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Energetics of side-chain snorkeling in transmembrane helices probed by nonproteinogenic amino acids

机译:非蛋白源氨基酸探测跨膜螺旋中侧链浮潜的能量学

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摘要

Cotranslational translocon-mediated insertion of membrane proteins into the endoplasmic reticulum is a key process in membrane protein biogenesis. Although the mechanism is understood in outline, quantitative data on the energetics of the process is scarce. Here, we have measured the effect on membrane integration efficiency of nonproteinogenic analogs of the positively charged amino acids arginine and lysine incorporated into model transmembrane segments. We provide estimates of the influence on the apparent free energy of membrane integration (ΔGapp) of “snorkeling” of charged amino acids toward the lipid–water interface, and of charge neutralization. We further determine the effect of fluorine atoms and backbone hydrogen bonds (H-bonds) on ΔGapp. These results help establish a quantitative basis for our understanding of membrane protein assembly in eukaryotic cells.
机译:共翻译translocon介导的膜蛋白插入内质网是膜蛋白生物发生的关键过程。尽管可以大致理解该机制,但是有关该过程能量的定量数据却很少。在这里,我们测量了纳入模型跨膜片段的带正电荷的氨基酸精氨酸和赖氨酸对非蛋白质类似物的膜整合效率的影响。我们提供了带电荷的氨基酸向脂质-水界面“浮潜”对膜整合(ΔGapp)的表观自由能的影响的估计,以及电荷中和。我们进一步确定氟原子和骨架氢键(H键)对ΔGapp的影响。这些结果有助于为我们对真核细胞膜蛋白组装的理解建立定量基础。

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