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Alternative splicing creates two new architectures for human tyrosyl-tRNA synthetase

机译:选择性剪接为人类酪氨酰-tRNA合成酶创造了两种新的结构

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Many human tRNA synthetases evolved alternative functions outside of protein synthesis. These functions are associated with over 200 splice variants (SVs), most of which are catalytic nulls that engender new biology. While known to regulate non-translational activities, little is known about structures resulting from natural internal ablations of any protein. Here, we report analysis of two closely related, internally deleted, SVs of homodimeric human tyrosyl-tRNA synthetase (TyrRS). In spite of both variants ablating a portion of the catalytic core and dimer-interface contacts of native TyrRS, each folded into a distinct stable structure. Biochemical and nuclear magnetic resonance (NMR) analysis showed that the internal deletion of TyrRS Delta E2-4 SV gave an alternative, neomorphic dimer interface 'orthogonal' to that of native TyrRS. In contrast, the internal C-terminal splice site of TyrRS Delta E2-3 prevented either dimerization interface from forming, and yielded a predominantly monomeric protein. Unlike ubiquitous TyrRS, the neomorphs showed clear tissue preferences, which were distinct from each other. The results demonstrate a sophisticated structural plasticity of a human tRNA synthetase for architectural reorganizations that are preferentially elicited in specific tissues.
机译:许多人类tRNA合成酶在蛋白质合成之外发展了替代功能。这些功能与200多个剪接变体(SV)相关,其中大多数是催化空位,产生了新的生物学特性。尽管已知其调节非翻译活性,但对任何蛋白质天然内部消融所产生的结构了解甚少。在这里,我们报告分析的两个密切相关,内部删除的同型二聚体人类酪氨酰-tRNA合成酶(TyrRS)的SV。尽管这两种变体都消除了天然TyrRS的一部分催化核心和二聚体界面接触,但每个都折叠成不同的稳定结构。生化和核磁共振(NMR)分析表明,TyrRS Delta E2-4 SV的内部缺失提供了与天然TyrRS不同的“正交”新态二聚体界面。相反,TyrRS Delta E2-3的内部C末端剪接位点阻止了二聚化界面的形成,并产生了主要的单体蛋白。与普遍存在的TyrRS不同,新形态显示出清晰的组织偏好,彼此之间截然不同。结果表明,人tRNA合成酶具有复杂的结构可塑性,可优先在特定组织中进行结构重组。

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