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首页> 外文期刊>Journal of bacteriology >Biochemical and Genetic Characterization of a Temperature-Sensitive, Tryptophanyl-Transfer Ribonucleic Acid Synthetase Mutant of Bacillus subtilis
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Biochemical and Genetic Characterization of a Temperature-Sensitive, Tryptophanyl-Transfer Ribonucleic Acid Synthetase Mutant of Bacillus subtilis

机译:枯草芽孢杆菌温度敏感色氨酸转移核糖核酸合成酶突变体的生化和遗传特性。

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A temperature-sensitive, 5-fluorotryptophan (5FT)-resistant mutant of Bacillus subtilis was isolated which forms an altered tryptophanyl transfer ribonucleic acid synthetase [l-tryptophan: sRNA ligase (AMP), EC 6.1.1.2]. The mutant grows well at 30 C but not at 42 C. At the latter temperature, protein and ribonucleic acid (RNA) synthesis are abolished while deoxyribonucleic acid (DNA) synthesis proceeds for a considerable time. Tryptophanyl-transfer RNA (tRNA) synthetase activity is not detectable in the extracts of the mutant grown at 30 C whether this activity is measured by the attachment of l-tryptophan to tRNA or the l-tryptophan-dependent exchange of 32P-pyrophosphate with adenosine triphosphate. Mixing experiments with extracts from the wild type and the mutant have ruled out the presence of an inhibitor or the absence of an activator as possible causes. Attempts to retrieve enzyme activity in vitro by various means (different conditions for cell disruption, addition of l-tryptophan, and adenosine triphosphate to the extraction buffer containing glycerol) were unsuccessful. The mutation in the locus of the tryptophanyl tRNA synthetase (trpS) was mapped on the bacterial chromosome by transformation and transduction. It is located between argC and metA. All temperature-resistant transformants recover wild-type levels of tryptophanyl tRNA synthetase activity and sensitivity to 5FT. Spontaneous revertants to temperature resistance are 5FT sensitive, but their levels of tryptophanyl tRNA synthetase activity and the thermolability of this enzyme in cell-free extracts varies. These revertants do not support the growth of a presumed nonsense mutant of phase SPO-1. Transduction experiments with phage PBS-1 indicated that reversion must be the result of an event at the site of the original mutation or at a site extremely close to it.
机译:分离了一个对温度敏感的5-枯草芽孢杆菌的5-氟色氨酸(5FT)抗性突变体,该突变体形成了色氨酸转移核糖核酸合成酶[1-色氨酸:sRNA连接酶(AMP),EC 6.1.1.2 ]。该突变体在30°C时生长良好,但在42°C时不能生长。在后者温度下,蛋白质和核糖核酸(RNA)的合成被取消,而脱氧核糖核酸(DNA)的合成进行了相当长的时间。无论是通过将l-色氨酸附着到tRNA上还是通过l-色氨酸依赖的 32 交换来测量,在30°C下生长的突变体的提取物中均无法检测到色氨酸转移RNA(tRNA)合成酶的活性。 / p>焦磷酸与三磷酸腺苷。与野生型和突变体提取物的混合实验排除了存在抑制剂或不存在活化剂的可能原因。尝试通过各种方式(在不同的细胞破碎条件,向含有甘油的提取缓冲液中添加l-色氨酸和三磷酸腺苷)不同的方法来体外恢复酶活性均未成功。色氨酸tRNA合成酶( trpS )基因座的突变通过转化和转导定位在细菌染色体上。它位于 argC metA 之间。所有耐高温的转化子均可恢复野生型色氨酸tRNA合成酶的活性和对5FT的敏感性。自发的耐高温回复子对5FT敏感,但它们的色氨酸tRNA合成酶活性水平和该酶在无细胞提取物中的可热性各不相同。这些回复子不支持SPO-1期的无意义突变体的生长。用噬菌体PBS-1进行的转导实验表明,回复一定是原始突变位点或极其接近该位点的事件的结果。

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