Trueblood C E, Poyton R O
Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder 80309.
Genetics. 1988 Nov;120(3):671-80. doi: 10.1093/genetics/120.3.671.
In Saccharomyces cerevisiae, the COX5a and COX5b genes constitute a small gene family that encodes two forms of cytochrome c oxidase subunit V, Va and Vb, either of which can provide a function essential for cytochrome c oxidase activity and respiration. In aerobically grown wild-type yeast cells, Va is the predominant form of subunit V. The COX5b gene alone does not produce enough Vb to support a respiration rate sufficient to allow growth on nonfermentable carbon sources. By selecting for mutations that increase the respiratory capacity of a strain deleted for COX5a, we have identified a gene that is involved in negative regulation of COX5b expression under aerobic growth conditions. Each of four independently isolated reo1 mutations are shown to be recessive, unlinked to COX5b, but dependent on COX5b for phenotypic expression. The mutations define a single complementation and linkage group: designated as REO1 for regulator of expression of oxidase. reo1 mutations increase expression of COX5b in aerobically grown cells, but not in anaerobically grown cells, where expression is already elevated. These mutations have no effect on COX5a, the other member of this small gene family which is positively regulated by heme and oxygen. The REO1 gene does play a role in repression of ANB1, a gene that is normally repressed under aerobic but not anaerobic conditions. Neither rox1 or rox3 mutations, which have previously been shown to increase ANB1 expression, are in the same complementation group as reo1 mutations.
在酿酒酵母中,COX5a和COX5b基因构成一个小基因家族,该家族编码细胞色素c氧化酶亚基V的两种形式,即Va和Vb,其中任何一种都可为细胞色素c氧化酶活性和呼吸作用提供必需的功能。在需氧生长的野生型酵母细胞中,Va是亚基V的主要形式。单独的COX5b基因产生的Vb不足以支持使细胞在非发酵碳源上生长的呼吸速率。通过筛选可增加缺失COX5a的菌株呼吸能力的突变,我们鉴定出一个在需氧生长条件下参与COX5b表达负调控的基因。四个独立分离的reo1突变中的每一个都显示为隐性,与COX5b不连锁,但表型表达依赖于COX5b。这些突变定义了一个单一的互补和连锁群:命名为REO1,即氧化酶表达调节因子。reo1突变增加了需氧生长细胞中COX5b的表达,但在厌氧生长细胞中没有增加,因为厌氧生长细胞中的表达已经升高。这些突变对COX5a没有影响,COX5a是这个小基因家族的另一个成员,受血红素和氧气的正调控。REO1基因确实在ANB1的抑制中起作用,ANB1是一个通常在需氧条件下而非厌氧条件下被抑制的基因。先前已显示可增加ANB1表达的rox1或rox3突变,都不在与reo1突变相同的互补群中。