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Large tilts in transmembrane helices can be induced during tertiary structure formation

机译:三级结构形成过程中可引起跨膜螺旋的大倾斜

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摘要

While early structural models of helix-bundle integral membrane proteins posited that the transmembrane α-helices [transmembrane helices (TMHs)] were orientated more or less perpendicular to the membrane plane, there is now ample evidence from high-resolution structures that many TMHs have significant tilt angles relative to the membrane. Here, we address the question whether the tilt is an intrinsic property of the TMH in question or if it is imparted on the TMH during folding of the protein. Using a glycosylation mapping technique, we show that four highly tilted helices found in multi-spanning membrane proteins all have much shorter membrane-embedded segments when inserted by themselves into the membrane than seen in the high-resolution structures. This suggests that tilting can be induced by tertiary packing interactions within the protein, subsequent to the initial membrane-insertion step.
机译:虽然螺旋束整合膜蛋白的早期结构模型认为跨膜α-螺旋[跨膜螺旋(TMHs)]或多或少地垂直于膜平面定向,但从高分辨率结构中有大量证据表明许多TMH具有相对于膜的明显倾斜角。在这里,我们要解决的问题是,倾斜是否是所讨论的TMH的固有属性,还是在蛋白质折叠过程中是否将倾斜赋予了TMH。使用糖基化定位技术,我们发现在多跨度膜蛋白中发现的四个高度倾斜的螺旋比将其自身插入膜中时都比在高分辨率结构中看到的膜嵌入段都短得多。这表明在最初的膜插入步骤之后,蛋白质内的第三级堆积相互作用可引起倾斜。

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