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首页> 外文期刊>Journal of Molecular Biology >Inter-helical hydrogen bond formation during membrane protein integration into the ER membrane.
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Inter-helical hydrogen bond formation during membrane protein integration into the ER membrane.

机译:膜蛋白整合到ER膜期间形成螺旋间氢键。

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Recent work has shown that efficient di- or trimerization of hydrophobic transmembrane helices in detergent micelles or lipid bilayers can be driven by inter-helix hydrogen bonding involving polar residues such as Asn or Asp. Using in vitro translation in the presence of rough microsomes of a model integral membrane protein, we now show that the formation of so-called helical hairpins, two tightly spaced transmembrane helices connected by a short loop, can likewise be promoted by the introduction of Asn-Asn or Asp-Asp pairs in a long transmembrane hydrophobic segment. These observations suggest that inter-helix hydrogen bonds can form within the context of the Sec61 translocon in the endoplasmic reticulum, implying that hydrophobic segments in a nascent polypeptide chain in transit through the Sec61 channel have immediate access to a non-aqueous subcompartment within the translocon.
机译:最近的工作表明,洗涤剂胶束或脂质双层中疏水性跨膜螺旋的有效二聚或三聚可通过涉及极性残基(例如Asn或Asp)的螺旋间氢键来驱动。现在,在模型整合膜蛋白的粗糙微粒体存在下使用体外翻译,我们现在表明,Asn的引入同样可以促进所谓的螺旋发夹的形成,即通过短环连接的两个紧密间隔的跨膜螺旋。 -Asn或Asp-Asp对在一个长跨膜疏水段中。这些观察结果表明,螺旋内氢键可以在内质网中的Sec61转运子的背景下形成,这意味着新生多肽链中通过Sec61通道转运的疏水链段可以立即进入转运子中的非水亚区室。

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