Oliva María A, Huecas Sonia, Palacios Juan M, Martín-Benito Jaime, Valpuesta José M, Andreu José M
Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Cientificas, Madrid, Spain.
J Biol Chem. 2003 Aug 29;278(35):33562-70. doi: 10.1074/jbc.M303798200. Epub 2003 Jun 14.
We have studied the assembly and GTPase of purified FtsZ from the hyperthermophilic archaeon Methanococcus jannaschii, a structural homolog of eukaryotic tubulin, employing wild-type FtsZ, FtsZ-His6 (histidine-tagged FtsZ), and the new mutants FtsZ-W319Y and FtsZ-W319Y-His6, with light scattering, nucleotide analyses, electron microscopy, and image processing methods. This has revealed novel properties of FtsZ. The GTPase of archaeal FtsZ polymers is suppressed in Na+-containing buffer, generating stabilized structures that require GDP addition for disassembly. FtsZ assembly is polymorphic. Archaeal FtsZ(wt) assembles into associated and isolated filaments made of two parallel protofilaments with a 43 A longitudinal spacing between monomers, and this structure is also observed in bacterial FtsZ from Escherichia coli. The His6 extension facilitates the artificial formation of helical tubes and sheets. FtsZ-W319Y-His6 is an inactivated GTPase whose assembly remains regulated by GTP and Mg2+. It forms two-dimensional crystals made of symmetrical pairs of tubulin-like protofilaments, which associate in an antiparallel array (similarly to the known Ca2+-induced sheets of FtsZ-His6). In contrast to the lateral interactions of microtubule protofilaments, we propose that the primary assembly product of FtsZ is the double-stranded filament, one or several of which might form the dynamic Z ring during prokaryotic cell division.
我们利用野生型FtsZ、FtsZ-His6(带组氨酸标签的FtsZ)以及新突变体FtsZ-W319Y和FtsZ-W319Y-His6,通过光散射、核苷酸分析、电子显微镜和图像处理方法,研究了来自嗜热古菌詹氏甲烷球菌的纯化FtsZ(真核微管蛋白的结构同源物)的组装和GTPase活性。这揭示了FtsZ的新特性。古菌FtsZ聚合物的GTPase活性在含Na+的缓冲液中受到抑制,产生稳定的结构,这些结构需要添加GDP才能解聚。FtsZ组装具有多态性。古菌FtsZ(野生型)组装成由两条平行原丝组成的相关和孤立细丝,单体之间的纵向间距为43 Å,这种结构在大肠杆菌的细菌FtsZ中也有观察到。His6延伸促进了螺旋管和片层的人工形成。FtsZ-W319Y-His6是一种失活的GTPase,其组装仍受GTP和Mg2+调节。它形成由对称的微管蛋白样原丝对组成的二维晶体,这些原丝以反平行排列方式结合(类似于已知的Ca2+诱导的FtsZ-His6片层)。与微管原丝的横向相互作用不同,我们提出FtsZ的主要组装产物是双链细丝,其中一条或几条可能在原核细胞分裂过程中形成动态的Z环。