Henriques A O, Melsen L R, Moran C P
Department of Microbiology and Immunology, School of Medicine, Emory University, Atlanta, Georgia 30322, USA.
J Bacteriol. 1998 May;180(9):2285-91. doi: 10.1128/JB.180.9.2285-2291.1998.
Endospores of Bacillus subtilis are enclosed in a proteinaceous coat which can be differentiated into a thick, striated outer layer and a thinner, lamellar inner layer. We found that the N-terminal sequence of a 25-kDa protein present in a preparation of spore coat proteins matched that of the Mn-dependent superoxide dismutase (SOD) encoded by the sod4 locus. sod4 is transcribed throughout the growth and sporulation of a wild-type strain and is responsible for the SOD activity detected in total cell extracts prepared from B. subtilis. Disruption of the sod4 locus produced a mutant that lacked any detectable SOD activity during vegetative growth and sporulation. The sodA mutant was not impaired in the ability to form heat- or lysozyme-resistant spores. However, examination of the coat layers of sodA mutant spores revealed increased extractability of the tyrosine-rich outer coat protein CotG. We showed that this condition was not accompanied by augmented transcription of the cotG gene in sporulating cells of the sodA mutant. We conclude that SodA is required for the assembly of CotG into the insoluble matrix of the spore and suggest that CotG is covalently cross-linked into the insoluble matrix by an oxidative reaction dependent on SodA. Ultrastructural analysis revealed that the inner coat formed by a sodA mutant was incomplete. Moreover, the outer coat lacked the characteristic striated appearance of wild-type spores, a pattern that was accentuated in a cotG mutant. These observations suggest that the SodA-dependent formation of the insoluble matrix containing CotG is largely responsible for the striated appearance of this coat layer.
枯草芽孢杆菌的芽孢被包裹在一层蛋白质外壳中,该外壳可分为厚的、有条纹的外层和薄的、层状的内层。我们发现,芽孢外壳蛋白制剂中一种25 kDa蛋白的N端序列与sod4基因座编码的锰依赖性超氧化物歧化酶(SOD)的序列匹配。sod4在野生型菌株的整个生长和芽孢形成过程中都有转录,并负责在枯草芽孢杆菌制备的全细胞提取物中检测到的SOD活性。sod4基因座的破坏产生了一个突变体,该突变体在营养生长和芽孢形成过程中缺乏任何可检测到的SOD活性。sodA突变体形成耐热或耐溶菌酶芽孢的能力没有受损。然而,对sodA突变体芽孢的外壳层进行检查发现,富含酪氨酸的外壳蛋白CotG的可提取性增加。我们表明,这种情况在sodA突变体的芽孢形成细胞中并不伴随着cotG基因转录的增加。我们得出结论,SodA是CotG组装到芽孢不溶性基质中所必需的,并表明CotG通过依赖于SodA的氧化反应共价交联到不溶性基质中。超微结构分析表明,sodA突变体形成的内层外壳不完整。此外,外层外壳缺乏野生型芽孢特有的条纹外观,这种模式在cotG突变体中更为明显。这些观察结果表明,含有CotG的不溶性基质的SodA依赖性形成在很大程度上导致了该外壳层的条纹外观。