Geissler A, Krimmer T, Bömer U, Guiard B, Rassow J, Pfanner N
Institut für Biochemie und Molekularbiologie, Universität Freiburg, D-79104 Freiburg, Germany.
Mol Biol Cell. 2000 Nov;11(11):3977-91. doi: 10.1091/mbc.11.11.3977.
The transport of preproteins into or across the mitochondrial inner membrane requires the membrane potential Deltapsi across this membrane. Two roles of Deltapsi in the import of cleavable preproteins have been described: an electrophoretic effect on the positively charged matrix-targeting sequences and the activation of the translocase subunit Tim23. We report the unexpected finding that deletion of a segment within the sorting sequence of cytochrome b(2), which is located behind the matrix-targeting sequence, strongly influenced the Deltapsi-dependence of import. The differential Deltapsi-dependence was independent of the submitochondrial destination of the preprotein and was not attributable to the requirement for mitochondrial Hsp70 or Tim23. With a series of preprotein constructs, the net charge of the sorting sequence was altered, but the Deltapsi-dependence of import was not affected. These results suggested that the sorting sequence contributed to the import driving mechanism in a manner distinct from the two known roles of Deltapsi. Indeed, a charge-neutral amino acid exchange in the hydrophobic segment of the sorting sequence generated a preprotein with an even better import, i.e. one with lower Deltapsi-dependence than the wild-type preprotein. The sorting sequence functioned early in the import pathway since it strongly influenced the efficiency of translocation of the matrix-targeting sequence across the inner membrane. These results suggest a model whereby an electrophoretic effect of Deltapsi on the matrix-targeting sequence is complemented by an import-stimulating activity of the sorting sequence.
前体蛋白转运进入线粒体内膜或穿过线粒体内膜需要该膜上的膜电位Δψ。关于Δψ在可裂解前体蛋白导入过程中的作用,已有两种描述:对带正电荷的基质靶向序列的电泳作用以及对转位酶亚基Tim23的激活作用。我们报告了一个意外发现,即位于基质靶向序列之后的细胞色素b₂分选序列内的一段序列缺失,强烈影响了导入过程对Δψ的依赖性。这种对Δψ依赖性的差异与前体蛋白的亚线粒体目的地无关,也不是由于对线粒体Hsp70或Tim23的需求所致。通过一系列前体蛋白构建体,改变了分选序列的净电荷,但导入过程对Δψ的依赖性并未受到影响。这些结果表明,分选序列以一种不同于Δψ已知的两种作用的方式,对导入驱动机制有所贡献。实际上,分选序列疏水段中的电荷中性氨基酸交换产生了一种导入效果更好的前体蛋白,即一种对Δψ依赖性比野生型前体蛋白更低的前体蛋白。分选序列在导入途径的早期起作用,因为它强烈影响基质靶向序列穿过内膜的转位效率。这些结果提示了一个模型,即Δψ对基质靶向序列的电泳作用由分选序列的导入刺激活性所补充。