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首页> 外文期刊>The Journal of Experimental Biology >Coordination of cytochrome c oxidase gene expression in the remodelling of skeletal muscle
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Coordination of cytochrome c oxidase gene expression in the remodelling of skeletal muscle

机译:细胞色素c氧化酶基因表达在骨骼肌重塑中的协调作用

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摘要

Many fish species respond to low temperature by inducing mitochondrial biogenesis, reflected in an increase in activity of the mitochondrial enzyme cytochrome c oxidase (COX). COX is composed of 13 subunits, three encoded by mitochondrial (mt) DNA and 10 encoded by nuclear genes. We used real-time PCR to measure mRNA levels for the 10 nuclear-encoded genes that are highly expressed in muscle. We measured mRNA levels in white muscle of three minnow species, each at two temperatures: zebrafish (Danio rerio) acclimated to 11 and 30 C, goldfish (Carassius auratus) acclimated to 4 and 35 C, and northern redbelly dace (Chrosomus eos) collected in winter and summer. We hypothesized that temperature-induced changes in COX activity would be paralleled by COX nuclear-encoded subunit transcript abundance. However, we found mRNA for COX subunits showed pronounced differences in thermal responses. Though zebrafish COX activity did not change in the cold, the transcript levels of four subunits decreased significantly (COX5A1, 60% decrease; COX6A2, 70% decrease; COX6C, 50% decrease; COX7B, 55% decrease). Treatments induced changes in COX activity in both dace (2.9 times in winter fish) and goldfish (2.5 times in cold fish), but the response in transcript levels was highly variable. Some subunits failed to increase in one (goldfish COX7A2, dace COX6A2) or both (COX7B, COX6B2) species. Other transcripts increased 1.7-100 times. The most cold-responsive subunits were COX4-1 (7 and 21.3 times higher in dace and goldfish, respectively), COX5A1 (13.9 and 5 times higher), COX6B1 (6 and 10 times higher), COX6C (11 and 4 times higher) and COX7C (13.3 and 100 times higher). The subunits that most closely paralleled COX increases in the cold were COX5B2 (dace 2.5 times, goldfish 1.7 times) and COX6A2 (dace 4.1 times, goldfish 1.7 times). Collectively, these studies suggest that COX gene expression is not tightly coordinated during cold-induced mitochondrial remodelling in fish muscle. Further, they caution against arguments about the importance of transcriptional regulation based on measurement of mRNA levels of select subunits of multimeric proteins.
机译:许多鱼类通过诱导线粒体生物发生来响应低温,这反映在线粒体酶细胞色素C氧化酶(COX)活性的增加上。 COX由13个亚基组成,其中3个由线粒体(mt)DNA编码,而10个由核基因编码。我们使用实时PCR来测量在肌肉中高表达的10个核编码基因的mRNA水平。我们测量了三种min鱼物种白色肌肉的mRNA水平,每种温度都在两个温度下:斑马鱼(Danio rerio)适应了11和30 C,金鱼(Car鱼)适应了4和35 C,并且收集了北红腹da(Chrosomus eos)在冬季和夏季。我们假设温度诱导的COX活性变化将与COX核编码的亚基转录本丰度平行。但是,我们发现COX亚基的mRNA在热反应中显示出明显的差异。尽管斑马鱼的COX活性在寒冷时没有变化,但四个亚基的转录水平却显着下降(COX5A1下降60%; COX6A2下降70%; COX6C下降50%; COX7B下降55%)。处理引起da鱼(冬季鱼的2.9倍)和金鱼(冷鱼的2.5倍)的COX活性变化,但转录本水平的响应变化很大。一些亚基未能增加一种(金鱼COX7A2 、,鱼COX6A2)或两种(COX7B,COX6B2)物种的数量。其他成绩单增加了1.7-100倍。对寒冷反应最强的亚基是COX4-1(分别是ce鱼和金鱼的7倍和21.3倍),COX5A1(高13.9和5倍),COX6B1(高6和10倍),COX6C(高11和4倍)和COX7C(分别为13.3和100倍)。在寒冷中,与COX最接近平行的亚基是COX5B2(面对2.5倍,金鱼1.7倍)和COX6A2(面对4.1倍,金鱼1.7倍)。总体而言,这些研究表明,在鱼类肌肉中冷诱导的线粒体重塑过程中,COX基因的表达并不紧密协调。此外,他们警惕基于多聚体蛋白质选择亚基的mRNA水平的测量而对转录调控的重要性的争论。

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