Nakamura T, Liu Y, Hirata D, Namba H, Harada S, Hirokawa T, Miyakawa T
Department of Fermentation Technology, Faculty of Engineering, Hiroshima University, Japan.
EMBO J. 1993 Nov;12(11):4063-71. doi: 10.1002/j.1460-2075.1993.tb06090.x.
To assess the physiological function of Ca(2+)-dependent protein phosphatase (PP2B) in the yeast Saccharomyces cerevisiae, the phenotypes of PP2B-deficient mutants were investigated. Although PP2B was dispensable for growth under normal conditions, the mutations did, however, cause growth inhibition under certain stress circumstances. The growth of the mutants was inhibited by NaCl and LiCl, but not by KCl, CaCl2, MgCl2 or nonspecific osmotic stresses. Upon shift to high NaCl medium, intracellular Na+ levels of both wild type yeast and the mutants initially increased at a comparable rate. However, internal Na+ in wild type cells started to decline more rapidly than the mutant cells during cultivation in high NaCl medium, indicating that PP2B is important in maintaining a gradient across the membrane. The protection against salt stress was achieved, at least in part, by the stimulation of Na+ export. The maintenance of a high level of internal K+ in high NaCl medium was also PP2B-dependent. In the presence of the immunosuppressant FK506, the growth behaviour and intracellular Na+ and K+ of wild type cells in high NaCl medium became very similar to those of the PP2B-deficient mutant in a manner dependent on the presence of the FK506 binding protein.
为了评估酿酒酵母中钙依赖性蛋白磷酸酶(PP2B)的生理功能,研究了PP2B缺陷型突变体的表型。虽然在正常条件下PP2B对生长并非必需,但这些突变在某些应激情况下确实会导致生长抑制。突变体的生长受到NaCl和LiCl的抑制,但不受KCl、CaCl2、MgCl2或非特异性渗透胁迫的抑制。转移至高NaCl培养基后,野生型酵母和突变体的细胞内Na+水平最初以相当的速率增加。然而,在高NaCl培养基中培养期间,野生型细胞内的Na+开始比突变体细胞更快地下降,这表明PP2B在维持跨膜梯度方面很重要。对盐胁迫的保护至少部分是通过刺激Na+输出实现的。在高NaCl培养基中维持高水平的细胞内K+也依赖于PP2B。在免疫抑制剂FK506存在的情况下,高NaCl培养基中野生型细胞的生长行为以及细胞内Na+和K+与PP2B缺陷型突变体的非常相似,且这种相似性取决于FK506结合蛋白的存在。