Mason J M, Fajardo-Cavazos P, Setlow P
Department of Biochemistry, University of Connecticut Health Center, Farmington 06032.
Nucleic Acids Res. 1988 Jul 25;16(14A):6567-83. doi: 10.1093/nar/16.14.6567.
The levels of mRNAs from genes (sspA, B and E) which code for major small, acid-soluble, spore proteins of Bacillus subtilis have been determined, as well as the levels of mRNAs from ssp-lacZ gene fusions. Increasing the gene dosage of ssp-lacZ fusions resulted in parallel increases in both the ssp-lacZ mRNA level and the rate of b-galactosidase accumulation. Similarly, an 11-fold increase in sspE gene dosage gave a comparable increase in sspE mRNA, but at most a 1.5-fold increase in the amount of sspE gene product accumulated. In contrast, an 11-fold increase in the dosage of the sspA or B genes had no significant effect on the level of total sspA plus sspB mRNA, but did alter the ratios of these mRNAs as well as the amount of their gene products, to reflect the altered ratio of the two genes. These results suggest that intact ssp genes, but not ssp-lacZ gene fusions, are subject to feedback regulation of gene expression, with this regulation of the sspA and B genes effected by modulation of mRNA levels, while the feedback regulation of the sspE gene is at the post-transcriptional level.
已测定了编码枯草芽孢杆菌主要小的、酸溶性芽孢蛋白的基因(sspA、B和E)的mRNA水平,以及ssp-lacZ基因融合体的mRNA水平。增加ssp-lacZ融合体的基因剂量会导致ssp-lacZ mRNA水平和β-半乳糖苷酶积累速率同时增加。同样,sspE基因剂量增加11倍会使sspE mRNA有类似增加,但积累的sspE基因产物量最多增加1.5倍。相比之下,sspA或B基因剂量增加11倍对sspA和sspB总mRNA水平没有显著影响,但确实改变了这些mRNA的比例及其基因产物的量,以反映这两个基因比例的改变。这些结果表明,完整的ssp基因,而不是ssp-lacZ基因融合体,受到基因表达的反馈调节,sspA和B基因的这种调节通过mRNA水平的调节实现,而sspE基因的反馈调节发生在转录后水平。