Perskie Lauren L, Street Timothy O, Rose George D
TC Jenkins Department of Biophysics, Johns Hopkins University, Baltimore, Maryland 21218, USA.
Protein Sci. 2008 Jul;17(7):1151-61. doi: 10.1110/ps.035055.108. Epub 2008 Apr 23.
Globular proteins adopt complex folds, composed of organized assemblies of alpha-helix and beta-sheet together with irregular regions that interconnect these scaffold elements. Here, we seek to parse the irregular regions into their structural constituents and to rationalize their formative energetics. Toward this end, we dissected the Protein Coil Library, a structural database of protein segments that are neither alpha-helix nor beta-strand, extracted from high-resolution protein structures. The backbone dihedral angles of residues from coil library segments are distributed indiscriminately across the phi,psi map, but when contoured, seven distinct basins emerge clearly. The structures and energetics associated with the two least-studied basins are the primary focus of this article. Specifically, the structural motifs associated with these basins were characterized in detail and then assessed in simple simulations designed to capture their energetic determinants. It is found that conformational constraints imposed by excluded volume and hydrogen bonding are sufficient to reproduce the observed ,psi distributions of these motifs; no additional energy terms are required. These three motifs in conjunction with alpha-helices, strands of beta-sheet, canonical beta-turns, and polyproline II conformers comprise approximately 90% of all protein structure.
球状蛋白质呈现出复杂的折叠结构,由α-螺旋和β-折叠的有序组装以及连接这些支架元件的不规则区域组成。在此,我们试图将不规则区域解析为其结构成分,并阐明其形成的能量学原理。为此,我们剖析了蛋白质卷曲文库,这是一个从高分辨率蛋白质结构中提取的、既非α-螺旋也非β-链的蛋白质片段的结构数据库。卷曲文库片段中残基的主链二面角在φ、ψ图上无差别分布,但绘制等高线时,七个不同的区域清晰地显现出来。与研究最少的两个区域相关的结构和能量学是本文的主要关注点。具体而言,详细表征了与这些区域相关的结构基序,然后在旨在捕捉其能量决定因素的简单模拟中进行评估。结果发现,由排除体积和氢键施加的构象限制足以重现这些基序观察到的φ、ψ分布;无需额外的能量项。这三个基序与α-螺旋、β-折叠链、典型β-转角和多聚脯氨酸II构象异构体一起构成了所有蛋白质结构的约90%。