Department of Genetics, Hadassah Medical Center, Jerusalem 9112001, Israel.
Info-CORE, I-CORE Bioinformatics Unit of the Hebrew, University of Jerusalem and Hadassah Medical Center, Jerusalem 91120011, Israel.
Cells. 2021 Feb 20;10(2):452. doi: 10.3390/cells10020452.
Cytochrome--oxidase (COX) subunit 4 (COX4) plays important roles in the function, assembly and regulation of COX (mitochondrial respiratory complex 4), the terminal electron acceptor of the oxidative phosphorylation (OXPHOS) system. The principal COX4 isoform, COX4-1, is expressed in all tissues, whereas COX4-2 is mainly expressed in the lungs, or under hypoxia and other stress conditions. We have previously described a patient with a COX4-1 defect with a relatively mild presentation compared to other primary COX deficiencies, and hypothesized that this could be the result of a compensatory upregulation of COX4-2. To this end, COX4-1 was downregulated by shRNAs in human foreskin fibroblasts (HFF) and compared to the patient's cells. COX4-1, COX4-2 and HIF-1α were detected by immunocytochemistry. The mRNA transcripts of both COX4 isoforms and HIF-1 target genes were quantified by RT-qPCR. COX activity and OXPHOS function were measured by enzymatic and oxygen consumption assays, respectively. Pathways were analyzed by CEL-Seq2 and by RT-qPCR. We demonstrated elevated COX4-2 levels in the COX4-1-deficient cells, with a concomitant HIF-1α stabilization, nuclear localization and upregulation of the hypoxia and glycolysis pathways. We suggest that COX4-2 and HIF-1α are upregulated also in normoxia as a compensatory mechanism in COX4-1 deficiency.
细胞色素 c 氧化酶(COX)亚基 4(COX4)在 COX(线粒体呼吸复合物 4)的功能、组装和调节中发挥重要作用,COX 是氧化磷酸化(OXPHOS)系统的末端电子受体。主要的 COX4 同工型 COX4-1 在所有组织中表达,而 COX4-2 主要在肺部表达,或在缺氧和其他应激条件下表达。我们之前描述了一名 COX4-1 缺陷患者,与其他原发性 COX 缺乏症相比,其临床表现相对较轻,我们假设这可能是 COX4-2 代偿性上调的结果。为此,我们通过 shRNAs 下调了人包皮成纤维细胞(HFF)中的 COX4-1,并与患者的细胞进行比较。通过免疫细胞化学检测 COX4-1、COX4-2 和 HIF-1α。通过 RT-qPCR 定量两种 COX 同工型和 HIF-1 靶基因的 mRNA 转录本。通过酶促和耗氧测定分别测量 COX 活性和 OXPHOS 功能。通过 CEL-Seq2 和 RT-qPCR 分析途径。我们证明 COX4-1 缺陷细胞中 COX4-2 水平升高,同时 HIF-1α 稳定、核定位和缺氧及糖酵解途径上调。我们认为,COX4-2 和 HIF-1α 也在常氧条件下上调,作为 COX4-1 缺乏的代偿机制。