Fasken Milo B, Losh Jillian S, Leung Sara W, Brutus Sergine, Avin Brittany, Vaught Jillian C, Potter-Birriel Jennifer, Craig Taylor, Conn Graeme L, Mills-Lujan Katherine, Corbett Anita H, van Hoof Ambro
Department of Biology, Emory University, Atlanta, Georgia 30322.
Department of Microbiology and Molecular Genetics, University of Texas Health Science Center-Houston, Texas 77030.
Genetics. 2017 Jan;205(1):221-237. doi: 10.1534/genetics.116.195917. Epub 2016 Oct 24.
Pontocerebellar hypoplasia type 1b (PCH1b) is an autosomal recessive disorder that causes cerebellar hypoplasia and spinal motor neuron degeneration, leading to mortality in early childhood. PCH1b is caused by mutations in the RNA exosome subunit gene, EXOSC3 The RNA exosome is an evolutionarily conserved complex, consisting of nine different core subunits, and one or two 3'-5' exoribonuclease subunits, that mediates several RNA degradation and processing steps. The goal of this study is to assess the functional consequences of the amino acid substitutions that have been identified in EXOSC3 in PCH1b patients. To analyze these EXOSC3 substitutions, we generated the corresponding amino acid substitutions in the Saccharomyces cerevisiae ortholog of EXOSC3, Rrp40 We find that the rrp40 variants corresponding to EXOSC3-G31A and -D132A do not affect yeast function when expressed as the sole copy of the essential Rrp40 protein. In contrast, the rrp40-W195R variant, corresponding to EXOSC3-W238R in PCH1b patients, impacts cell growth and RNA exosome function when expressed as the sole copy of Rrp40 The rrp40-W195R protein is unstable, and does not associate efficiently with the RNA exosome in cells that also express wild-type Rrp40 Consistent with these findings in yeast, the levels of mouse EXOSC3 variants are reduced compared to wild-type EXOSC3 in a neuronal cell line. These data suggest that cells possess a mechanism for optimal assembly of functional RNA exosome complex that can discriminate between wild-type and variant exosome subunits. Budding yeast can therefore serve as a useful tool to understand the molecular defects in the RNA exosome caused by PCH1b-associated amino acid substitutions in EXOSC3, and potentially extending to disease-associated substitutions in other exosome subunits.
1b型脑桥小脑发育不全(PCH1b)是一种常染色体隐性疾病,可导致小脑发育不全和脊髓运动神经元变性,从而导致幼儿期死亡。PCH1b由RNA外切体亚基基因EXOSC3的突变引起。RNA外切体是一种进化上保守的复合物,由九个不同的核心亚基以及一或两个3'-5'外切核糖核酸酶亚基组成,介导多个RNA降解和加工步骤。本研究的目的是评估在PCH1b患者中EXOSC3已鉴定出的氨基酸替代的功能后果。为了分析这些EXOSC3替代,我们在酿酒酵母EXOSC3的直系同源物Rrp40中产生了相应的氨基酸替代。我们发现,对应于EXOSC3-G31A和-D132A的rrp40变体在作为必需Rrp40蛋白的唯一拷贝表达时不影响酵母功能。相比之下,对应于PCH1b患者中EXOSC3-W238R的rrp40-W195R变体在作为Rrp40的唯一拷贝表达时会影响细胞生长和RNA外切体功能。rrp40-W195R蛋白不稳定,并且在也表达野生型Rrp40的细胞中不能有效地与RNA外切体结合。与酵母中的这些发现一致,在神经元细胞系中,小鼠EXOSC3变体的水平与野生型EXOSC3相比有所降低。这些数据表明,细胞具有一种机制,可实现功能性RNA外切体复合物的最佳组装,该机制可以区分野生型和变体的外切体亚基。因此,出芽酵母可以作为一种有用的工具,来理解由EXOSC3中与PCH1b相关的氨基酸替代引起的RNA外切体中的分子缺陷,并有可能扩展到其他外切体亚基中与疾病相关的替代。