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Asymmetric configurations in a reengineered homodimer reveal multiple subunit communication pathways in protein allostery

机译:重新设计的同源二聚体中的不对称构型揭示了蛋白质变构中的多个亚基通讯途径

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摘要

Many allosteric proteins form homo-oligomeric complexes to regulate a biological function. In homo-oligomers, subunits establish communication pathways that are modulated by external stimuli like ligand binding. A challenge for dissecting the communication mechanisms in homo-oligomers is identifying intermediate liganded states, which are typically transiently populated. However, their identities provide the most mechanistic information on how ligand-induced signals propagate from bound to empty subunits. Here, we dissected the directionality and magnitude of subunit communication in a reengineered single-chain version of the homodimeric transcription factor cAMP receptor protein. By combining wild-type and mutant subunits in various asymmetric configurations, we revealed a linear relationship between the magnitude of cooperative effects and the number of mutant subunits. We found that a single mutation is sufficient to change the global allosteric behavior of the dimer even when one subunit was wild type. Dimers harboring two mutations with opposite cooperative effects had different allosteric properties depending on the arrangement of the mutations. When the two mutations were placed in the same subunit, the resulting cooperativity was neutral. In contrast, when placed in different subunits, the observed cooperativity was dominated by the mutation with strongest effects over cAMP affinity relative to wild type. These results highlight the distinct roles of intrasubunit interactions and intersubunit communication in allostery. Finally, dimers bound to either one or two cAMP molecules had similar DNA affinities, indicating that both asymmetric and symmetric liganded states activate DNA interactions. These studies have revealed the multiple communication pathways that homo-oligomers employ to transduce signals.
机译:许多变构蛋白形成同源寡聚复合物以调节生物学功能。在同源寡聚体中,亚基建立被外部刺激(如配体结合)调节的通信途径。解析均聚物中的通讯机制的挑战是鉴定中间配体状态,该状态通常是瞬时分布的。但是,它们的身份提供了有关配体诱导的信号如何从结合的亚基传播到空的亚基的最机械的信息。在这里,我们解剖了同源二聚体转录因子cAMP受体蛋白的单链版本的亚单位通信的方向性和大小。通过以各种不对称构型组合野生型和突变亚基,我们揭示了协同效应的大小与突变亚基数量之间的线性关系。我们发现即使一个亚基为野生型,单个突变也足以改变二聚体的整体变构行为。带有两个具有相反协同作用的突变的二聚体具有不同的变构性质,具体取决于突变的排列。当两个突变置于相同的亚基中时,产生的协同作用是中性的。相反,当置于不同的亚基中时,相对于野生型,观察到的协同性受突变影响最大,对cAMP亲和力的影响最大。这些结果突出了变构中亚基内相互作用和亚基间通讯的独特作用。最后,与一个或两个cAMP分子结合的二聚体具有相似的DNA亲和力,表明非对称和对称配体状态均激活DNA相互作用。这些研究揭示了同源寡聚体用来转换信号的多种通信途径。

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