Gaur N K, Dubnau E, Smith I
J Bacteriol. 1986 Nov;168(2):860-9. doi: 10.1128/jb.168.2.860-869.1986.
We have isolated a 1.0-kilobase fragment of the Bacillus subtilis chromosome which, when present in high-copy-number plasmids, caused a sporulation-proficient strain to become phenotypically sporulation deficient. This is referred to as the sporulation inhibition (Sin) phenotype. This DNA fragment, in multicopy, also inhibited the production of extracellular protease activity, which normally appears at the beginning of stationary growth. The origin of the fragment was mapped between the dnaE and spo0A genes on the B. subtilis chromosome, and its complete DNA sequence has been determined. By analysis of various deletions and a spontaneous mutant the Sin function was localized to an open reading frame (ORF) predicted from the DNA sequence. Inactivation of this ORF in the chromosome did not affect the ability of cells to sporulate. However, the late-growth-associated production of proteases and alpha-amylase was elevated in these cells. The predicted amino acid sequence of the protein encoded by this ORF had a DNA-binding domain, typically present in several regulatory proteins. We propose that the sin ORF encodes a regulatory protein that is involved in the transition from vegetative growth to sporulation.
我们从枯草芽孢杆菌染色体中分离出一个1.0千碱基的片段,当它存在于高拷贝数质粒中时,会使一个孢子形成能力正常的菌株在表型上变为孢子形成缺陷型。这被称为孢子形成抑制(Sin)表型。这个多拷贝的DNA片段还抑制了胞外蛋白酶活性的产生,而胞外蛋白酶活性通常在稳定期生长开始时出现。该片段的起源被定位在枯草芽孢杆菌染色体上的dnaE和spo0A基因之间,并且已经确定了其完整的DNA序列。通过对各种缺失片段和一个自发突变体的分析,Sin功能被定位到一个根据DNA序列预测的开放阅读框(ORF)上。该ORF在染色体上的失活并不影响细胞形成孢子的能力。然而,这些细胞中与生长后期相关的蛋白酶和α-淀粉酶的产生增加了。这个ORF编码的蛋白质的预测氨基酸序列含有一个DNA结合结构域,这在几种调节蛋白中很常见。我们推测sin ORF编码一种参与从营养生长向孢子形成转变的调节蛋白。