Meisinger C, Ryan M T, Hill K, Model K, Lim J H, Sickmann A, Müller H, Meyer H E, Wagner R, Pfanner N
Institut für Biochemie und Molekularbiologie, Universität Freiburg, Germany.
Mol Cell Biol. 2001 Apr;21(7):2337-48. doi: 10.1128/MCB.21.7.2337-2348.2001.
The preprotein translocase of the yeast mitochondrial outer membrane (TOM) consists of the initial import receptors Tom70 and Tom20 and a approximately 400-kDa (400 K) general import pore (GIP) complex that includes the central receptor Tom22, the channel Tom40, and the three small Tom proteins Tom7, Tom6, and Tom5. We report that the GIP complex is a highly stable complex with an unusual resistance to urea and alkaline pH. Under mild conditions for mitochondrial lysis, the receptor Tom20, but not Tom70, is quantitatively associated with the GIP complex, forming a 500K to 600K TOM complex. A preprotein, stably arrested in the GIP complex, is released by urea but not high salt, indicating that ionic interactions are not essential for keeping the preprotein in the GIP complex. Under more stringent detergent conditions, however, Tom20 and all three small Tom proteins are released, while the preprotein remains in the GIP complex. Moreover, purified outer membrane vesicles devoid of translocase components of the intermembrane space and inner membrane efficiently accumulate the preprotein in the GIP complex. Together, Tom40 and Tom22 thus represent the functional core unit that stably holds accumulated preproteins. The GIP complex isolated from outer membranes exhibits characteristic TOM channel activity with two coupled conductance states, each corresponding to the activity of purified Tom40, suggesting that the complex contains two simultaneously active and coupled channel pores.
酵母线粒体外膜的前体蛋白转运体(TOM)由初始导入受体Tom70和Tom20以及一个约400 kDa(400K)的通用导入孔(GIP)复合体组成,该复合体包括中央受体Tom22、通道Tom40以及三个小Tom蛋白Tom7、Tom6和Tom5。我们报告称,GIP复合体是一种高度稳定的复合体,对尿素和碱性pH具有异常的抗性。在线粒体裂解的温和条件下,受体Tom20而非Tom70与GIP复合体定量结合,形成500K至600K的TOM复合体。稳定滞留在GIP复合体中的前体蛋白可被尿素释放,但不能被高盐释放,这表明离子相互作用对于将前体蛋白保留在GIP复合体中并非必不可少。然而,在更严格的去污剂条件下,Tom20和所有三个小Tom蛋白都会被释放,而前体蛋白仍保留在GIP复合体中。此外,缺乏膜间隙和内膜转运体成分的纯化外膜囊泡能有效地将前体蛋白积累在GIP复合体中。因此,Tom40和Tom22共同构成了稳定保留积累的前体蛋白的功能核心单元。从外膜分离的GIP复合体表现出具有两种耦合电导状态的特征性TOM通道活性,每种状态对应于纯化的Tom40的活性,这表明该复合体包含两个同时活跃且耦合的通道孔。