Huecas Sonia, Schaffner-Barbero Claudia, García Wanius, Yébenes Hugo, Palacios Juan Manuel, Díaz José Fernando, Menéndez Margarita, Andreu José Manuel
Centro de Investigaciones Biológicas, Consejo Superior de Investigaciones Científicas, Ramiro de Maeztu, 9, 28040, Madrid, Spain.
J Biol Chem. 2007 Dec 28;282(52):37515-28. doi: 10.1074/jbc.M706399200. Epub 2007 Oct 31.
Prokaryotic cell division protein FtsZ, an assembling GTPase, directs the formation of the septosome between daughter cells. FtsZ is an attractive target for the development of new antibiotics. Assembly dynamics of FtsZ is regulated by the binding, hydrolysis, and exchange of GTP. We have determined the energetics of nucleotide binding to model apoFtsZ from Methanococcus jannaschii and studied the kinetics of 2'/3'-O-(N-methylanthraniloyl) (mant)-nucleotide binding and dissociation from FtsZ polymers, employing calorimetric, fluorescence, and stopped-flow methods. FtsZ binds GTP and GDP with K(b) values ranging from 20 to 300 microm(-1) under various conditions. GTP.Mg(2+) and GDP.Mg(2+) bind with slightly reduced affinity. Bound GTP and the coordinated Mg(2+) ion play a minor structural role in FtsZ monomers, but Mg(2+)-assisted GTP hydrolysis triggers polymer disassembly. Mant-GTP binds and dissociates quickly from FtsZ monomers, with approximately 10-fold lower affinity than GTP. Mant-GTP displacement measured by fluorescence anisotropy provides a method to test the binding of any competing molecules to the FtsZ nucleotide site. Mant-GTP is very slowly hydrolyzed and remains exchangeable in FtsZ polymers, but it becomes kinetically stabilized, with a 30-fold slower k(+) and approximately 500-fold slower k(-) than in monomers. The mant-GTP dissociation rate from FtsZ polymers is comparable with the GTP hydrolysis turnover and with the reported subunit turnover in Escherichia coli FtsZ polymers. Although FtsZ polymers can exchange nucleotide, unlike its eukaryotic structural homologue tubulin, GDP dissociation may be slow enough for polymer disassembly to take place first, resulting in FtsZ polymers cycling with GTP hydrolysis similarly to microtubules.
原核细胞分裂蛋白FtsZ是一种组装型GTP酶,它指导子细胞之间隔体的形成。FtsZ是开发新型抗生素的一个有吸引力的靶点。FtsZ的组装动力学受GTP的结合、水解和交换调控。我们已经测定了核苷酸与詹氏甲烷球菌的模型脱辅基FtsZ结合的能量学,并采用量热法、荧光法和停流法研究了2'/3'-O-(N-甲基邻氨基苯甲酰基)(mant)-核苷酸与FtsZ聚合物结合和解离的动力学。在各种条件下,FtsZ结合GTP和GDP的K(b)值范围为20至300 μmol⁻¹。GTP·Mg²⁺和GDP·Mg²⁺的结合亲和力略有降低。结合的GTP和配位的Mg²⁺离子在FtsZ单体中起次要的结构作用,但Mg²⁺辅助的GTP水解会触发聚合物解体。Mant-GTP与FtsZ单体快速结合和解离,其亲和力比GTP低约10倍。通过荧光各向异性测量的Mant-GTP置换提供了一种测试任何竞争分子与FtsZ核苷酸位点结合的方法。Mant-GTP水解非常缓慢,在FtsZ聚合物中仍可交换,但它在动力学上变得稳定,其正向速率常数k(+)比单体慢30倍,逆向速率常数k(-)比单体慢约500倍。FtsZ聚合物中mant-GTP的解离速率与GTP水解周转率以及大肠杆菌FtsZ聚合物中报道的亚基周转率相当。尽管FtsZ聚合物可以交换核苷酸,但与其真核结构同源物微管蛋白不同,GDP解离可能足够缓慢,以至于聚合物首先发生解体,导致FtsZ聚合物与GTP水解循环,类似于微管。