Ramirez Ursula D, Minasov George, Focia Pamela J, Stroud Robert M, Walter Peter, Kuhn Peter, Freymann Douglas M
Department of Molecular Pharmacology and Biological Chemistry, Northwestern University Medical School, 303 E Chicago Avenue, MC S215, Chicago, IL 60611-3008, USA.
J Mol Biol. 2002 Jul 19;320(4):783-99. doi: 10.1016/s0022-2836(02)00476-x.
The NG domain of the prokaryotic signal recognition protein Ffh is a two-domain GTPase that comprises part of the prokaryotic signal recognition particle (SRP) that functions in co-translational targeting of proteins to the membrane. The interface between the N and G domains includes two highly conserved sequence motifs and is adjacent in sequence and structure to one of the conserved GTPase signature motifs. Previous structural studies have shown that the relative orientation of the two domains is dynamic. The N domain of Ffh has been proposed to function in regulating the nucleotide-binding interactions of the G domain. However, biochemical studies suggest a more complex role for the domain in integrating communication between signal sequence recognition and interaction with receptor. Here, we report the structure of the apo NG GTPase of Ffh from Thermus aquaticus refined at 1.10 A resolution. Although the G domain is very well ordered in this structure, the N domain is less well ordered, reflecting the dynamic relationship between the two domains previously inferred. We demonstrate that the anisotropic displacement parameters directly visualize the underlying mobility between the two domains, and present a detailed structural analysis of the packing of the residues, including the critical alpha4 helix, that comprise the interface. Our data allows us to propose a structural explanation for the functional significance of sequence elements conserved at the N/G interface.
原核信号识别蛋白Ffh的NG结构域是一种双结构域GTP酶,它是原核信号识别颗粒(SRP)的一部分,在蛋白质共翻译靶向至膜的过程中发挥作用。N结构域和G结构域之间的界面包含两个高度保守的序列基序,在序列和结构上与保守的GTP酶特征基序之一相邻。先前的结构研究表明,这两个结构域的相对取向是动态的。有人提出Ffh的N结构域在调节G结构域的核苷酸结合相互作用中发挥作用。然而,生化研究表明该结构域在整合信号序列识别与受体相互作用之间的通讯方面具有更复杂的作用。在此,我们报告了嗜热栖热菌Ffh的无核苷酸NG GTP酶的结构,该结构在1.10 Å分辨率下得到了优化。尽管在此结构中G结构域排列非常有序,但N结构域的排列则没那么有序,这反映了先前推断的两个结构域之间的动态关系。我们证明,各向异性位移参数直接可视化了两个结构域之间潜在的流动性,并对包括构成界面的关键α4螺旋在内的残基堆积进行了详细的结构分析。我们的数据使我们能够对N/G界面处保守的序列元件的功能意义提出一种结构解释。