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首页> 外文期刊>Journal of Molecular Biology >Formation of cytoplasmic turns between two closely spaced transmembrane helices during membrane protein integration into the ER membrane.
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Formation of cytoplasmic turns between two closely spaced transmembrane helices during membrane protein integration into the ER membrane.

机译:在膜蛋白整合到ER膜期间,两个紧密间隔的跨膜螺旋之间的细胞质转弯的形成。

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摘要

The helical hairpin, two closely spaced transmembrane helices separated by a short turn, is a recurring structural element in integral membrane proteins, and may serve as a compact unit that inserts into the membrane en bloc. Previously, we have determined the propensities of the 20 natural amino acids, when present in the middle of a long hydrophobic stretch, to induce the formation of a helical hairpin with a lumenally exposed turn during membrane protein assembly into the endoplasmic reticulum membrane. Here, we present results from a similar set of measurements, but with the turn placed on the cytoplasmic side of the membrane. We find that a significantly higher number of turn-promoting residues need to be present to induce a cytoplasmic turn compared to a lumenal turn, and that, in contrast to the lumenal turn, the positively charged residues Arg and Lys are the strongest turn-promoters in cytoplasmic turns. These results suggest that the process of turn formation between transmembrane helices is different for lumenal and cytoplasmic turns. Copyright 2000 Academic Press.
机译:螺旋发夹是两个紧密间隔的跨膜螺旋,由短匝隔开,是完整膜蛋白中的重复结构元素,可以用作紧凑单元,可整体插入膜中。以前,我们已经确定了20种天然氨基酸的倾向,当它们存在于长疏水段的中间时,在膜蛋白组装成内质网膜的过程中,诱使螺旋发夹形成,管腔暴露在外。在这里,我们介绍了一组相似的测量结果,但转弯处位于膜的细胞质侧。我们发现,与管腔转弯相比,需要更多数量的转弯残基来诱导细胞质转弯,并且与管腔转弯相反,带正电荷的残基Arg和Lys是最强的转弯启动子在细胞质转弯。这些结果表明,跨膜螺旋之间的转弯形成过程对于腔和细胞质转弯是不同的。版权所有2000学术出版社。

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