Groves M R, Mant A, Kuhn A, Koch J, Dübel S, Robinson C, Sinning I
Structural Biology Programme, EMBL, Meyerhofstrasse 1, 69117 Heidelberg, Germany.
J Biol Chem. 2001 Jul 27;276(30):27778-86. doi: 10.1074/jbc.M103470200. Epub 2001 May 16.
The signal recognition particle (SRP) is a ubiquitous system for the targeting of membrane and secreted proteins. The chloroplast SRP (cpSRP) is unique among SRPs in that it possesses no RNA and is functional in post-translational as well as co-translational targeting. We have expressed and purified the two components of the Arabidopsis thaliana chloroplast signal recognition particle (cpSRP) involved in post-translational transport: cpSRP54 and the chloroplast-specific protein, cpSRP43. Recombinant cpSRP supports the efficient in vitro insertion of pea preLhcb1 into isolated thylakoid membranes. Recombinant cpSRP is a stable heterodimer with a molecular mass of approximately 100 kDa as determined by analytical ultracentrifugation, gel filtration analysis, and dynamic light scattering. The interactions of the components of the recombinant heterodimer and pea preLhcb1 were probed using an immobilized peptide library (pepscan) approach. These data confirm two previously reported interactions with the L18 region and the third transmembrane helix of Lhcb1 and suggest that the interface of the cpSRP43 and cpSRP54 proteins is involved in substrate binding. Additionally, cpSRP components are shown to recognize peptides from the cleavable, N-terminal chloroplast transit peptide of preLhcb1. The interaction of cpSRP43 with cpSRP54 was probed in a similar experiment with a peptide library representing cpSPR54. The C terminus of cpSRP54 is essential for the formation of the stable cpSRP complex and cpSPR43 interacts with distinct regions of the M domain of cpSRP54.
信号识别颗粒(SRP)是一种普遍存在的用于靶向膜蛋白和分泌蛋白的系统。叶绿体SRP(cpSRP)在SRP中独具特色,因为它不含RNA,并且在翻译后以及共翻译靶向中均发挥作用。我们已经表达并纯化了拟南芥叶绿体信号识别颗粒(cpSRP)参与翻译后转运的两个组分:cpSRP54和叶绿体特异性蛋白cpSRP43。重组cpSRP支持豌豆前体Lhcb1高效体外插入分离的类囊体膜。通过分析超速离心、凝胶过滤分析和动态光散射测定,重组cpSRP是一种分子量约为100 kDa的稳定异二聚体。使用固定化肽库(肽扫描)方法探究了重组异二聚体组分与豌豆前体Lhcb1之间的相互作用。这些数据证实了先前报道的与Lhcb1的L18区域和第三个跨膜螺旋的两种相互作用,并表明cpSRP43和cpSRP54蛋白的界面参与底物结合。此外,cpSRP组分显示出能够识别前体Lhcb1可裂解的N末端叶绿体转运肽中的肽段。在类似实验中,使用代表cpSPR54的肽库探究了cpSRP43与cpSRP54的相互作用。cpSRP54的C末端对于稳定的cpSRP复合物的形成至关重要,并且cpSPR43与cpSRP54的M结构域的不同区域相互作用。