Jackson D T, Froehlich J E, Keegstra K
Michigan State University-Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824-1312, USA.
J Biol Chem. 1998 Jun 26;273(26):16583-8. doi: 10.1074/jbc.273.26.16583.
It has previously been found that Tic110, an integral protein of the chloroplast inner envelope membrane, is a component of the chloroplastic protein import apparatus. However, conflicting reports exist concerning the topology of this protein within the inner envelope membrane. In this report, we provide evidence that indicates that the large (>90-kDa) hydrophilic domain of Tic110 is localized within the chloroplast stroma. Trypsin, a protease that cannot penetrate the permeability barrier of the inner envelope membrane, degrades neither Tic110 nor other proteins exposed to the stromal compartment but is able to digest proteins exposed to the intermembrane space between the two envelope membranes. Previous reports indicating that trypsin is able to degrade Tic110 were influenced by incomplete quenching of protease activity. When trypsin is not sufficiently quenched, it is able to digest Tic110, but only after chloroplasts have been ruptured. It is therefore necessary to employ adequate quenching protocols, such as the one reported here, whenever trypsin is utilized as an analytical tool. Based on a stromal localization for the majority of Tic110, we propose that this protein may be involved in the recruitment of stromal factors, possibly molecular chaperones, to the translocation apparatus during protein import.
此前已经发现,叶绿体内膜的整合蛋白Tic110是叶绿体蛋白输入装置的一个组成部分。然而,关于该蛋白在内膜中的拓扑结构存在相互矛盾的报道。在本报告中,我们提供的证据表明,Tic110的大(>90 kDa)亲水区位于叶绿体基质中。胰蛋白酶是一种不能穿透内膜通透性屏障的蛋白酶,它既不能降解Tic110,也不能降解暴露于基质区室的其他蛋白质,但能够消化暴露于两层包膜之间膜间隙的蛋白质。先前表明胰蛋白酶能够降解Tic110的报道受到蛋白酶活性不完全淬灭的影响。当胰蛋白酶没有被充分淬灭时,它能够消化Tic110,但只有在叶绿体破裂后才行。因此,每当将胰蛋白酶用作分析工具时,有必要采用适当的淬灭方案,如此处报道的方案。基于Tic110大部分位于基质中的定位,我们提出该蛋白可能在蛋白质输入过程中参与将基质因子(可能是分子伴侣)招募到转运装置中。