Lu Mingjian, Kinchen Jason M, Rossman Kent L, Grimsley Cynthia, Hall Matthew, Sondek John, Hengartner Michael O, Yajnik Vijay, Ravichandran Kodi S
Beirne Carter Center for Immunology Research, Department of Microbiology, University of Virginia, Charlottesville, VA 22908 USA.
Curr Biol. 2005 Feb 22;15(4):371-7. doi: 10.1016/j.cub.2005.01.050.
CDM (CED-5, Dock180, Myoblast city) family members have been recently identified as novel, evolutionarily conserved guanine nucleotide exchange factors (GEFs) for Rho-family GTPases . They regulate multiple processes, including embryonic development, cell migration, apoptotic-cell engulfment, tumor invasion, and HIV-1 infection, in diverse model systems . However, the mechanism(s) of regulation of CDM proteins has not been well understood. Here, our studies on the prototype member Dock180 reveal a steric-inhibition model for regulating the Dock180 family of GEFs. At basal state, the N-terminal SH3 domain of Dock180 binds to the distant catalytic Docker domain and negatively regulates the function of Dock180. Further studies revealed that the SH3:Docker interaction sterically blocks Rac access to the Docker domain. Interestingly, ELMO binding to the SH3 domain of Dock180 disrupted the SH3:Docker interaction, facilitated Rac access to the Docker domain, and contributed to the GEF activity of the Dock180/ELMO complex. Additional genetic rescue studies in C. elegans suggested that the regulation of the Docker-domain-mediated GEF activity by the SH3 domain and its adjoining region is evolutionarily conserved. This steric-inhibition model may be a general mechanism for regulating multiple SH3-domain-containing Dock180 family members and may have implications for a variety of biological processes.
CDM(CED-5、Dock180、成肌细胞城市蛋白)家族成员最近被鉴定为Rho家族GTP酶的新型、进化保守的鸟嘌呤核苷酸交换因子(GEF)。在多种模型系统中,它们调节多个过程,包括胚胎发育、细胞迁移、凋亡细胞吞噬、肿瘤侵袭和HIV-1感染。然而,CDM蛋白的调节机制尚未得到很好的理解。在这里,我们对原型成员Dock180的研究揭示了一种调节Dock180家族GEF的空间抑制模型。在基础状态下,Dock180的N端SH3结构域与远处的催化Docker结构域结合,并对Dock180的功能产生负调节作用。进一步的研究表明,SH3与Docker的相互作用在空间上阻止了Rac接近Docker结构域。有趣的是,ELMO与Dock180的SH3结构域结合破坏了SH3与Docker的相互作用,促进了Rac接近Docker结构域,并有助于Dock180/ELMO复合物的GEF活性。在秀丽隐杆线虫中进行的额外基因拯救研究表明,SH3结构域及其相邻区域对Docker结构域介导的GEF活性的调节在进化上是保守的。这种空间抑制模型可能是调节多个含SH3结构域的Dock180家族成员的一般机制,可能对多种生物学过程有影响。