Buist G, Venema G, Kok J
Department of Genetics, Groningen Biomolecular Sciences and Biotechnology Institute, University of Groningen, 9751 NN Haren, The Netherlands.
J Bacteriol. 1998 Nov;180(22):5947-53. doi: 10.1128/JB.180.22.5947-5953.1998.
The autolysin AcmA of Lactococcus lactis was shown to be degraded by the extracellular lactococcal proteinase PrtP. Autolysis, as evidenced by reduction in optical density of a stationary-phase culture and concomitant release of intracellular proteins, was greatly reduced when L. lactis MG1363 cells expressed the cell wall-anchored lactococcal proteinase PrtP of the PI-type caseinolytic specificity (PI). On the other hand, lactococcal strains that did not produce the proteinase showed a high level of autolysis, which was also observed when the cells produced the secreted form of PI or a cell wall-anchored proteinase with PIII-type specificity. Autolysis was also increased when MG1363 expressed the cell wall-anchored hybrid PI/PIII-type proteinase PIac. Zymographic analysis of AcmA activity during stationary phase showed that AcmA was quickly degraded by PI and much more slowly by PrtP proteinases with PIII-type and intermediate specificities. Autolysis of L. lactis by AcmA was influenced by the specificity, amount, and location of the lactococcal proteinase. No autolysis was observed when the various proteinases were expressed in an L. lactis acmA deletion mutant, indicating that PrtP itself did not cause lysis of cells. The chain length of a strain was significantly shortened when the strain expressed a cell wall-anchored active proteinase.
乳酸乳球菌的自溶素AcmA被证明可被细胞外的乳球菌蛋白酶PrtP降解。当乳酸乳球菌MG1363细胞表达具有PI型酪蛋白分解特异性(PI)的细胞壁锚定乳球菌蛋白酶PrtP时,自溶作用(以稳定期培养物光密度的降低以及细胞内蛋白质的伴随释放为证据)大大降低。另一方面,不产生蛋白酶的乳球菌菌株表现出高水平的自溶,当细胞产生PI的分泌形式或具有PIII型特异性的细胞壁锚定蛋白酶时也观察到这种情况。当MG1363表达细胞壁锚定的杂合PI/PIII型蛋白酶PIac时,自溶作用也增强。对稳定期AcmA活性的酶谱分析表明,AcmA被PI快速降解,而被具有PIII型和中间特异性的PrtP蛋白酶降解得慢得多。乳酸乳球菌被AcmA诱导的自溶作用受乳球菌蛋白酶的特异性、数量和位置影响。当各种蛋白酶在乳酸乳球菌acmA缺失突变体中表达时未观察到自溶现象,这表明PrtP本身不会导致细胞裂解。当菌株表达细胞壁锚定的活性蛋白酶时,菌株的链长会显著缩短。