Woloszczuk W, Sprinson D B, Ruis H
J Biol Chem. 1980 Mar 25;255(6):2624-7.
The synthesis of two hemoproteins, catalase A and catalase T, was studied in mutants of Saccharomyces cerevisiae deficient in heme formation. These mutants can be grown on the end-product heme or on a heme precursor, or on ergosterol and Tween 80 (a source of oleic acid). It was found by immunoprecipitation that, in the presence of heme, catalases A and T were present in the mutants, but that in its absence (growth on ergosterol and Tween 80) the apoproteins of these enzymes were not detectable. In contrast, cytochrome c peroxidase, and some of the subunits of cytochrome c oxidase are present in cells grown without heme (Saltzgaber-Müller, J., and Schatz, G. (1978) J. Biol. Chem. 253, 305-310). Other evidence suggests that absence of catalase T apoprotein under heme-less conditions may be due to control by heme of apoprotein synthesis (G. Ammerer and H. Ruis, unpublished results), rather than increased proteolytic degradation.
在血红素合成缺陷的酿酒酵母突变体中,对两种血红素蛋白——过氧化氢酶A和过氧化氢酶T的合成进行了研究。这些突变体可以在终产物血红素、血红素前体、麦角固醇和吐温80(油酸来源)上生长。通过免疫沉淀发现,在有血红素存在时,突变体中存在过氧化氢酶A和T,但在没有血红素时(在麦角固醇和吐温80上生长),这些酶的脱辅基蛋白无法检测到。相比之下,细胞色素c过氧化物酶以及细胞色素c氧化酶的一些亚基存在于无血红素条件下生长的细胞中(萨尔茨加伯-米勒,J.,和沙茨,G.(1978年)《生物化学杂志》253,305 - 310)。其他证据表明,在无血红素条件下过氧化氢酶T脱辅基蛋白的缺失可能是由于脱辅基蛋白合成受血红素控制(G. 阿默勒和H. 鲁伊斯,未发表结果),而非蛋白水解降解增加。