首页> 外文OA文献 >The Conserved Cys-X1-X2-Cys Motif Present in the TtcA Protein Is Required for the Thiolation of Cytidine in Position 32 of tRNA from Salmonella enterica serovar Typhimurium
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The Conserved Cys-X1-X2-Cys Motif Present in the TtcA Protein Is Required for the Thiolation of Cytidine in Position 32 of tRNA from Salmonella enterica serovar Typhimurium

机译:TtcA蛋白中存在的保守的Cys-X1-X2-Cys母体是肠小肠沙门氏菌血清型鼠伤寒沙门氏菌tRNA的32位硫代胞嘧啶所必需的

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摘要

The modified nucleoside 2-thiocytidine (s2C) has so far been found in tRNA from organisms belonging to the phylogenetic domains Archaea and Bacteria. In the bacteria Escherichia coli and Salmonella enterica serovar Typhimurium, s2C is present in position 32 of only four tRNA species—\documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}tRNA_{ICG}^{Arg}\end{equation*}\end{document}, \documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}tRNA_{CCG}^{Arg}\end{equation*}\end{document}, \documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}tRNA_{mnm^{5}UCU}^{Arg}\end{equation*}\end{document}, and \documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}tRNA_{GCU}^{Ser}\end{equation*}\end{document}. An in-frame deletion of an S. enterica gene (designated ttcA, for “two-thio-cytidine”) was constructed, and such a mutant has no detectable s2C in its tRNA. The TtcA protein family is characterized by the existence of both a PP-loop and a Cys-X1-X2-Cys motif in the central region of the protein but can be divided into two distinct groups based on the presence and location of additional Cys-X1-X2-Cys motifs in terminal regions of the sequence. Mutant analysis showed that both cysteines in this central conserved Cys-X1-X2-Cys motif are required for the formation of s2C. The ΔttcA1 mutant grows at the same rate as the congenic wild-type strain, and no growth disadvantage caused by the lack of s2C was observed in a mixed-population experiment. Lack of s2C32 did not reduce the selection rate at the ribosomal aminoacyl-tRNA site (A-site) for \documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}Arg-tRNA_{ICG}^{Arg}\end{equation*}\end{document} at any of its cognate CGN codons, whereas A-site selection at AGG by \documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}Arg-tRNA_{mnm^{5}UCU}^{Arg}\end{equation*}\end{document} was dependent on the presence of s2C32. The presence of s2C32 in peptidyl-\documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}tRNA_{CCU}^{Arg}\end{equation*}\end{document} or in peptidyl-\documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}tRNA_{mnm^{5}UCU}^{Arg}\end{equation*}\end{document} interfered with decoding in the A-site. The presence of s2C32 in \documentclass[12pt]{minimal}\usepackage{amsmath}\usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy}\usepackage{mathrsfs}\setlength{\oddsidemargin}{-69pt}\begin{document}\begin{equation*}tRNA_{ICG}^{Arg}\end{equation*}\end{document} decreased the rate of translation of the CGA codon but not that of the CGU codon.
机译:迄今为止,已经在tRNA中发现了修饰的核苷2-硫胞苷(s2C),其来自属于系统发育域古细菌和细菌的生物。在细菌大肠杆菌和鼠伤寒沙门氏菌鼠伤寒沙门氏菌中,s2C仅存在于四种tRNA种类的32位中-\ documentclass [12pt] {minimum} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb } \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document} \ begin {equation *} tRNA_ {ICG} ^ {Arg} \ end {equation *} \ end {document },\ documentclass [12pt] {最小} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document} \ begin {equation *} tRNA_ {CCG} ^ {Arg} \ end {equation *} \ end {document},\ documentclass [12pt] {minimum} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document} \ begin {equation *} tRNA_ {mnm ^ {5} UCU} ^ {Arg} \ end {equation *} \ end {document}和\ documentclass [12pt] {minimum} \ usepackage {amsmath} \ usepack年龄{wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document} \ begin {equation *} tRNA_ {GCU} ^ {Ser} \ end {equation *} \ end {document}。构建了一个肠内链球菌基因的框内缺失(为“二硫代胞苷”命名为ttcA),并且这种突变体的tRNA中没有可检测到的s2C。 TtcA蛋白家族的特征是在蛋白的中央区域同时存在一个PP环和一个Cys-X1-X2-Cys基序,但根据其他Cys-的存在和位置可以将其分为两个不同的组序列末端区域中的X1-X2-Cys基序。突变分析表明,这个中央保守的Cys-X1-X2-Cys主题中的两个半胱氨酸都是s2C形成所必需的。 ΔttcA1突变体以与野生同型菌株相同的速率生长,并且在混合种群实验中未观察到由于缺乏s2C而导致的生长不利。缺少s2C32不会降低\ documentclass [12pt] {minimum} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb}的核糖体氨基酰基tRNA位置(A位置)的选择率\ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document} \ begin {equation *} Arg-tRNA_ {ICG} ^ {Arg} \ end {equation *} \ end { document}处于其任何相关的CGN密码子,而AGG在AGG上通过\ documentclass [12pt] {minimum} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy } \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document} \ begin {equation *} Arg-tRNA_ {mnm ^ {5} UCU} ^ {Arg} \ end {equation *} \ end {document}取决于s2C32的存在。肽基\ documentclass [12pt] {最小} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin } {-69pt} \ begin {document} \ begin {equation *} tRNA_ {CCU} ^ {Arg} \ end {equation *} \ end {document}或peptidyl- \ documentclass [12pt] {minimal} \ usepackage { amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} {-69pt} \ begin {document} \ begin {equation *} tRNA_ { mnm ^ {5} UCU} ^ {Arg} \ end {equation *} \ end {document}干扰了A站点中的解码。 \ documentclass [12pt] {minimum} \ usepackage {amsmath} \ usepackage {wasysym} \ usepackage {amsfonts} \ usepackage {amssymb} \ usepackage {amsbsy} \ usepackage {mathrsfs} \ setlength {\ oddsidemargin} { -69pt} \ begin {document} \ begin {equation *} tRNA_ {ICG} ^ {Arg} \ end {equation *} \ end {document}降低了CGA密码子的翻译速率,但没有降低CGU密码子的翻译速率。

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