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首页> 外文期刊>Proteins: Structure, Function, and Genetics >Computational studies of LXR molecular interactions reveal an allosteric communication pathway.
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Computational studies of LXR molecular interactions reveal an allosteric communication pathway.

机译:LXR分子相互作用的计算研究揭示了一种变构通讯途径。

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The liver X receptor, LXRalpha, is an important regulator of genes involved in metabolism and inflammation. The mechanism of communication between the cofactor peptide and the ligand in the ligand-binding pocket is a crucial and often discussed issue for the nuclear receptors (NRs), but such allosteric signaling pathways are difficult to detect and the transmission mechanism remains elusive. Here, we apply the anisotropic thermal diffusion method to the LXRalpha with bound coactivator and ligand. We detected a possible communication pathway between the coactivator peptide and the ligand. The signal is transmitted both through the receptor backbone and side chains. A key signaling residue is the first leucine in the cofactor peptide recognition motif LXXLL, which is conserved within the NR cofactors, suggesting a general mechanism for allosteric signaling. Furthermore, we studied the LXR receptor and cofactor molecular interactions in detail using molecular dynamics simulations. The protein-protein interaction patterns in the complexes of nine different cofactor peptides and holo-LXRalpha were characterized, revealing the importance of the receptor-cofactor charge clamp interaction. Specific, but infrequently occurring interactions were observed toward the cofactor peptide C-terminal residues. Thus, additional specificity between LXRalpha and its cofactors is likely to be found in molecular interactions outside the cofactor peptide or in other biological factors.
机译:肝脏X受体LXRalpha是与代谢和炎症有关的基因的重要调节剂。辅助因子肽与配体结合口袋中的配体之间的通讯机制是核受体(NRs)的关键且经常被讨论的问题,但是这种变构信号途径难以检测,并且其传输机制仍然难以捉摸。在这里,我们将各向异性热扩散方法应用于结合了共激活剂和配体的LXRalpha。我们检测到了共激活肽和配体之间可能的通讯途径。信号通过受体主链和侧链传输。一个关键的信号残基是辅因子肽识别基序LXXLL中的第一个亮氨酸,它在NR辅因子中是保守的,提示了变构信号的一般机制。此外,我们使用分子动力学模拟详细研究了LXR受体与辅因子的分子相互作用。九种不同的辅因子肽和holo-LXRalpha的复合物中的蛋白质-蛋白质相互作用模式被表征,揭示了受体-辅因子电荷钳相互作用的重要性。观察到针对辅因子肽C-末端残基的特异性但很少发生的相互作用。因此,很可能在辅因子肽外的分子相互作用或其他生物学因子中发现了LXRalpha及其辅因子之间的额外特异性。

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