Cellular and Molecular Physiology Department, Yale School of Medicine, New Haven, CT, USA.
Systems Biology Institute, Yale West Campus, West Haven, CT, USA.
Nat Commun. 2022 May 5;13(1):2483. doi: 10.1038/s41467-022-30126-9.
The SLC25 carrier family consists of 53 transporters that shuttle nutrients and co-factors across mitochondrial membranes. The family is highly redundant and their transport activities coupled to metabolic state. Here, we use a pooled, dual CRISPR screening strategy that knocks out pairs of transporters in four metabolic states - glucose, galactose, OXPHOS inhibition, and absence of pyruvate - designed to unmask the inter-dependence of these genes. In total, we screen 63 genes in four metabolic states, corresponding to 2016 single and pair-wise genetic perturbations. We recover 19 gene-by-environment (GxE) interactions and 9 gene-by-gene (GxG) interactions. One GxE interaction hit illustrates that the fitness defect in the mitochondrial folate carrier (SLC25A32) KO cells is genetically buffered in galactose due to a lack of substrate in de novo purine biosynthesis. GxG analysis highlights a buffering interaction between the iron transporter SLC25A37 (A37) and the poorly characterized SLC25A39 (A39). Mitochondrial metabolite profiling, organelle transport assays, and structure-guided mutagenesis identify A39 as critical for mitochondrial glutathione (GSH) import. Functional studies reveal that A39-mediated glutathione homeostasis and A37-mediated mitochondrial iron uptake operate jointly to support mitochondrial OXPHOS. Our work underscores the value of studying family-wide genetic interactions across different metabolic environments.
SLC25 载体家族由 53 种转运蛋白组成,它们在线粒体膜之间穿梭运输营养物质和辅助因子。该家族具有高度冗余性,其转运活性与代谢状态相关。在这里,我们使用一种汇集的、双重 CRISPR 筛选策略,在葡萄糖、半乳糖、OXPHOS 抑制和缺乏丙酮酸四种代谢状态下敲除两对转运蛋白,旨在揭示这些基因之间的相互依赖关系。总共,我们在四种代谢状态下筛选了 63 个基因,对应于 2016 个单基因和双基因敲除。我们恢复了 19 个基因-环境(GxE)相互作用和 9 个基因-基因(GxG)相互作用。一个 GxE 相互作用的例子表明,由于从头嘌呤生物合成中缺乏底物,线粒体叶酸载体(SLC25A32)KO 细胞中的适应不良缺陷在半乳糖中受到遗传缓冲。GxG 分析突出了铁转运蛋白 SLC25A37(A37)和 poorly characterized SLC25A39(A39)之间的缓冲相互作用。线粒体代谢产物分析、细胞器转运测定和结构导向的突变分析确定 A39 是线粒体谷胱甘肽(GSH)摄取的关键。功能研究表明,A39 介导的谷胱甘肽稳态和 A37 介导的线粒体铁摄取共同作用,以支持线粒体 OXPHOS。我们的工作强调了在不同代谢环境中研究全家族遗传相互作用的价值。