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Critical roles of CTP synthase N-terminal in cytoophidium assembly

机译:CTP合酶N末端在细胞膜组装中的关键作用

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摘要

Several metabolic enzymes assemble into distinct intracellular structures in prokaryotes and eukaryotes suggesting an important functional role in cell physiology. The CTP-generating enzyme CTP synthase forms long filamentous structures termed cytoophidia in bacteria, yeast, fruit flies and human cells independent of its catalytic activity. However, the amino acid determinants for protein-protein interaction necessary for polymerisation remained unknown. In this study, we systematically analysed the role of the conserved N-terminal of Drosophila CTP synthase in cytoophidium assembly. Our mutational analyses identified three key amino acid residues within this region that play an instructive role in organisation of CTP synthase into a filamentous structure. Co-transfection assays demonstrated formation of heteromeric CTP synthase filaments which is disrupted by protein carrying a mutated N-terminal alanine residue thus revealing a dominant-negative activity. Interestingly, the dominant-negative activity is supressed by the CTP synthase inhibitor DON. Furthermore, we found that the amino acids at the corresponding position in the human protein exhibit similar properties suggesting conservation of their function through evolution. Our data suggest that cytoophidium assembly is a multi-step process involving N-terminal-dependent sequential interactions between correctly folded structural units and provide insights into the assembly of these enigmatic structures.
机译:几种代谢酶在原核生物和真核生物中组装成不同的细胞内结构,提示其在细胞生理中的重要功能。生成CTP的酶CTP合酶在细菌,酵母,果蝇和人细胞中形成长丝状结构,称为胞吞作用,而与其催化活性无关。然而,聚合所必需的蛋白质-蛋白质相互作用的氨基酸决定因素仍然未知。在这项研究中,我们系统地分析了果蝇CTP合酶的保守N端在细胞膜组装中的作用。我们的突变分析确定了该区域内的三个关键氨基酸残基,这些残基在将CTP合酶组织成丝状结构中起指导作用。共转染测定法证明了异源CTP合酶丝的形成,其被携带突变的N端丙氨酸残基的蛋白破坏,从而显示了显性负活性。有趣的是,显性负活性被CTP合酶抑制剂DON抑制。此外,我们发现人蛋白质中相应位置的氨基酸表现出相似的特性,表明它们通过进化而得以保守。我们的数据表明,细胞噬菌体组装是一个多步过程,涉及正确折叠的结构单元之间的N端依赖性顺序相互作用,并为这些神秘结构的组装提供了见识。

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