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Tethered Domains and Flexible Regions in tRNase ZL the Long Form of tRNase Z

机译:tRNase ZL(tRNase Z的长形式)中的束缚域和柔性区

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摘要

tRNase Z, a member of the metallo-β-lactamase family, endonucleolytically removes the pre-tRNA 3′ trailer in a step central to tRNA maturation. The short form (tRNase ZS) is the only one found in bacteria and archaebacteria and is also present in some eukaryotes. The homologous long form (tRNase ZL), exclusively found in eukaryotes, consists of related amino- and carboxy-domains, suggesting that tRNase ZL arose from a tandem duplication of tRNase ZS followed by interdependent divergence of the domains. X-ray crystallographic structures of tRNase ZS reveal a flexible arm (FA) extruded from the body of tRNase Z remote from the active site that binds tRNA far from the scissile bond. No tRNase ZL structures have been solved; alternative biophysical studies are therefore needed to illuminate its functional characteristics. Structural analyses of tRNase ZL performed by limited proteolysis, two dimensional gel electrophoresis and mass spectrometry establish stability of the amino and carboxy domains and flexibility of the FA and inter-domain tether, with implications for tRNase ZL function.
机译:金属RN-β-内酰胺酶家族的成员tRNase Z在tRNA成熟的关键步骤内,内切去除了tRNA前3'拖车。简短的形式(tRNase Z S )是在细菌和古细菌中发现的唯一形式,也存在于某些真核生物中。同源长型(tRNase Z L )仅在真核生物中发现,由相关的氨基和羧基结构域组成,这表明tRNase Z L 是通过串联重复序列产生的。 tRNase Z S ,然后是域的相互依存的分歧。 tRNase Z S 的X射线晶体学结构显示,它从tRNase Z的主体伸出,远离活动位点的柔性臂(FA)结合了远离易裂键的tRNA。尚未解决tRNase Z L 结构;因此,需要其他的生物物理研究来阐明其功能特征。通过有限的蛋白水解,二维凝胶电泳和质谱分析对tRNase Z L 进行结构分析,确定了氨基和羧基结构域的稳定性以及FA和域间系链的柔性,这对tRNase Z < sup> L 函数。

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