首页> 美国卫生研究院文献>Journal of Bacteriology >Genetic Analysis Identifies a Function for the queC (ybaX) Gene Product at an Initial Step in the Queuosine Biosynthetic Pathway in Escherichia coli
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Genetic Analysis Identifies a Function for the queC (ybaX) Gene Product at an Initial Step in the Queuosine Biosynthetic Pathway in Escherichia coli

机译:遗传分析确定在Queuosine生物合成途径中的第一步的queC(ybaX)基因产物的功能。

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摘要

Queuosine (Q), one of the most complex modifications occurring at the wobble position of tRNAs with GUN anticodons, is implicated in a number of biological activities, including accuracy of decoding, virulence, and cellular differentiation. Despite these important implications, its biosynthetic pathway has remained unresolved. Earlier, we observed that a naturally occurring strain of Escherichia coli B105 lacked Q modification in the tRNAs. In the present study, we developed a genetic screen to map the defect in E. coli B105 to a single gene, queC (renamed from ybaX), predicted to code for a 231-amino-acid-long protein with a pI of 5.6. As analyzed by mobility of tRNATyr on acid urea gels and two-dimensional thin-layer chromatography of the modified nucleosides, expression of QueC from a plasmid-borne copy confers a Q+ phenotype to E. coli B105. Further, analyses of tRNATyr from E. coli JE10651 (queA mutant), its derivative generated by deletion of chromosomal queC (queA ΔqueC), and E. coli JE7325, deficient in converting preQ0 to preQ1, have provided the first genetic evidence for the involvement of QueC at a step leading to production of preQ0, the first known intermediate in the generally accepted pathway that utilizes GTP as the starting molecule. In addition, we discuss the possibilities of collaboration of QueC with other cellular proteins in the production of preQ0.
机译:Queuosine(Q)是发生在带有GUN反密码子的tRNA摆动位置最复杂的修饰之一,涉及许多生物学活动,包括解码的准确性,毒力和细胞分化。尽管有这些重要的含义,但其生物合成途径仍未解决。早些时候,我们观察到天然存在的大肠杆菌B105菌株在tRNA中缺乏Q修饰。在本研究中,我们开发了一种遗传筛选方法,可将大肠杆菌B105中的缺陷定位到单个基因queC(从ybaX重命名),该基因预计编码231个氨基酸长的蛋白,pI为5.6。通过tRNA Tyr 在酸性尿素凝胶上的迁移率和修饰核苷的二维薄层色谱分析,质粒携带的拷贝中QueC的表达赋予Q + 大肠杆菌B105的表型。此外,分析了大肠杆菌Je10651(queA突变体)的tRNA Tyr (其缺失染色体queC(queAΔqueC)而产生的衍生物)和大肠杆菌JE7325,它们无法将preQ0转换为preQ1。提供了QueC参与导致preQ0产生的步骤的第一个遗传证据,preQ0是利用GTP作为起始分子的普遍接受的途径中第一个已知的中间体。此外,我们讨论了QueC与其他细胞蛋白在preQ0产生中合作的可能性。

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