Smith H, Wiersma K, Venema G, Bron S
J Bacteriol. 1984 Mar;157(3):733-8. doi: 10.1128/jb.157.3.733-738.1984.
A 75,000-dalton protein complex involved in DNA binding during transformation was purified from membranes of competent Bacillus subtilis cells. Previous results (Smith et al., J. Bacteriol. 156:101-108, 1983) showed that the complex contained two polypeptides, polypeptide a (molecular weight, 18,000; isoelectric point, 5.0) and polypeptide b (molecular weight, 17,000; isoelectric point, 4.7) in approximately equal amounts. In the present experiments the two polypeptides were extracted from two-dimensional gels and studied separately and in combination with respect to DNA binding and nuclease activities. For DNA binding the interaction of both polypeptides was required. DNA binding occurred efficiently in the presence of EDTA. Nuclease activity was restricted to polypeptide b. The nucleolytic properties of b were identical to those of the native 75,000-dalton complex. Polypeptide a affected b by reducing its nuclease activity. Analysis of the nuclease subunit b on DNA-containing polyacrylamide gels revealed nuclease activities at four different molecular weight positions. These activities were identical to the major competence-specific nuclease activities which were previously implicated in the entry of donor DNA during transformation (Mulder and Venema, J. Bacteriol. 152:166-174, 1982). These results indicate that the 75,000-dalton protein complex is composed of two different competence-specific polypeptides involved in both binding and entry of donor DNA. The possible roles of the two polypeptides in the transformation of B. subtilis are discussed.
从感受态枯草芽孢杆菌细胞的膜中纯化出一种在转化过程中参与DNA结合的75000道尔顿蛋白质复合物。先前的研究结果(Smith等人,《细菌学杂志》156:101 - 108,1983年)表明,该复合物包含两种多肽,多肽a(分子量18000;等电点5.0)和多肽b(分子量17000;等电点4.7),二者含量大致相等。在本实验中,从二维凝胶中提取出这两种多肽,并分别以及结合起来研究它们的DNA结合和核酸酶活性。对于DNA结合,两种多肽的相互作用是必需的。在EDTA存在的情况下,DNA能有效结合。核酸酶活性仅限于多肽b。b的核酸水解特性与天然的75000道尔顿复合物相同。多肽a通过降低其核酸酶活性来影响b。在含DNA的聚丙烯酰胺凝胶上对核酸酶亚基b进行分析,发现在四个不同分子量位置有核酸酶活性。这些活性与先前认为在转化过程中参与供体DNA进入的主要感受态特异性核酸酶活性相同(Mulder和Venema,《细菌学杂志》152:166 - 174,1982年)。这些结果表明,75000道尔顿蛋白质复合物由两种不同的感受态特异性多肽组成,它们参与供体DNA的结合和进入。文中还讨论了这两种多肽在枯草芽孢杆菌转化过程中可能的作用。