Engelberg D, Simchen G, Levitzki A
Department of Biological Chemistry, Hebrew University of Jerusalem, Israel.
EMBO J. 1990 Mar;9(3):641-51. doi: 10.1002/j.1460-2075.1990.tb08156.x.
The attenuated GTP regulation adenylyl cyclase (CDC35) lysates or membranes prepared from cells of a cdc25ts strain is enhanced 2.5- to 6-fold by mixing these lysates or membranes with lysates or membranes from a cdc35ts strain harboring wild-type CDC25. The kinetics of activation of the Saccharomyces cerevisiae adenylyl cyclase in vitro is first order, as is the activation of mammalian adenylyl cyclase. The rate of enzyme activation in the presence of non-hydrolysable analogs of GTP increases with the number of CDC25 gene copies present in the cell. When GppNHp was used the rate of activation of the cyclase in a strain harboring a multicopy plasmid of CDC25 was 7.0-fold higher than the rate in an isogenic strain with the cdc25-2 mutation. The rate of adenylyl cyclase activation from a strain with a disrupted CDC25 gene is 14.7-fold lower than the rate in an isogenic strain containing the CDC25 gene on a multicopy plasmid. The reconstitution experiments described provide direct biochemical evidence for the role of the CDC25 protein in regulating the RAS dependent adenylyl cyclase in S.cerevisiae. The reconstitution experiments and the kinetic experiments may also provide a biochemical assay for the CDC25 protein and can form the basis for its characterization. In this study we also show that adenylyl cyclase activity in ras1ras2byc1 cells is found in the soluble fraction, whereas in wild-type strain it is found in the membrane fraction. Overexpression of the gene CDC25 in the ras1ras2bcy1 strain relocalizes adenylyl cyclase activity to the membrane fraction. This finding suggests a biochemical link between CDC25 and CDC35 in the absence of RAS, in addition to its role in regulating RAS dependent adenylyl cyclase.
通过将来自携带野生型CDC25的cdc35ts菌株的裂解物或膜与cdc25ts菌株细胞制备的减毒GTP调节腺苷酸环化酶(CDC35)裂解物或膜混合,可使后者增强2.5至6倍。酿酒酵母腺苷酸环化酶在体外的激活动力学是一级的,哺乳动物腺苷酸环化酶的激活也是如此。在存在不可水解的GTP类似物的情况下,酶激活速率随细胞中存在的CDC25基因拷贝数增加而增加。当使用GppNHp时,携带CDC25多拷贝质粒的菌株中环化酶的激活速率比具有cdc25 - 2突变的同基因菌株中的激活速率高7.0倍。来自具有破坏的CDC25基因的菌株的腺苷酸环化酶激活速率比在多拷贝质粒上含有CDC25基因的同基因菌株中的速率低14.7倍。所述的重组实验为CDC25蛋白在调节酿酒酵母中RAS依赖性腺苷酸环化酶中的作用提供了直接的生化证据。重组实验和动力学实验也可为CDC25蛋白提供生化测定,并可为其表征奠定基础。在本研究中,我们还表明,ras1ras2byc1细胞中的腺苷酸环化酶活性存在于可溶性部分,而在野生型菌株中则存在于膜部分。ras1ras2bcy1菌株中CDC25基因的过表达使腺苷酸环化酶活性重新定位于膜部分。这一发现表明,除了其在调节RAS依赖性腺苷酸环化酶中的作用外,在不存在RAS的情况下,CDC25和CDC35之间存在生化联系。