Wieland J, Nitsche A M, Strayle J, Steiner H, Rudolph H K
Institut für Biochemie der Universität Stuttgart, Germany.
EMBO J. 1995 Aug 15;14(16):3870-82. doi: 10.1002/j.1460-2075.1995.tb00059.x.
We report a structural and functional analysis of the PMR2 gene cluster in yeast. We found that several strains of Saccharomyces cerevisiae contain multiple PMR2 genes repeated in tandem, whereas most phylogenetically related yeasts appear to possess only a single PMR2 gene. This unusual tandem array of nearly identical genes encodes putative ion pumps involved in Na+ tolerance. Pmr2a and Pmr2b, the proteins encoded by the first two repeats, differ by only 13 amino acid exchanges. Both proteins share localization to the plasma membrane, but represent distinct isoforms of a putative Na+ pump. When expressed under identical conditions in vivo, Pmr2a and Pmr2b cause different tolerances to Na+ and Li+. Finally, we show that the Na+ tolerance mediated through these pumps is regulated by calmodulin via a calcineurin-independent mechanism which activates the Pmr2 ion pumps post-transcriptionally.
我们报道了酵母中PMR2基因簇的结构和功能分析。我们发现,几株酿酒酵母含有多个串联重复的PMR2基因,而大多数系统发育相关的酵母似乎只拥有一个PMR2基因。这种近乎相同基因的不寻常串联阵列编码了参与耐Na+的推定离子泵。前两个重复序列编码的蛋白质Pmr2a和Pmr2b仅相差13个氨基酸交换。两种蛋白质都定位于质膜,但代表推定Na+泵的不同异构体。当在体内相同条件下表达时,Pmr2a和Pmr2b对Na+和Li+具有不同的耐受性。最后,我们表明,通过这些泵介导的耐Na+由钙调蛋白通过一种不依赖钙调磷酸酶的机制调节,该机制在转录后激活Pmr2离子泵。