Popham D L, Gilmore M E, Setlow P
Department of Biology, Virginia Tech, Blacksburg, Virginia 24061, USA.
J Bacteriol. 1999 Jan;181(1):126-32. doi: 10.1128/JB.181.1.126-132.1999.
The peptidoglycan cortex of endospores of Bacillus species is required for maintenance of spore dehydration and dormancy, and the structure of the cortex may also allow it to function in attainment of spore core dehydration. A significant difference between spore and growing cell peptidoglycan structure is the low degree of peptide cross-linking in cortical peptidoglycan; regulation of the degree of this cross-linking is exerted by D,D-carboxypeptidases. We report here the construction of mutant B. subtilis strains lacking all combinations of two and three of the four apparent D, D-carboxypeptidases encoded within the genome and the analysis of spore phenotypic properties and peptidoglycan structure for these strains. The data indicate that while the dacA and dacC products have no significant role in spore peptidoglycan formation, the dacB and dacF products both function in regulating the degree of cross-linking of spore peptidoglycan. The spore peptidoglycan of a dacB dacF double mutant was very highly cross-linked, and this structural modification resulted in a failure to achieve normal spore core dehydration and a decrease in spore heat resistance. A model for the specific roles of DacB and DacF in spore peptidoglycan synthesis is proposed.
芽孢杆菌属芽孢的肽聚糖皮层对于维持芽孢脱水和休眠是必需的,并且皮层的结构也可能使其在实现芽孢核心脱水方面发挥作用。芽孢与生长细胞肽聚糖结构之间的一个显著差异是皮层肽聚糖中肽交联程度较低;这种交联程度的调节是由D,D-羧肽酶发挥作用的。我们在此报告了突变枯草芽孢杆菌菌株的构建,这些菌株缺失了基因组中编码的四种明显的D,D-羧肽酶中的两种和三种的所有组合,并对这些菌株的芽孢表型特性和肽聚糖结构进行了分析。数据表明,虽然dacA和dacC产物在芽孢肽聚糖形成中没有显著作用,但dacB和dacF产物在调节芽孢肽聚糖交联程度方面均发挥作用。dacB dacF双突变体的芽孢肽聚糖高度交联,这种结构修饰导致无法实现正常的芽孢核心脱水,并降低了芽孢的耐热性。本文提出了DacB和DacF在芽孢肽聚糖合成中具体作用的模型。