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RAS-GAP蛋白复合物催化GTP水解的量子化学建模

Quantum chemical modeling of the GTP hydrolysis by the RAS-GAP protein complex.

作者信息

Topol Igor A, Cachau Raul E, Nemukhin Alexander V, Grigorenko Bella L, Burt Stanley K

机构信息

Advanced Biomedical Computing Center, SAIC Frederick, National Cancer Institute at Frederick, P.O. Box B, Frederick, MD 21702-1201, USA.

出版信息

Biochim Biophys Acta. 2004 Jul 1;1700(1):125-36. doi: 10.1016/j.bbapap.2004.04.007.

Abstract

We present results of the modeling for the hydrolysis reaction of guanosine triphosphate (GTP) in the RAS-GAP protein complex using essentially ab initio quantum chemistry methods. One of the approaches considers a supermolecular cluster composed of 150 atoms at a consistent quantum level. Another is a hybrid QM/MM method based on the effective fragment potential technique, which describes interactions between quantum and molecular mechanical subsystems at the ab initio level of the theory. Our results show that the GTP hydrolysis in the RAS-GAP protein complex can be modeled by a substrate-assisted catalytic mechanism. We can locate a configuration on the top of the barrier corresponding to the transition state of the hydrolysis reaction such that the straightforward descents from this point lead either to reactants GTP+H(2)O or to products guanosine diphosphate (GDP)+H(2)PO(4)(-). However, in all calculations such a single-step process is characterized by an activation barrier that is too high. Another possibility is a two-step reaction consistent with formation of an intermediate. Here the Pgamma-O(Pbeta) bond is already broken, but the lytic water molecule is still in the pre-reactive state. We present arguments favoring the assumption that the first step of the GTP hydrolysis reaction in the RAS-GAP protein complex may be assigned to the breaking of the Pgamma-O(Pbeta) bond prior to the creation of the inorganic phosphate.

摘要

我们使用从头算量子化学方法展示了RAS-GAP蛋白复合物中三磷酸鸟苷(GTP)水解反应的建模结果。其中一种方法考虑了一个由150个原子组成的处于一致量子水平的超分子簇。另一种是基于有效片段势技术的混合量子力学/分子力学(QM/MM)方法,该方法在理论的从头算水平上描述了量子和分子力学子系统之间的相互作用。我们的结果表明,RAS-GAP蛋白复合物中的GTP水解可以通过底物辅助催化机制进行建模。我们可以在对应于水解反应过渡态的势垒顶部找到一种构型,使得从这一点直接下降要么导致反应物GTP + H₂O,要么导致产物二磷酸鸟苷(GDP)+ H₂PO₄⁻³。然而,在所有计算中,这样的单步过程的特征是活化势垒过高。另一种可能性是与中间体形成一致的两步反应。在这里,Pγ-O(Pβ)键已经断裂,但裂解水分子仍处于反应前状态。我们提出了一些论据,支持将RAS-GAP蛋白复合物中GTP水解反应的第一步归因于在无机磷酸形成之前Pγ-O(Pβ)键的断裂这一假设。

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