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MINS2: Revisiting the molecular code for transmembrane-helix recognition by the Sec61 translocon

机译:MINS2:通过Sec61 translocon重新审视跨膜螺旋的分子编码

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摘要

To be fully functional, membrane proteins should not only fold, but also get inserted into the membrane, which is mediated by the Sec61 translocon. Recent experimental studies have attempted to elucidate how the Sec61 translocon accomplishes this delicate task by measuring the translocon-mediated membrane insertion free energies of 357 systematically designed peptides. On the basis of this data set, we have developed MINS2, a novel sequence-based computational method for predicting the membrane insertion free energies of protein sequences. A benchmark analysis of MINS2 shows that MINS2 signi.cantly outperforms previously proposed methods. Importantly, the application of MINS2 to known membrane protein structures shows that a better prediction of membrane insertion free energies does not lead to a better prediction of transmembrane segments of polytopic membrane proteins.
机译:要发挥全部功能,膜蛋白不仅应折叠,而且还应插入膜中,这是由Sec61转运子介导的。最近的实验研究试图通过测量357个系统设计的肽的转运子介导的膜插入自由能来阐明Sec61转运子如何完成这一微妙的任务。在此数据集的基础上,我们开发了MINS2,这是一种基于序列的新型计算方法,可预测蛋白质序列的膜插入自由能。 MINS2的基准分析表明,MINS2明显优于先前提出的方法。重要的是,将MINS2应用于已知的膜蛋白结构表明,对膜插入自由能的更好预测不会导致对多位膜蛋白的跨膜片段的更好预测。

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