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Substitutions in conserved regions preceding and within the linker affect activity and flexibility of tRNase ZL the long form of tRNase Z

机译:连接子之前和之内的保守区中的取代影响tRNase ZL(tRNase Z的长形式)的活性和柔性

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摘要

The enzyme tRNase Z, a member of the metallo-β-lactamase family, endonucleolytically removes 3’ trailers from precursor tRNAs, preparing them for CCA addition and aminoacylation. The short form of tRNase Z, tRNase ZS, functions as a homodimer and is found in all prokaryotes and some eukaryotes. The long form, tRNase ZL, related to tRNase ZS through tandem duplication and found only in eukaryotes, possesses ~2,000-fold greater catalytic efficiency than tRNase ZS. tRNase ZL consists of related but diverged amino and carboxy domains connected by a flexible linker (also referred to as a flexible tether) and functions as a monomer. The amino domain retains the flexible arm responsible for substrate recognition and binding while the carboxy domain retains the active site. The linker region was explored by Ala-scanning through two conserved regions of D. melanogaster tRNase Z: NdomTprox, located at the carboxy end of the amino domain proximal to the linker, and Tflex, a flexible site in the linker. Periodic substitutions in a hydrophobic patch (F329 and L332) at the carboxy end of NdomTprox show 2,700 and 670-fold impairment relative to wild type, respectively, accompanied by reduced linker flexibility at N-T inside the Ndom- linker boundary. The Ala substitution for N378 in the Tflex region has 10-fold higher catalytic efficiency than wild type and locally decreased flexibility, while the Ala substitution at R382 reduces catalytic efficiency ~50-fold. These changes in pre-tRNA processing kinetics and protein flexibility are interpreted in light of a recent crystal structure for S. cerevisiae tRNase Z, suggesting transmission of local changes in hydrophobicity into the skeleton of the amino domain.
机译:金属-β-内酰胺酶家族的成员tRNase Z酶通过核酸内切去除前体tRNA的3'尾部,为添加CCA和氨基酰化做好准备。 tRNase Z的简称,tRNase Z S ,具有同型二聚体的功能,存在于所有原核生物和某些真核生物中。长形式tRNase Z L 通过串联复制与tRNase Z S 相关,仅在真核生物中发现,其催化效率是tRNase Z 的约2,000倍。 S 。 tRNase Z L 由通过柔性接头(也称为柔性系链)连接的相关但相互偏离的氨基和羧基结构域组成,并起单体的作用。氨基结构域保留负责底物识别和结合的柔性臂,而羧基结构域保留活性位点。通过Ala扫描通过D. melanogaster tRNase Z的两个保守区域:NdomTprox和位于连接子中柔性位点Tflex的两个保守区域来探索连接子区域。在NdomTprox羧基末端的疏水补丁(F329和L332)中的周期性取代相对于野生型分别显示2700和670倍的损伤,并伴随着Ndom-接头边界内N-T接头柔性的降低。 Tflex区域中N378的Ala取代具有比野生型高10倍的催化效率,并且局部降低了柔韧性,而R382处的Ala取代则将催化效率降低了约50倍。鉴于酿酒酵母tRNase Z最近的晶体结构,解释了tRNA加工前动力学和蛋白质柔韧性的这些变化,这表明疏水性的局部变化会传递到氨基结构域的骨架中。

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