Rosendal Ken R, Wild Klemens, Montoya Guillermo, Sinning Irmgard
Biochemie-Zentrum Heidelberg, INF 328, D-69120 Heidelberg, Germany.
Proc Natl Acad Sci U S A. 2003 Dec 9;100(25):14701-6. doi: 10.1073/pnas.2436132100. Epub 2003 Dec 1.
Targeting of secretory and membrane proteins by the signal recognition particle (SRP) is evolutionarily conserved, and the multidomain protein SRP54 acts as the key player in SRP-mediated protein transport. Binding of a signal peptide to SRP54 at the ribosome is coordinated with GTP binding and subsequent complex formation with the SRP receptor. Because these functions are localized to distinct domains of SRP54, communication between them is essential. We report the crystal structures of SRP54 from the Archaeon Sulfolobus solfataricus with and without its cognate SRP RNA binding site (helix 8) at 4-A resolution. The two structures show the flexibility of the SRP core and the position of SRP54 relative to the RNA. A long linker helix connects the GTPase (G domain) with the signal peptide binding (M) domain, and a hydrophobic contact between the N and M domains relates the signal peptide binding site to the G domain. Hinge regions are identified in the linker between the G and M domains (292-LGMGD) and in the N-terminal part of the M domain, which allow for structural rearrangements within SRP54 upon signal peptide binding at the ribosome.
信号识别颗粒(SRP)对分泌蛋白和膜蛋白的靶向作用在进化上是保守的,多结构域蛋白SRP54在SRP介导的蛋白质转运中起关键作用。信号肽在核糖体上与SRP54的结合与GTP结合以及随后与SRP受体形成复合物相协调。由于这些功能定位于SRP54的不同结构域,它们之间的通讯至关重要。我们报道了嗜热栖热菌SRP54在有和没有其同源SRP RNA结合位点(螺旋8)时分辨率为4埃的晶体结构。这两种结构展示了SRP核心的灵活性以及SRP54相对于RNA的位置。一个长的连接螺旋将GTP酶(G结构域)与信号肽结合(M结构域)连接起来,N和M结构域之间的疏水接触将信号肽结合位点与G结构域联系起来。在G和M结构域之间的连接区(292-LGMGD)以及M结构域的N端部分确定了铰链区,这使得在核糖体上信号肽结合时SRP54内部能够发生结构重排。