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Can proteins be intrinsically disordered inside a membrane?

机译:蛋白质在膜内部会固有地无序吗?

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摘要

Intrinsically disorder has evolved in many soluble proteins because it confers a unique set of functional advantages. In contrast, the functions of membrane proteins are largely understood in terms of well-defined structures. This raises the question: Why would the evolutionary pressures that select for disorder leave membrane proteins untouched. In this hypothesis piece, I argue that intrinsic disorder may exist in membrane embedded proteins, but that it will take a different form due to the different environment. Disordered membrane proteins are thus likely to have fully formed secondary structure, but little tertiary structure. Furthermore, the sequence signature for disorder in membrane proteins is likely to be reversed; so disordered proteins are more hydrophobic than their folded counterparts. At present it is impossible to tell how common this type of disordered membrane protein is.
机译:从本质上讲,无序性在许多可溶性蛋白中都有所发展,因为它具有独特的功能优势。相比之下,膜蛋白的功能在很大程度上由明确定义的结构来理解。这就提出了一个问题:为疾病选择的进化压力为什么会使膜蛋白保持不变。在这个假设中,我认为内在障碍可能存在于膜嵌入蛋白中,但由于环境不同,它将采取不同的形式。因此,紊乱的膜蛋白很可能具有完全形成的二级结构,但几乎没有三级结构。此外,膜蛋白失调的序列特征很可能会被逆转。因此,无序蛋白比折叠后的同类蛋白更具疏水性。目前尚无法确定这种类型的无序膜蛋白有多常见。

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