Adzhubei A A, Sternberg M J
Biomolecular Modelling Laboratory, Imperial Cancer Research Fund, London, United Kingdom.
Protein Sci. 1994 Dec;3(12):2395-410. doi: 10.1002/pro.5560031223.
Left-handed polyproline II (PPII) helices commonly occur in globular proteins in segments of 4-8 residues. This paper analyzes the structural conservation of PPII-helices in 3 protein families: serine proteinases, aspartic proteinases, and immunoglobulin constant domains. Calculations of the number of conserved segments based on structural alignment of homologous molecules yielded similar results for the PPII-helices, the alpha-helices, and the beta-strands. The PPII-helices are consistently conserved at the level of 100-80% in the proteins with sequence identity above 20% and RMS deviation of structure alignments below 3.0 A. The most structurally important PPII segments are conserved below this level of sequence identity. These results suggest that the PPII-helices, in addition to the other 2 secondary structure classes, should be identified as part of structurally conserved regions in proteins. This is supported by similar values for the local RMS deviations of the aligned segments for the structural classes of PPII-helices, alpha-helices, and beta-strands. The PPII-helices are shown to participate in supersecondary elements such as PPII-helix/alpha-helix. The conservation of PPII-helices depends on the conservation of a supersecondary element as a whole. PPII-helices also form links, possibly flexible, in the interdomain regions. The role of the PPII-helices in model building by homology is 2-fold; they serve as additional conserved elements in the structure allowing improvement of the accuracy of a model and provide correct chain geometry for modeling of the segments equivalenced to them in a target sequence. The improvement in model building is demonstrated in 2 test studies.
左手多聚脯氨酸II(PPII)螺旋常见于球状蛋白质中4至8个残基的片段。本文分析了3个蛋白质家族中PPII螺旋的结构保守性:丝氨酸蛋白酶、天冬氨酸蛋白酶和免疫球蛋白恒定区。基于同源分子结构比对计算保守片段数量,结果显示PPII螺旋、α螺旋和β链相似。在序列同一性高于20%且结构比对的均方根偏差低于3.0 Å的蛋白质中,PPII螺旋的保守率始终保持在100%至80%。在低于该序列同一性水平时,结构上最重要的PPII片段仍保持保守。这些结果表明,除了其他两类二级结构外,PPII螺旋也应被视为蛋白质结构保守区域的一部分。PPII螺旋、α螺旋和β链结构类别的比对片段局部均方根偏差的相似值支持了这一点。PPII螺旋参与了如PPII螺旋/α螺旋等超二级结构元件。PPII螺旋的保守性取决于整个超二级结构元件的保守性。PPII螺旋还在结构域间区域形成连接,可能具有灵活性。PPII螺旋在同源性建模中的作用有两个方面;它们作为结构中的额外保守元件,可提高模型的准确性,并为目标序列中与之等效的片段建模提供正确的链几何形状。两项测试研究证明了建模的改进。