Stricker Jesse, Maddox Paul, Salmon E D, Erickson Harold P
Department of Cell Biology, Duke University Medical Center, Box 3709, Durham, NC 27710, USA.
Proc Natl Acad Sci U S A. 2002 Mar 5;99(5):3171-5. doi: 10.1073/pnas.052595099. Epub 2002 Feb 19.
FtsZ, the major cytoskeletal component of the bacterial cell-division machine, assembles into a ring (the Z-ring) that contracts at septation. FtsZ is a bacterial homolog of tubulin, with similar tertiary structure, GTP hydrolysis, and in vitro assembly. We used green fluorescent protein-labeled FtsZ and fluorescence recovery after photobleaching to show that the E. coli Z-ring is extremely dynamic, continually remodeling itself with a half-time of 30 s. ZipA, a membrane protein involved in cell division that colocalizes with FtsZ, was equally dynamic. The Z-ring of the mutant ftsZ84, which has 1/10 the guanosine triphosphatase activity of wild-type FtsZ in vitro, showed a 9-fold slower turnover in vivo. This finding implies that assembly dynamics are determined primarily by GTP hydrolysis. Despite the greatly reduced assembly dynamics, the ftsZ84 cells divide with a normal cell-cycle time.
FtsZ是细菌细胞分裂机器的主要细胞骨架成分,它组装成一个在细胞分裂时收缩的环(Z环)。FtsZ是微管蛋白的细菌同源物,具有相似的三级结构、GTP水解作用和体外组装能力。我们使用绿色荧光蛋白标记的FtsZ和光漂白后的荧光恢复技术,证明大肠杆菌的Z环极具动态性,以30秒的半衰期不断重塑自身。ZipA是一种参与细胞分裂且与FtsZ共定位的膜蛋白,同样具有动态性。突变体ftsZ84的Z环在体外的鸟苷三磷酸酶活性仅为野生型FtsZ的1/10,其在体内的周转速度慢了9倍。这一发现表明组装动力学主要由GTP水解作用决定。尽管组装动力学大幅降低,但ftsZ84细胞仍以正常的细胞周期时间进行分裂。