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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Ab initio fragment molecular orbital study of molecular interactions between liganded retinoid X receptor and its coactivator; Part II: Influence of mutations in transcriptional activation function 2 activating domain core on the molecular interactio
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Ab initio fragment molecular orbital study of molecular interactions between liganded retinoid X receptor and its coactivator; Part II: Influence of mutations in transcriptional activation function 2 activating domain core on the molecular interactio

机译:配体类维生素A X受体与其共激活剂之间分子相互作用的从头算片段分子轨道研究;第二部分:转录激活功能2激活域核心中的突变对分子相互作用的影响

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摘要

The ab initio fragment molecular orbital (FMO) calculations were performed for retinoid X receptor (RXR) complexes with its ligand 9-cis retinoic acid (9cRA) and steroid receptor coactivator-1 (SRC1) to examine the influence of mutations in transcriptional activation function 2 activating domain core (AF2C) of RXR on molecular interactions between 9cRA liganded RXR and SRC1 coactivator. The RXR-SRC1 interactions in three types of RXR-9cRA-SRC1 complexes, namely, a wild type (WT), a mutant whose Glu453 of AF2C was substituted by Lys (E453K), and another mutant whose Glu456 of AF2C was substituted by Lys (E456K), were compared. Through the comparison of WT, E453K, and E456K, possible causes for a marked decrease in the transcriptional activity of RXR by the mutation of Glu453, which is known as a highly conserved charged residue of AF2C, were discussed. It was quantitatively demonstrated that the strength of the RXR-SRC1 interaction correlates with the degree of the transcriptional activation (WT > E456K > E453K). In E453K, the RXR-SRC1 interaction was substantially reduced by the AF2C-SRC1 repulsive interaction, and the charge transfer (CT) from RXR to SRC1 was also inhibited by the decreased electron donation from AF2C to SRC1. Our findings suggest that the inhibitions of the local RXR-SRC1 interaction via AF2C and of the local CT from RXR to SRC1 via AF2C would be the possible causes for the marked decrease in the transcriptional activity of RXR.
机译:对类视黄醇X受体(RXR)及其配体9-顺式视黄酸(9cRA)和类固醇受体共激活因子1(SRC1)进行了从头算分子轨道(FMO)计算,以检查突变对转录激活功能的影响9cRA配体RXR和SRC1共激活剂之间的分子相互作用中,RXR的2个激活域核心(AF2C)。三种类型的RXR-9cRA-SRC1复合体中的RXR-SRC1相互作用,即野生型(WT),AF2C的Glu453被Lys取代的突变体(E453K)和AF2C的Glu456被Lys取代的另一突变体。 (E456K),进行了比较。通过比较WT,E453K和E456K,讨论了由Glu453突变导致RXR转录活性显着降低的可能原因,该突变被称为AF2C的高度保守带电残基。定量证明了RXR-SRC1相互作用的强度与转录激活的程度相关(WT> E456K> E453K)。在E453K中,AF2C-SRC1排斥相互作用大大降低了RXR-SRC1相互作用,并且从AF2C到SRC1的电子捐赠减少,也抑制了从RXR到SRC1的电荷转移(CT)。我们的发现表明,通过AF2C抑制局部RXR-SRC1相互作用以及通过AF2C抑制从RXR到SRC1的局部CT可能是RXR转录活性显着降低的可能原因。

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