Perry S E, Keegstra K
Department of Botany, University of Wisconsin, Madison 53706-1381.
Plant Cell. 1994 Jan;6(1):93-105. doi: 10.1105/tpc.6.1.93.
The post-translational transport of cytoplasmically synthesized precursor proteins into chloroplasts requires proteins in the envelope membranes. To identify some of these proteins, label transfer cross-linking was performed using precursor to the small subunit of ribulose-1,5-bisphosphate carboxylase (prSSU) that was blocked at an early stage of the transport process. Two envelope proteins were identified: an 86-kD protein and a 75-kD protein, both present in the outer membrane. Labeling of both proteins required prSSU and could not be accomplished with SSU lacking a transit peptide. Labeling of the 75-kD protein occurred only when low levels of ATP were present, whereas labeling of the 86-kD protein occurred in the absence of exogenous ATP. Although both labeled proteins were identified as proteins of the outer envelope membrane, the labeled form of the 75-kD protein could only be detected in fractions containing mixed envelope membranes. Based on these observations, we propose that prSSU first binds in an ATP-independent fashion to the 86-kD protein. The energy-requiring step is association with the 75-kD protein and assembly of a translocation contact site between the inner and outer membrane of the chloroplastic envelope.
细胞质中合成的前体蛋白向叶绿体的翻译后转运需要包膜膜中的蛋白质。为了鉴定其中一些蛋白质,使用在转运过程早期被阻断的核酮糖-1,5-二磷酸羧化酶小亚基前体(prSSU)进行标记转移交联。鉴定出两种包膜蛋白:一种86-kD蛋白和一种75-kD蛋白,均存在于外膜中。两种蛋白的标记都需要prSSU,而缺少转运肽的SSU则无法完成标记。仅当存在低水平的ATP时才会发生75-kD蛋白的标记,而86-kD蛋白的标记则在没有外源ATP的情况下发生。尽管两种标记的蛋白都被鉴定为外包膜膜的蛋白,但75-kD蛋白的标记形式只能在含有混合包膜膜的组分中检测到。基于这些观察结果,我们提出prSSU首先以不依赖ATP的方式与86-kD蛋白结合。需要能量的步骤是与75-kD蛋白结合并在叶绿体包膜的内膜和外膜之间组装转运接触位点。