首页> 美国卫生研究院文献>PLoS Pathogens >Crystal Structures of the Carboxyl cGMP Binding Domain of the Plasmodium falciparum cGMP-dependent Protein Kinase Reveal a Novel Capping Triad Crucial for Merozoite Egress
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Crystal Structures of the Carboxyl cGMP Binding Domain of the Plasmodium falciparum cGMP-dependent Protein Kinase Reveal a Novel Capping Triad Crucial for Merozoite Egress

机译:恶性疟原虫cGMP依赖蛋白激酶的羧基cGMP结合域的晶体结构揭示了裂殖子出口的新型封顶三元组。

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摘要

The Plasmodium falciparum cGMP-dependent protein kinase (PfPKG) is a key regulator across the malaria parasite life cycle. Little is known about PfPKG’s activation mechanism. Here we report that the carboxyl cyclic nucleotide binding domain functions as a “gatekeeper” for activation by providing the highest cGMP affinity and selectivity. To understand the mechanism, we have solved its crystal structures with and without cGMP at 2.0 and 1.9 Å, respectively. These structures revealed a PfPKG-specific capping triad that forms upon cGMP binding, and disrupting the triad reduces kinase activity by 90%. Furthermore, mutating these residues in the parasite prevents blood stage merozoite egress, confirming the essential nature of the triad in the parasite. We propose a mechanism of activation where cGMP binding allosterically triggers the conformational change at the αC-helix, which bridges the regulatory and catalytic domains, causing the capping triad to form and stabilize the active conformation.
机译:恶性疟原虫cGMP依赖性蛋白激酶(PfPKG)是整个疟疾寄生虫生命周期的关键调节剂。关于PfPKG的激活机制知之甚少。在这里我们报告说,羧基环核苷酸结合域通过提供最高的cGMP亲和力和选择性,充当激活的“守门人”。为了理解其机理,我们解决了在cGMP和不使用cGMP分别为2.0和1.9时的晶体结构。这些结构揭示了在cGMP结合时形成的PfPKG特异性加帽三联体,破坏三联体会使激酶活性降低90%。此外,使寄生虫中的这些残基突变可防止血液阶段裂殖子的流出,从而证实了该寄生虫中三联体的本质。我们提出了一种激活机制,其中cGMP结合变构地触发αC螺旋处的构象变化,该构象变化桥接了调节域和催化域,导致加帽三联体形成并稳定了活性构象。

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