López R, González M P, García E, García J L, García P
Department of Molecular Microbiology, Centro de Investigaciones Biológicas, CSIC, Madrid, Spain.
Res Microbiol. 2000 Jul-Aug;151(6):437-43. doi: 10.1016/s0923-2508(00)00172-8.
We have found two murein hydrolases (LytB and LytC) tightly bound to the cell envelope that have completely changed the domain building plan previously reported for the murein hydrolases of Streptococcus pneumoniae. The active center of LytB and LytC is located at the C-terminal, whereas the binding domain is at the N-terminal. LytC has been characterized as the first lysozyme of S. pneumoniae and behaves as an autolysin at 30 degrees C. LytB appears as the main hydrolase responsible for cell separation since inactivation of lytB leads to the formation of long chains of more than 100 cells. These findings indicate that genetic adaptation of mobile domains is extremely efficient in pneumococcus.
我们发现了两种紧密结合在细胞包膜上的胞壁质水解酶(LytB和LytC),它们彻底改变了先前报道的肺炎链球菌胞壁质水解酶的结构域构建模式。LytB和LytC的活性中心位于C端,而结合结构域位于N端。LytC已被鉴定为肺炎链球菌的首个溶菌酶,在30摄氏度时表现为自溶素。LytB似乎是负责细胞分离的主要水解酶,因为lytB失活会导致形成由100多个细胞组成的长链。这些发现表明,移动结构域的遗传适应性在肺炎球菌中极其高效。