Hadley Erik B, Testa Oliver D, Woolfson Derek N, Gellman Samuel H
Department of Chemistry, University of Wisconsin, Madison, WI 53706, USA.
Proc Natl Acad Sci U S A. 2008 Jan 15;105(2):530-5. doi: 10.1073/pnas.0709068105. Epub 2008 Jan 9.
Reliable predictive rules that relate protein sequence to structure would facilitate postgenome predictive biology and the engineering and de novo design of peptides and proteins. Through a combination of experiment and analysis of the protein data bank (PDB), we have deciphered and rationalized new rules for helix-helix interfaces of a common protein-folding and association motif, the antiparallel dimeric coiled coil. These interfaces are defined by a specific pattern of interactions among largely hydrophobic side chains often referred to as knobs-into-holes (KIH) packing: a knob from one helix inserts into a hole formed by four residues on the partner. Previous work has focused on lateral interactions within the KIH motif, for example, between an a position on one helix and a d' position on the other in an antiparallel coiled coil. We show that vertical interactions within the KIH motif, such as a'-a-a', are energetically important as well. The experimental and database analyses concur regarding preferred vertical combinations, which can be rationalized as leading to favorable side-chain interactions that we call constellations. The findings presented here highlight an unanticipated level of complexity in coiled-coil interactions, and our analysis of a few specific constellations illustrates a general, multipronged approach to addressing this complexity.
将蛋白质序列与结构相关联的可靠预测规则将有助于后基因组预测生物学以及肽和蛋白质的工程设计与从头设计。通过结合实验和对蛋白质数据库(PDB)的分析,我们已经破译并合理化了一种常见蛋白质折叠和缔合基序——反平行二聚体卷曲螺旋的螺旋 - 螺旋界面的新规则。这些界面由主要是疏水侧链之间特定的相互作用模式定义,这种模式通常被称为旋钮 - 孔(KIH)堆积:一个螺旋上的旋钮插入由另一个螺旋上的四个残基形成的孔中。先前的工作集中在KIH基序内的横向相互作用上,例如,在反平行卷曲螺旋中,一个螺旋上的a位置与另一个螺旋上的d'位置之间的相互作用。我们表明,KIH基序内的垂直相互作用,如a'-a-a',在能量上也很重要。实验和数据库分析在优选的垂直组合方面达成一致,这可以合理化为导致我们称为星座的有利侧链相互作用。这里呈现的发现突出了卷曲螺旋相互作用中一个意想不到的复杂程度,并且我们对一些特定星座的分析说明了一种解决这种复杂性的通用、多管齐下的方法。