Centro de Ciências da Saúde, Instituto de Bioquímica Médica, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
FEMS Yeast Res. 2010 Sep;10(6):674-86. doi: 10.1111/j.1567-1364.2010.00656.x. Epub 2010 Jun 7.
Multidrug resistance in Saccharomyces cerevisiae is frequently associated with gain-of-function mutations in zinc finger-containing transcription factors Pdr1p and Pdr3p. These regulatory proteins activate the expression of several ATP-binding cassette transporter genes, leading to elevated drug resistance. Here, we report that loss of the type 2A-related serine/threonine protein phosphatase Sit4p renders yeast cells sensitive to cycloheximide, azoles, daunorubicin and rhodamine 6G. This effect is a consequence of the decreased transcriptional levels of mainly PDR3 and its target genes, PDR5, SNQ2 and YOR1, which encode multidrug efflux pumps. The multidrug sensitivity of sit4 mutant cells is suppressed by the PDR1-3 mutant allele, which encodes a hyperactive form of Pdr1p. Sit4p is known to associate with regulatory proteins Sap155p, Sap4p, Sap185p and Sap190p. We found that the sap155 mutant strain is sensitive to azoles, but not to cycloheximide, while the sap155sap4 and sap185sap190 mutant strains are sensitive to both drugs. This finding indicates that the Sit4p-Sap protein complex subtly modulates the expression of drug efflux pumps. Drug resistance conferred by the expression of the Candida albicans CDR1 gene, an ortholog of PDR5 in S. cerevisiae, is also positively modulated by Sit4p. These data uncover a new regulatory pathway that connects multidrug resistance to Sit4p function.
酿酒酵母中的多药耐药性通常与含锌指转录因子 Pdr1p 和 Pdr3p 的功能获得性突变有关。这些调节蛋白激活了几种 ATP 结合盒转运体基因的表达,导致药物耐药性升高。在这里,我们报告说,2A 型相关丝氨酸/苏氨酸蛋白磷酸酶 Sit4p 的缺失使酵母细胞对环丙沙星、唑类药物、柔红霉素和罗丹明 6G 敏感。这种效应是 PDR3 及其靶基因 PDR5、SNQ2 和 YOR1 的转录水平降低的结果,这些基因编码多药外排泵。Sit4 突变细胞的多药敏感性被 PDR1-3 突变等位基因抑制,该等位基因编码 Pdr1p 的超活性形式。Sit4p 已知与调节蛋白 Sap155p、Sap4p、Sap185p 和 Sap190p 相关。我们发现 sap155 突变株对唑类药物敏感,但对环丙沙星不敏感,而 sap155sap4 和 sap185sap190 突变株对这两种药物都敏感。这一发现表明,Sit4p-Sap 蛋白复合物微妙地调节了药物外排泵的表达。通过表达 Candida albicans CDR1 基因(酿酒酵母中 PDR5 的同源物)赋予的耐药性也被 Sit4p 正向调节。这些数据揭示了一个新的调节途径,将多药耐药性与 Sit4p 功能联系起来。