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Molecular modeling of the interactions of trichosanthin with four substrate analogs.

机译:天花粉蛋白与四种底物类似物相互作用的分子模型。

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摘要

Trichosanthin (TCS) is a ribosome-inactivating protein (RIP) that possesses N-glycosidase activity. It inactivates ribosomes and arrests protein synthesis by removing a specific adenine from 28S rRNA. A molecular dynamics simulated annealing method was applied to study the binding modes of TCS with substrate analogs, three oligonucleotides GAG, GAGA, and CGAGAG, based on the crystal structures of the stable complexes of TCS with NADPH and with the reaction product adenine. A water molecule proposed to be responsible for hydrolyzing the N-glycosidic bond was included in the model. All the oligoribonucleotides can dock into the active cleft of TCS without unfavorable contacts. The interaction energies between TCS and the three oligonucleotides were calculated. The interactions of TCS with NADH were also studied by a molecular dynamics simulated annealing method. The interaction energy between NADH and TCS was compared with that between NADPH and TCS, showing that the lack of 2'-phosphate group leads to an energy rise of 20 kcal/mol.
机译:天花粉蛋白(TCS)是具有N-糖苷酶活性的核糖体失活蛋白(RIP)。它通过从28S rRNA中去除特定的腺嘌呤来使核糖体失活并阻止蛋白质合成。基于TCS与NADPH和反应产物腺嘌呤的稳定配合物的晶体结构,采用分子动力学模拟退火方法研究TCS与底物类似物,三种寡核苷酸GAG,GAGA和CGAGAG的结合方式。该模型中包括一个负责水解N-糖苷键的水分子。所有寡核糖核苷酸都可以停靠在TCS的活动裂隙中,而不会发生不利的接触。计算了TCS和三种寡核苷酸之间的相互作用能。还通过分子动力学模拟退火方法研究了TCS与NADH的相互作用。将NADH和TCS之间的相互作用能与NADPH和TCS之间的相互作用能进行了比较,表明缺少2'-磷酸基团会导致能量增加20 kcal / mol。

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