP protein Ffh, regardless of the position of the reactive residue. Benzophenone-modified amino acids preferentially crosslinked the signal peptide to the C-terminal (M) domain of Ffh. We conclude that signal peptide binding is largely mediated by the M domain. Importantly, our data also indicate intimate, at least transient, contacts between the hydrophobic core of the signal peptide and the NG domain. These results reopen the possibility of a direct involvement of the NG domain in signal sequence recognition.
机译:光亲和性交联包含一组宝贵的技术,用于详细研究两个多肽之间的结合相互作用。由于可用的各种光交联技术显示出固有的差异,因此选择的方法将提供有关正在研究的特定系统的特定信息。我们使用了两种互补的交联方法:未修饰的蛋白质的光诱导交联(PICUP)和二苯甲酮介导的(BPM)交联,以广泛检查信号识别颗粒(SRP)与信号序列之间的相互作用。通过SRP结合信号肽在蛋白质靶向过程中提出了一个中心难题,因为必须以保真度识别信号序列,但缺乏严格的一级结构同源性。同时使用PICUP和BPM交联将信号肽连接至大肠杆菌SRP,使我们能够探索使用不同的交联化学方法,改变光探针在信号序列疏水核中的位置以及改变交联方式而产生的交联模式反应基团远离信号肽主链。通过PICUP,信号肽仅与SRP蛋白Ffh的NG域交联,而与反应残基的位置无关。二苯甲酮修饰的氨基酸优先使信号肽交联至Ffh的C端(M)域。我们得出结论,信号肽的结合主要由M结构域介导。重要的是,我们的数据还表明,信号肽的疏水核与NG域之间存在紧密的,至少是短暂的接触。这些结果重新打开了NG域直接参与信号序列识别的可能性。

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