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Mapping The Conformational Transition In Src Activation By Cumulating The Information From Multiple Molecular Dynamics Trajectories

机译:通过累积来自多个分子动力学轨迹的信息来映射Src激活中的构象转变

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The Src-family kinases are allosteric enzymes that play a key role in the regulation of ceil growth and proliferation. In response to cellular signals, they undergo large conformational changes to switch between distinct inactive and active states. A computational strategy for characterizing the conformational transition pathway is presented to bridge the inactive arid active states of the catalytic domain of Hck. The information from a large number (78) of independent all-atom molecular dynamics trajectories with explicit solvent is combined together to assemble a connectivity map of the conformational transition. Two intermediate states along the activation pathways are identified, and their structural features are characterized. A coarse free-energy landscape is built in terms of the collective motions corresponding to the opening of the activation loop (A-loop) and the rotation of the αC helix. This landscape shows that the protein can adopt a multitude of conformations in which the A-loop is partially open, while the αC helix remains in the orientation characteristic of the inactive conformation. The complete transition leading to the active conformation requires a concerted movement involving further opening of the A-loop, the relative alignment of N-lobe and C-lobe, and the rotation of the αC helix needed to recruit the residues necessary for catalysis in the active site. The analysis leads to a dynamic view of the full-length kinase activation, whereby transitions of the catalytic domain to intermediate configurations with a partially open A-loop are permitted, even while the SH2-SH3 clamp remains fully engaged. These transitions would render Y416 available for the transphos-phorylation event that ultimately locks down the active state. The results provide a broad framework for picturing the conformational transitions leading to kinase activation.
机译:Src-家族激酶是变构酶,在调节细胞生长和增殖中起关键作用。响应细胞信号,它们经历大的构象变化以在不同的非活性状态和活性状态之间切换。提出了表征构象过渡途径的计算策略,以桥接Hck催化域的非活性和活性状态。来自大量(78)具有明确溶剂的独立全原子分子动力学轨迹的信息被组合在一起,以构筑构象转变的连接图。沿激活途径的两个中间状态被识别,并表征其结构特征。根据与激活环(A环)的打开和αC螺旋的旋转相对应的集体运动,构建了一个粗糙的自由能景观。该图表明该蛋白可以采用多种构象,其中A环部分打开,而αC螺旋保留在非活性构象的定向特征中。导致活性构象的完整过渡需要协调一致的运动,包括进一步打开A环,N瓣和C瓣的相对排列以及αC螺旋的旋转,以吸收催化中必需的残基。活动站点。该分析产生了全长激酶激活的动态视图,从而即使在SH2-SH3钳位保持完全接合的情况下,也允许催化结构域过渡到带有部分开放A环的中间构型。这些转变将使Y416可用于反式-磷酸化事件,从而最终锁定激活状态。结果为描绘导致激酶活化的构象转变提供了广阔的框架。

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