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球状蛋白质中堆积的疏水基础。

Hydrophobic basis of packing in globular proteins.

作者信息

Rose G D, Roy S

出版信息

Proc Natl Acad Sci U S A. 1980 Aug;77(8):4643-7. doi: 10.1073/pnas.77.8.4643.

Abstract

The self-assembly of globular proteins is often portrayed as a nucleation process in which the hydrogen bonding in segments of secondary structure is the precondition for further folding. We show here that this concept is unlikely because both the buried interior regions and the peptide chain turns of the folded protein (i.e., inside and outside) are predicted solely by the hydrophobicity of the residues, taken in sequential order along the chain. The helices and strands span the protein, and this observed secondary structure is seen to coincide with the regions predicted to be buried from hydrophobicity considerations alone. Our evidence suggests that linear chain regions rich in hydrophobic residues serve as small clusters that fold against each other, with concomitant or even later fixation of secondary structure. A helix or strand would arise in this folding process as one of a few energetically favorable alternatives for a given cluster, followed by a shift in the equilibrium between secondary structure conformers upon cluster association. the linera chain hydrophobicity alternates between locally maximal and minimal values, and these extrema partition the polypeptide chain into structural segments. This partitioning is seen in the x-ray structure as isodirectional segments bracketed between peptide chain-turns, with the segments expressed most often as helices and strands. the segment interactions define the geometry of the molecular interior and the chain-turns describe the predominant features of the molecular coastline. The segmentation of the molecule by linear chain hydrophobicity imposes a major geometric constraint upon possible folding events.

摘要

球状蛋白质的自组装通常被描述为一个成核过程,其中二级结构片段中的氢键是进一步折叠的先决条件。我们在此表明,这个概念不太可能成立,因为折叠蛋白的埋藏内部区域和肽链转角(即内部和外部)仅由沿着链按顺序排列的残基的疏水性预测。螺旋和链跨越蛋白质,并且观察到的这种二级结构与仅从疏水性考虑预测为埋藏的区域一致。我们的证据表明,富含疏水残基的线性链区域作为小簇相互折叠,同时或甚至在二级结构固定之后。在这个折叠过程中,螺旋或链会作为给定簇的少数几个能量有利的选择之一出现,随后在簇结合时二级结构构象异构体之间的平衡发生转变。线性链疏水性在局部最大值和最小值之间交替,这些极值将多肽链划分为结构片段。这种划分在X射线结构中表现为肽链转角之间的同向片段,这些片段最常表现为螺旋和链。片段相互作用定义了分子内部的几何形状,链转角描述了分子轮廓的主要特征。通过线性链疏水性对分子进行分割对可能的折叠事件施加了主要的几何约束。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ac0/349901/9c480ce603f2/pnas00495-0268-a.jpg

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