Dajkovic Alex, Mukherjee Amit, Lutkenhaus Joe
Department of Microbiology, Molecular Genetics and Immunology, University of Kansas Medical Center, Kansas City, KS 66160, USA.
J Bacteriol. 2008 Apr;190(7):2513-26. doi: 10.1128/JB.01612-07. Epub 2008 Feb 1.
In Escherichia coli FtsZ organizes into a cytoskeletal ring structure, the Z ring, which effects cell division. FtsZ is a GTPase, but the free energy of GTP hydrolysis does not appear to be used for generation of the constriction force, leaving open the question of the function of the GTPase activity of FtsZ. Here we study the mechanism by which SulA, an inhibitor of FtsZ induced during the SOS response, inhibits FtsZ function. We studied the effects of SulA on the in vitro activities of FtsZ, on Z rings in vivo, and on a kinetic model for FtsZ polymerization in silico. We found that the binding of SulA to FtsZ is necessary but not sufficient for inhibition of polymerization, since the assembly of FtsZ polymers in the absence of the GTPase activity was not inhibited by SulA. We developed a new model for FtsZ polymerization that accounts for the cooperativity of FtsZ and could account for cooperativity observed in other linear polymers. When SulA was included in the kinetic scheme, simulations revealed that SulA with strong affinity for FtsZ delayed, but did not prevent, the assembly of polymers when they were not hydrolyzing GTP. Furthermore, the simulations indicated that SulA controls the assembly of FtsZ by binding to a polymerization-competent form of the FtsZ molecule and preventing it from participating in assembly. In vivo stoichiometry of the disruption of Z rings by SulA suggests that FtsZ may undergo two cooperative transitions in forming the Z ring.
在大肠杆菌中,FtsZ组装成一种细胞骨架环状结构,即Z环,它负责细胞分裂。FtsZ是一种GTP酶,但GTP水解的自由能似乎并未用于产生收缩力,这使得FtsZ的GTP酶活性的功能问题悬而未决。在这里,我们研究了SulA(一种在SOS应答期间诱导产生的FtsZ抑制剂)抑制FtsZ功能的机制。我们研究了SulA对FtsZ体外活性、体内Z环以及FtsZ聚合动力学模型的影响。我们发现,SulA与FtsZ的结合对于抑制聚合是必要的,但并不充分,因为在没有GTP酶活性的情况下FtsZ聚合物的组装并未受到SulA的抑制。我们开发了一种新的FtsZ聚合模型,该模型考虑了FtsZ的协同性,并且可以解释在其他线性聚合物中观察到的协同性。当在动力学方案中加入SulA时,模拟结果显示,对FtsZ具有强亲和力的SulA在聚合物不水解GTP时会延迟但不会阻止聚合物的组装。此外,模拟结果表明,SulA通过与FtsZ分子的一种具有聚合能力的形式结合并阻止其参与组装来控制FtsZ的组装。SulA破坏Z环的体内化学计量表明,FtsZ在形成Z环时可能经历两个协同转变。