Department of Biological Sciences, University of Alberta, Edmonton, Alberta, Canada.
PLoS One. 2013 Aug 5;8(8):e71837. doi: 10.1371/journal.pone.0071837. Print 2013.
The endoplasmic reticulum mitochondria encounter structure (ERMES) tethers the er to mitochondria and contains four structural components: Mmm1, Mdm12, Mdm10, and Mmm2 (Mdm34). The Gem1 protein may play a role in regulating ERMES function. Saccharomyces cerevisiae and Neurospora crassa strains lacking any of Mmm1, Mdm12, or Mdm10 are known to show a variety of phenotypic defects including altered mitochondrial morphology and defects in the assembly of β-barrel proteins into the mitochondrial outer membrane. Here we examine ERMES complex components in N. crassa and show that Mmm1 is an ER membrane protein containing a Cys residue near its N-terminus that is conserved in the class Sordariomycetes. The residue occurs in the ER-lumen domain of the protein and is involved in the formation of disulphide bonds that give rise to Mmm1 dimers. Dimer formation is required for efficient assembly of Tom40 into the TOM complex. However, no effects are seen on porin assembly or mitochondrial morphology. This demonstrates a specificity of function and suggests a direct role for Mmm1 in Tom40 assembly. Mutation of a highly conserved region in the cytosolic domain of Mmm1 results in moderate defects in Tom40 and porin assembly, as well as a slight morphological phenotype. Previous reports have not examined the role of Mmm2 with respect to mitochondrial protein import and assembly. Here we show that absence of Mmm2 affects assembly of β-barrel proteins and that lack of any ERMES structural component results in defects in Tom22 assembly. Loss of N. crassa Gem1 has no effect on the assembly of these proteins but does affect mitochondrial morphology.
内质网-线粒体遭遇结构(ERMES)将内质网与线粒体连接起来,包含四个结构成分:Mmm1、Mdm12、Mdm10 和 Mmm2(Mdm34)。Gem1 蛋白可能在调节 ERMES 功能方面发挥作用。缺乏任何 Mmm1、Mdm12 或 Mdm10 的酿酒酵母和粗糙脉孢菌菌株已知表现出多种表型缺陷,包括线粒体形态改变和β-桶蛋白组装到线粒体外膜的缺陷。在这里,我们研究了粗糙脉孢菌中的 ERMES 复合物成分,并表明 Mmm1 是一种内质网膜蛋白,其 N 端附近有一个半胱氨酸残基,在 Sordariomycetes 类中保守。该残基位于蛋白质的内质网腔域中,参与形成二硫键,导致 Mmm1 二聚体的形成。二聚体的形成是 Tom40 有效组装到 TOM 复合物所必需的。然而,在孔蛋白组装或线粒体形态上没有观察到影响。这证明了功能的特异性,并表明 Mmm1 在 Tom40 组装中具有直接作用。Mmm1 胞质域中高度保守区域的突变导致 Tom40 和孔蛋白组装的中度缺陷,以及轻微的形态表型。以前的报告没有检查 Mmm1 对于线粒体蛋白导入和组装的作用。在这里,我们表明 Mmm2 的缺失会影响β-桶蛋白的组装,并且任何 ERMES 结构成分的缺失都会导致 Tom22 组装的缺陷。粗糙脉孢菌 Gem1 的缺失对这些蛋白质的组装没有影响,但会影响线粒体形态。