Sarsero J P, Merino E, Yanofsky C
Department of Biological Sciences, Stanford University, Stanford, CA 94305-5020, USA.
Proc Natl Acad Sci U S A. 2000 Mar 14;97(6):2656-61. doi: 10.1073/pnas.050578997.
Strains of Bacillus subtilis containing a temperature-sensitive tryptophanyl-tRNA synthetase produce elevated levels of the tryptophan pathway enzymes, when grown at high temperatures in the presence of excess tryptophan. This increase is because of reduced availability of the tryptophan-activated trp RNA-binding attenuation protein (TRAP). To test the hypothesis that this elevated trp gene expression was caused by the overproduction of a transcript capable of binding and sequestering TRAP, a computer program was designed to search the B. subtilis genome sequence for additional potential TRAP binding sites. A region containing a stretch of (G/A)AG trinucleotide repeats, characteristic of a TRAP binding site, was identified in the yczA-ycbK operon. We show that transcriptional regulation of the yczA-ycbK operon is controlled by the T-box antitermination mechanism in response to the level of uncharged tRNA(Trp), and that the presence of a trpS1 mutant allele increases production of the yczA-ycbK transcript. Elevated yczA-ycbK expression was shown to activate transcription of the trp operon. Deletion of the yczA-ycbK operon abolishes the trpS1 effect on trp gene expression. The purpose of increasing expression of the genes of tryptophan biosynthesis in the trpS mutant would be to provide additional tryptophan to overcome the charged tRNA(Trp) deficiency. Therefore, in B. subtilis, as in Escherichia coli, transcription of the tryptophan biosynthetic genes is regulated in response to changes in the extent of charging of tRNA(Trp) as well as the availability of tryptophan.
含有温度敏感型色氨酰 - tRNA合成酶的枯草芽孢杆菌菌株,在过量色氨酸存在的情况下于高温下生长时,色氨酸途径酶的水平会升高。这种增加是由于色氨酸激活的trp RNA结合衰减蛋白(TRAP)的可用性降低。为了检验这种trp基因表达升高是由能够结合并隔离TRAP的转录本过量产生所导致的这一假设,设计了一个计算机程序来在枯草芽孢杆菌基因组序列中搜索其他潜在的TRAP结合位点。在yczA - ycbK操纵子中鉴定出一个含有一段(G/A)AG三核苷酸重复序列的区域,这是TRAP结合位点的特征。我们表明yczA - ycbK操纵子的转录调控由T - 盒抗终止机制响应未负载tRNA(Trp)的水平进行控制,并且trpS1突变等位基因的存在会增加yczA - ycbK转录本的产生。已证明yczA - ycbK表达升高会激活trp操纵子的转录。删除yczA - ycbK操纵子可消除trpS1对trp基因表达的影响。在trpS突变体中增加色氨酸生物合成基因表达的目的是提供额外的色氨酸以克服负载tRNA(Trp)的缺陷。因此,在枯草芽孢杆菌中,如同在大肠杆菌中一样,色氨酸生物合成基因的转录是根据tRNA(Trp)负载程度的变化以及色氨酸的可用性进行调控的。