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人 tRNA 鸟苷转移酶催化亚基 QTRT1 的晶体结构

Crystal Structure of the Human tRNA Guanine Transglycosylase Catalytic Subunit QTRT1.

机构信息

Department of Molecular Structural Biology, Institute of Microbiology and Genetics, GZMB, Georg-August-University Göttingen, 37077 Göttingen, Germany.

出版信息

Biomolecules. 2018 Aug 24;8(3):81. doi: 10.3390/biom8030081.

Abstract

RNA modifications have been implicated in diverse and important roles in all kingdoms of life with over 100 of them present on tRNAs. A prominent modification at the wobble base of four tRNAs is the 7-deaza-guanine derivative queuine which substitutes the guanine at position 34. This exchange is catalyzed by members of the enzyme class of tRNA guanine transglycosylases (TGTs). These enzymes incorporate guanine substituents into tRNA, tRNA tRNA, and tRNA in all kingdoms of life. In contrast to the homodimeric bacterial TGT, the active eukaryotic TGT is a heterodimer in solution, comprised of a catalytic QTRT1 subunit and a noncatalytic QTRT2 subunit. Bacterial TGT enzymes, that incorporate a queuine precursor, have been identified or proposed as virulence factors for infections by pathogens in humans and therefore are valuable targets for drug design. To date no structure of a eukaryotic catalytic subunit is reported, and differences to its bacterial counterpart have to be deducted from sequence analysis and models. Here we report the first crystal structure of a eukaryotic QTRT1 subunit and compare it to known structures of the bacterial TGT and murine QTRT2. Furthermore, we were able to determine the crystal structure of QTRT1 in complex with the queuine substrate.

摘要

RNA 修饰在所有生命领域中都具有多样化和重要的作用,其中超过 100 种存在于 tRNA 中。在四个 tRNA 的摆动碱基上,有一种突出的修饰是 7-脱氮鸟嘌呤衍生物 Queuine,它取代了位置 34 的鸟嘌呤。这种交换是由 tRNA 鸟嘌呤转糖苷酶 (TGT) 酶类的成员催化的。这些酶将鸟嘌呤取代基掺入 tRNA、tRNA tRNA 和所有生命领域的 tRNA 中。与同源二聚体细菌 TGT 不同,活性真核 TGT 在溶液中是异源二聚体,由催化 QTRT1 亚基和非催化 QTRT2 亚基组成。已经鉴定或提出了将 Queuine 前体掺入的细菌 TGT 酶作为人类病原体感染的毒力因子,因此是药物设计的有价值的目标。迄今为止,尚未报道真核催化亚基的结构,必须从序列分析和模型中推断出与其细菌对应物的差异。在这里,我们报告了第一个真核 QTRT1 亚基的晶体结构,并将其与已知的细菌 TGT 和鼠 QTRT2 结构进行了比较。此外,我们还能够确定 QTRT1 与 Queuine 底物复合物的晶体结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d382/6165067/4844ce7e7c2d/biomolecules-08-00081-g001.jpg

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