Parent S A, Nielsen J B, Morin N, Chrebet G, Ramadan N, Dahl A M, Hsu M J, Bostian K A, Foor F
Merck Research Laboratories, Rahway, NJ 07065.
J Gen Microbiol. 1993 Dec;139(12):2973-84. doi: 10.1099/00221287-139-12-2973.
The immunosuppressants FK506 and cyclosporin A (CsA) bound to their receptors, FKBP12 or cyclophilin, inhibit the Ca2+/calmodulin-dependent protein phosphatase, calcineurin, preventing T cell activation or, in yeast, recovery from alpha-mating factor arrest. Vegetative growth of yeast does not require calcineurin, and in strains sensitive to FK506 or CsA, growth is inhibited by concentrations of drug much higher than those required to inhibit T cell activation or recovery from mating factor arrest. We now describe the isolation of a mutant of Saccharomyces cerevisiae which is 100-1000-fold more sensitive to the growth inhibitory properties of these drugs. The mutation (fks1) also confers a slow growth phenotype which is partially suppressed by exogenously added Ca2+ and exacerbated by EGTA. Simultaneous disruption of the two genes (CNA1 and CNA2) encoding the alternative forms of the catalytic A subunit of calcineurin, or of the gene (CNB1) encoding the regulatory B subunit, is lethal in an fks1 mutant. Disruption of the gene encoding FKBP12 (FKB1) or the major, cytosolic cyclophilin (CPH1) in fks1 cells results in the loss of hypersensitivity to the relevant drug. Overexpression of CNA1 or CNA2, in conjunction with CNB1, results in a significant decrease in hypersensitivity to FK506 and CsA. The results show that the hypersensitivity of the fks1 mutant is due to the inhibition of calcineurin phosphatase activity by the receptor-drug complexes. The growth dependence of the mutant on the Ca2+/calcineurin signal pathway provides an important tool for studying in yeast certain aspects of immune suppression by these drugs.
免疫抑制剂FK506和环孢菌素A(CsA)与其受体FKBP12或亲环蛋白结合后,会抑制Ca2+/钙调蛋白依赖性蛋白磷酸酶钙调神经磷酸酶,从而阻止T细胞活化,或者在酵母中阻止其从α-交配因子阻滞中恢复。酵母的营养生长不需要钙调神经磷酸酶,在对FK506或CsA敏感的菌株中,抑制生长所需的药物浓度远高于抑制T细胞活化或从交配因子阻滞中恢复所需的浓度。我们现在描述了酿酒酵母一个突变体的分离,该突变体对这些药物的生长抑制特性的敏感性高100 - 1000倍。该突变(fks1)还赋予了缓慢生长的表型,外源添加Ca2+可部分抑制该表型,而EGTA会使其加剧。同时破坏编码钙调神经磷酸酶催化A亚基替代形式的两个基因(CNA1和CNA2),或破坏编码调节性B亚基的基因(CNB1),对fks1突变体是致死的。在fks1细胞中破坏编码FKBP12的基因(FKB1)或主要的胞质亲环蛋白(CPH1)会导致对相关药物的超敏性丧失。CNA1或CNA2与CNB1一起过表达会导致对FK506和CsA的超敏性显著降低。结果表明,fks1突变体的超敏性是由于受体 - 药物复合物对钙调神经磷酸酶磷酸酶活性的抑制。该突变体对Ca2+/钙调神经磷酸酶信号通路的生长依赖性为在酵母中研究这些药物免疫抑制的某些方面提供了一个重要工具。