Otsuga D, Keegan B R, Brisch E, Thatcher J W, Hermann G J, Bleazard W, Shaw J M
Department of Biology, University of Utah, Salt Lake City, Utah 84112, USA.
J Cell Biol. 1998 Oct 19;143(2):333-49. doi: 10.1083/jcb.143.2.333.
The Saccharomyces cerevisiae Dnm1 protein is structurally related to dynamin, a GTPase required for membrane scission during endocytosis. Here we show that Dnm1p is essential for the maintenance of mitochondrial morphology. Disruption of the DNM1 gene causes the wild-type network of tubular mitochondrial membranes to collapse to one side of the cell but does not affect the morphology or distribution of other cytoplasmic organelles. Dnm1 proteins containing point mutations in the predicted GTP-binding domain or completely lacking the GTP-binding domain fail to rescue mitochondrial morphology defects in a dnm1 mutant and induce dominant mitochondrial morphology defects in wild-type cells. Indirect immunofluorescence reveals that Dnm1p is distributed in punctate structures at the cell cortex that colocalize with the mitochondrial compartment. These Dnm1p-containing structures remain associated with the spherical mitochondria found in an mdm10 mutant strain. In addition, a portion of Dnm1p cofractionates with mitochondrial membranes during differential sedimentation and sucrose gradient fractionation of wild-type cells. Our results demonstrate that Dnm1p is required for the cortical distribution of the mitochondrial network in yeast, a novel function for a dynamin-related protein.
酿酒酵母Dnm1蛋白在结构上与发动蛋白相关,发动蛋白是一种在内吞作用期间膜分裂所必需的GTP酶。在此我们表明,Dnm1p对于维持线粒体形态至关重要。DNM1基因的破坏导致管状线粒体膜的野生型网络坍塌至细胞的一侧,但不影响其他细胞质细胞器的形态或分布。在预测的GTP结合结构域中含有点突变或完全缺乏GTP结合结构域的Dnm1蛋白无法挽救dnm1突变体中的线粒体形态缺陷,并在野生型细胞中诱导显性线粒体形态缺陷。间接免疫荧光显示,Dnm1p分布于细胞皮质的点状结构中,这些结构与线粒体区室共定位。这些含有Dnm1p的结构与mdm10突变体菌株中发现的球形线粒体保持关联。此外,在野生型细胞的差速沉降和蔗糖梯度分级分离过程中,一部分Dnm1p与线粒体膜共同分级分离。我们的结果表明,Dnm1p是酵母中线粒体网络皮质分布所必需的,这是一种发动蛋白相关蛋白的新功能。