Imae Y, Strominger J L
J Biol Chem. 1976 Mar 10;251(5):1493-9.
Lysine-requiring mutants of Bacillus sphaericus 9602 were isolated and classified into three groups by their mutation site in the pathway of lysine biosynthesis. The Group I mutant lacks meso-alpha, epsilon-diaminopimelic acid (meso-Dap) decarboxylase activity, but Group II and III mutants have a normal level of Dap decarboxylase activity. A Group II mutant makes dipicolinic acid from an intermediate in the lysine pathway, but Group III mutants do not. In the absence of meso-Dap in the culture, muramic lactam content in the spore cortex of Group II and III mutants is very low, compared to the wild type content. Addition of meso-Dap to the culture causes an increase of muramic lactam content. Since meso-Dap is detectable only in the spore cortex of B. sphaericus 9602, almost all of the muramic lactam in the spore is probably also located in the cortex. Group I mutants grown in the presence of L-lysine sporulate normally. Group II and III mutants produce oval and nonrefractile spores under the same conditions but the addition of meso-Dap to the culture results in the production of round and refractile spores. Thus, the presence of cortex in the spore is essential to give the round and refractile spores in B. sphaericus. The presence of cortex is also required for the accumulation of dipicolinic acid in the sporulating cells. Furthermore, 1-octanol resistance of the spore depends only on the presence of cortex but both cortex and dipicolinic acid are required for heat resistance of the spore.
分离出球形芽孢杆菌9602的赖氨酸需求型突变体,并根据其在赖氨酸生物合成途径中的突变位点将其分为三组。I组突变体缺乏内消旋-α,ε-二氨基庚二酸(meso-Dap)脱羧酶活性,但II组和III组突变体的Dap脱羧酶活性水平正常。II组突变体可从赖氨酸途径的中间产物合成吡啶二羧酸,但III组突变体则不能。在培养基中不存在meso-Dap的情况下,与野生型含量相比,II组和III组突变体芽孢皮层中的胞壁酰内酰胺含量非常低。向培养基中添加meso-Dap会导致胞壁酰内酰胺含量增加。由于仅在球形芽孢杆菌9602的芽孢皮层中可检测到meso-Dap,因此芽孢中的几乎所有胞壁酰内酰胺可能也位于皮层中。在L-赖氨酸存在下生长的I组突变体正常产孢。II组和III组突变体在相同条件下产生椭圆形且无折射性的孢子,但向培养基中添加meso-Dap会导致产生圆形且有折射性的孢子。因此,芽孢中皮层的存在对于球形芽孢杆菌产生圆形且有折射性的孢子至关重要。芽孢皮层的存在对于产孢细胞中吡啶二羧酸的积累也是必需的。此外,芽孢对1-辛醇的抗性仅取决于皮层的存在,但芽孢的耐热性则需要皮层和吡啶二羧酸两者。