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免疫抑制剂FK-506的抗真菌特性:鉴定一个不同于FKB1的FK-506反应性酵母基因。

Antifungal properties of the immunosuppressant FK-506: identification of an FK-506-responsive yeast gene distinct from FKB1.

作者信息

Brizuela L, Chrebet G, Bostian K A, Parent S A

机构信息

Department of Infectious Disease Research, Merck Sharp and Dohme Research Laboratories, Rahway, New Jersey 07065.

出版信息

Mol Cell Biol. 1991 Sep;11(9):4616-26. doi: 10.1128/mcb.11.9.4616-4626.1991.

Abstract

FK-506 is a novel and potent antagonist of T-cell activation and an inhibitor of fungal growth. Its immunosuppressive activity can be antagonized by the structurally related antibiotic rapamycin, and both compounds interact with cytoplasmic FK-506-binding proteins (FKBPs) in T cells and yeast cells. In this paper, we show that FK-506 and two analogs inhibit vegetative growth of Saccharomyces cerevisiae in a fashion that parallels the immunosuppressive activity of these compounds. Yeast mutants resistant to FK-506 were isolated, and at least three complementation groups (fkr1, fkr2, and fkr3) were defined. These fkr mutants show no alteration in their levels of FK-506-binding activity. Likewise, strains carrying null alleles of FKB1 (the yeast gene coding for the FKBP) remain FK-506 sensitive, indicating that depletion of yeast FKBP is not sufficient to confer an FK-506 resistance phenotype, although fkb1 null mutants are resistant to rapamycin. FKB1 does not map to the three fkr loci defined here. These results suggest that yeast FKBP mediates the inhibitory effect of rapamycin but that at least one other protein is directly involved in mediating the activity of FK-506. Interestingly, the ability of FK-506 to rescue a temperature-sensitive growth defect of the fkr3 mutant suggests that the FKR3 gene may define such a protein.

摘要

FK-506是一种新型强效的T细胞活化拮抗剂及真菌生长抑制剂。其免疫抑制活性可被结构相关的抗生素雷帕霉素拮抗,这两种化合物均可与T细胞和酵母细胞中的细胞质FK-506结合蛋白(FKBP)相互作用。在本文中,我们表明FK-506及其两种类似物以与这些化合物的免疫抑制活性相似的方式抑制酿酒酵母的营养生长。分离出了对FK-506具有抗性的酵母突变体,并定义了至少三个互补群(fkr1、fkr2和fkr3)。这些fkr突变体的FK-506结合活性水平没有改变。同样,携带FKB1(编码酵母FKBP的基因)无效等位基因的菌株对FK-506仍敏感,这表明酵母FKBP的缺失不足以赋予FK-506抗性表型,尽管fkb1无效突变体对雷帕霉素具有抗性。FKB1并不定位于此处定义的三个fkr基因座。这些结果表明,酵母FKBP介导雷帕霉素的抑制作用,但至少还有一种其他蛋白质直接参与介导FK-506的活性。有趣的是,FK-506挽救fkr3突变体温度敏感型生长缺陷的能力表明,FKR3基因可能定义了这样一种蛋白质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3af4/361345/b9130ab91b81/molcellb00033-0346-a.jpg

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