Kurcinski Mateusz, Kolinski Andrzej, Kmiecik Sebastian
Faculty of Chemistry, University of Warsaw , Pasteura 1, 02-093 Warsaw, Poland.
J Chem Theory Comput. 2014 Jun 10;10(6):2224-31. doi: 10.1021/ct500287c.
A complex of the phosphorylated kinase-inducible domain (pKID) with its interacting domain (KIX) is a model system for studies of mechanisms by which intrinsically unfolded proteins perform their functions. These mechanisms are not fully understood. Using an efficient coarse-grained model, ab initio simulations were performed of the coupled folding and binding of the pKID to the KIX. The simulations start from an unbound, randomly positioned and disordered pKID structure. During the simulations the pKID chain and its position remain completely unrestricted, while the KIX backbone is limited to near-native fluctuations. Ab initio simulations of such large-scale conformational transitions, unaffected by any knowledge about the bound pKID structure, remain inaccessible to classical simulations. Our simulations recover an ensemble of transient encounter complexes in good agreement with experimental results. We find that a key folding and binding step is linked to the formation of weak native interactions between a preformed nativelike fragment of a pKID helix and KIX surface. Once that nucleus forms, the pKID chain may condense from a largely disordered encounter ensemble to a natively bound and ordered conformation. The observed mechanism is reminiscent of a nucleation-condensation model, a common scenario for folding of globular proteins.
磷酸化激酶诱导结构域(pKID)与其相互作用结构域(KIX)形成的复合物,是用于研究内在无序蛋白质发挥其功能机制的模型系统。这些机制尚未完全了解。使用高效的粗粒度模型,对pKID与KIX的耦合折叠和结合进行了从头算模拟。模拟从无束缚、随机定位且无序的pKID结构开始。在模拟过程中,pKID链及其位置完全不受限制,而KIX主链仅限于接近天然状态的波动。这种大规模构象转变的从头算模拟不受任何关于结合态pKID结构的知识影响,经典模拟仍无法实现。我们的模拟得到了一系列瞬态相遇复合物,与实验结果高度吻合。我们发现,一个关键的折叠和结合步骤与pKID螺旋预先形成的类似天然片段与KIX表面之间弱天然相互作用的形成有关。一旦该核心形成,pKID链可能从基本上无序的相遇集合体凝聚成天然结合且有序的构象。观察到的机制让人联想到成核-凝聚模型,这是球状蛋白质折叠的常见情况。