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首页> 外文期刊>Cellular and Molecular Life Sciences >Superactive mutants of thromboxane prostanoid receptor: functional and computational analysis of an active form alternative to constitutively active mutants
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Superactive mutants of thromboxane prostanoid receptor: functional and computational analysis of an active form alternative to constitutively active mutants

机译:血栓烷类前列腺素受体的超活性突变体:替代组成型活性突变体的活性形式的功能和计算分析

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摘要

In class A GPCRs the E/DRY motif is critical for receptor activation and function. According to experimental and computational data, R3.50 forms a double salt bridge with the adjacent E/D3.49 and E/D6.30 in helix 6, constraining the receptor in an inactive state. The disruption of this network of interactions facilitates conformational transitions that generate a signal or constitutive activity. Here we demonstrate that non-conservative substitution of either E129(3.49) or E240(6.30) of thromboxane prostanoid receptor (TP) resulted in mutants characterized by agonist-induced more efficient signaling properties, regardless of the G protein coupling. Results of computational modeling suggested a more effective interaction between Gq and the agonist-bound forms of the TP mutants, compared to the wild type. Yet, none of the mutants examined revealed any increase in basal activity, precluding their classification as constitutively active mutants. Here, we propose that these alternative active conformations might be identified as superactive mutants or SAM.
机译:在A类GPCR中,E / DRY基序对于受体激活和功能至关重要。根据实验和计算数据,R3.50与螺旋6中的相邻E / D3.49和E / D6.30形成双盐桥,从而使受体处于非活性状态。这种相互作用网络的破坏促进构象转变,该构象转变产生信号或组成性活性。在这里,我们证明血栓烷前列腺素受体(TP)的E129 (3.49)或E240 (6.30)的非保守取代导致以激动剂诱导为特征的突变体更有效信号特性,与G蛋白偶联无关。计算模型的结果表明,与野生型相比,G q 与TP突变体的激动剂结合形式之间更有效的相互作用。然而,所检查的突变体均未显示出基础活性的任何增加,排除了将其分类为组成型活性突变体的可能性。在这里,我们建议这些替代的主动构象可以被标识为超级突变体或SAM。

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