A Comparison between Transmembrane Helices and Reentrant Loops

Changhui Yan, Jingru Luo
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引用次数: 1

Abstract

Reentrant loops are an important structure motif in a-helical transmembrane proteins. A reentrant loop goes half way through the membrane and turns and exits the membrane in the same side it has entered. To better predict the topology of transmembrane proteins and understand their function, it is important to investigate why the reentrant loops form such a unique topology. Herein, we compare the reentrant loops with transmembrane helices and find that the two types of structure motifs differ significantly in residue composition and the difference in reside composition is sufficient to discriminate reentrant loops from transmembrane helices based on the amino acid sequence. Our study shows that the difference in residue composition makes the reentrant loops less hydrophobic than the transmembrane helices. Because of the hydrophobic environment of the lipid membrane, this reduced hydrphobicity in the reentrant loops will make them less stable inside the membrane. That may be one of the many factors that make the reentrant loops to form such a unique topology.
跨膜螺旋和重入环的比较
重入环是a-螺旋跨膜蛋白的重要结构基序。一个可重入环穿过膜的一半,然后在它进入的同一侧转出膜。为了更好地预测跨膜蛋白的拓扑结构并了解它们的功能,研究为什么重入环形成如此独特的拓扑结构是很重要的。本文将重入环与跨膜螺旋进行比较,发现这两种结构基序在残基组成上存在显著差异,而残基组成的差异足以根据氨基酸序列区分重入环和跨膜螺旋。我们的研究表明,残基组成的差异使得重入环比跨膜螺旋更疏水。由于脂质膜的疏水环境,重入环疏水性的降低将使它们在膜内的稳定性降低。这可能是使可重入回路形成如此独特拓扑结构的众多因素之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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