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Src酪氨酸激酶的计算机模拟激活揭示了分子内自磷酸化的分子基础。

In silico activation of Src tyrosine kinase reveals the molecular basis for intramolecular autophosphorylation.

作者信息

Mendieta Jesús, Gago Federico

机构信息

Departamento de Farmacología, Universidad de Alcalá, E-28871 Alcalá de Henares, Madrid, Spain.

出版信息

J Mol Graph Model. 2004 Oct;23(2):189-98. doi: 10.1016/j.jmgm.2004.06.001.

Abstract

Structural data suggest that important hinge-bending motions of the two lobes that shape the catalytic domain of Src tyrosine kinase, together with reorganization of an alpha helix (helix C), are needed for the activation loop to adopt the catalytically competent conformation. The phosphorylation of a Tyr residue (Tyr-416) in this loop also seems to be essential for enzyme activation. However, no information is available about the dynamics of this activation process. By comparing the inactive and active forms of the catalytic domains of Src and Lck, another member of the Src family, we first identified a short stretch that can act as a hinge for the interlobe motion. The opening of the lobes was then simulated using a targeted molecular dynamics approach. The results obtained suggested that pulling the two lobes apart is not enough to induce the required conformational change in the activation loop. Rather unexpectedly, however, swinging of the lobes situated Tyr-416 in a suitable position for intramolecular autophosphorylation, and further simulation of Tyr-416-phosphorylated Src in the presence of ADP did then result in a conformational change that placed the activation loop in a position similar to that found in the active open conformation of Lck. Taken together, our results establish a physical link between intramolecular autophosphorylation and loop activation.

摘要

结构数据表明,形成Src酪氨酸激酶催化结构域的两个叶的重要铰链弯曲运动,以及α螺旋(螺旋C)的重组,是激活环采用催化活性构象所必需的。该环中一个酪氨酸残基(Tyr-416)的磷酸化似乎对酶的激活也至关重要。然而,关于这一激活过程的动力学尚无可用信息。通过比较Src和Src家族的另一个成员Lck催化结构域的无活性和活性形式,我们首先确定了一段短序列,它可作为叶间运动的铰链。然后使用靶向分子动力学方法模拟叶的打开。所得结果表明,拉开两个叶不足以诱导激活环中所需的构象变化。然而,相当出乎意料的是,叶的摆动将Tyr-416置于分子内自磷酸化的合适位置,随后在存在ADP的情况下对Tyr-416磷酸化的Src进行进一步模拟,确实导致了构象变化,使激活环处于与Lck活性开放构象中发现的位置相似的位置。综上所述,我们的结果建立了分子内自磷酸化与环激活之间的物理联系。

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