Grandori R, Popolo L, Vai M, Alberghina L
Sezione di Biochimica Comparata, Dipartimento di Fisiologia e Biochimica Generali, Milano, Italy.
J Biol Chem. 1990 Aug 25;265(24):14315-20.
The glycoprotein gp115 (Mr = 115,000, pI 4.8-5) is localized in the plasma membrane of Saccharomyces cerevisiae cells and maximally expressed during G1 phase. To gain insight on the mechanism regulating its synthesis, we have examined various conditions of cell proliferation arrest. We used pulse-labeling experiments with [35S]methionine and two-dimensional gel electrophoresis analysis, which allow the detection of the well characterized 100-kDa precursor of gp115 (p100). In the cAMP-requiring mutant cyr1, p100 synthesis is active during exponential growth, shut off by cAMP removal, and induced when growth is restored by cAMP readdition. The inhibition of p100 synthesis also occurs in TS1 mutant cells (ras1ras2-ts1) shifted from 24 to 37 degrees C. During nitrogen starvation of rca1 cells, a mutant permeable to cAMP, p100 synthesis is also inhibited. cAMP complements the effect of ammonium deprivation, promoting p100 synthesis, even when added to cells which have already entered G0. Experiments with the bcy1 and cyr1bcy1 mutants have indicated the involvement of the cAMP-dependent protein kinases in the control of p100 synthesis. Moreover, the synthesis of p100 was unaffected in A364A cells, terminally arrested at START B by alpha-factor. These results indicate that the switch operating on p100 synthesis is localized in early G1 (START A) and is one of the multiple events controlled by the cAMP pathway.
糖蛋白gp115(分子量=115,000,等电点4.8 - 5)定位于酿酒酵母细胞的质膜中,在G1期表达量最高。为深入了解调节其合成的机制,我们研究了细胞增殖停滞的各种条件。我们使用[35S]甲硫氨酸进行脉冲标记实验和二维凝胶电泳分析,这使得能够检测到特征明确的gp115的100-kDa前体(p100)。在需要cAMP的突变体cyr1中,p100合成在指数生长期活跃,通过去除cAMP而关闭,并在重新添加cAMP恢复生长时诱导。在从24℃转移到37℃的TS1突变细胞(ras1ras2-ts1)中,p100合成也受到抑制。在rca1细胞(一种对cAMP通透的突变体)的氮饥饿期间,p100合成也受到抑制。cAMP补充了铵剥夺的作用,促进p100合成,即使添加到已经进入G0期的细胞中也是如此。用bcy1和cyr1bcy1突变体进行的实验表明,cAMP依赖性蛋白激酶参与了p100合成的控制。此外,在被α因子终末阻滞在START B的A364A细胞中,p100的合成未受影响。这些结果表明,作用于p100合成的开关定位于G1早期(START A),并且是由cAMP途径控制的多个事件之一。