Medintz I, Jiang H, Michels C A
Biology Department, Queens College and the Graduate School of the City University of New York, Flushing, New York 11367, USA.
J Biol Chem. 1998 Dec 18;273(51):34454-62. doi: 10.1074/jbc.273.51.34454.
In Saccharomyces, the addition of glucose induces a rapid degradation of maltose permease that is dependent on endocytosis and vacuolar proteolysis (Medintz, I., Jiang, H., Han, E. K., Cui, W., and Michels, C. A. (1996) J. Bacteriol. 178, 2245-2254). Here we report on the role of ubiquitin conjugation in this process. Deletion of DOA4, which causes decreased levels of available ubiquitin, severely decreases the rate of glucose-induced proteolysis, and this is suppressed by the overproduction of ubiquitin. Overexpression of ubiquitin in an endocytosis-deficient end3-ts strain results in the glucose-stimulated accumulation of a larger molecular weight species of maltose permease, which we demonstrate is a ubiquitin-modified form of the protein by utilizing two ubiquitin alleles with different molecular weights. The size of this ubiquitinated species of maltose permease is consistent with monoubiquitination. A promoter mutation that reduces expression of RSP5/NPI1, a postulated ubiquitin-protein ligase, dramatically reduces the rate of glucose-induced proteolysis of maltose permease. The role of various ubiquitin-conjugating enzymes was investigated using strains carrying mutant alleles ubc1Delta ubc4Delta, ubc4Delta ubc5Delta, cdc34-ts2/ubc3, and ubc9-ts. Loss of these functions was not shown to effect glucose-induced proteolysis of maltose permease, but loss of Ubc1, -4, and -5 was found to inhibit maltose permease expression at the post-transcriptional level.
在酿酒酵母中,添加葡萄糖会诱导麦芽糖通透酶快速降解,该过程依赖于内吞作用和液泡蛋白水解作用(Medintz, I., Jiang, H., Han, E. K., Cui, W., and Michels, C. A. (1996) J. Bacteriol. 178, 2245 - 2254)。在此我们报道泛素缀合在这一过程中的作用。缺失导致可用泛素水平降低的DOA4,会严重降低葡萄糖诱导的蛋白水解速率,而泛素的过量表达可抑制这种降低。在缺乏内吞作用的end3 - ts菌株中过表达泛素,会导致葡萄糖刺激下出现分子量更大的麦芽糖通透酶物种积累,我们利用两个分子量不同的泛素等位基因证明这是该蛋白的泛素修饰形式。这种泛素化的麦芽糖通透酶物种大小与单泛素化一致。一个降低假定的泛素 - 蛋白连接酶RSP5/NPI1表达的启动子突变,会显著降低葡萄糖诱导的麦芽糖通透酶蛋白水解速率。使用携带突变等位基因ubc1Delta ubc4Delta、ubc4Delta ubc5Delta、cdc34 - ts2/ubc3和ubc9 - ts的菌株研究了各种泛素缀合酶的作用。未发现这些功能的缺失会影响葡萄糖诱导的麦芽糖通透酶蛋白水解,但发现Ubc1、 - 4和 - 5的缺失会在转录后水平抑制麦芽糖通透酶的表达。