首页> 外文期刊>Applied and Environmental Microbiology >Med15B Regulates Acid Stress Response and Tolerance in Candida glabrata by Altering Membrane Lipid Composition
【24h】

Med15B Regulates Acid Stress Response and Tolerance in Candida glabrata by Altering Membrane Lipid Composition

机译:Med15B 通过改变膜脂质组成来调节光滑念珠菌的酸应激反应和耐受性

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Candida glabrata is a promising producer of organic acids. To elucidate the physiological function of the Mediator tail subunit Med15B in the response to low-pH stress, we constructed a deletion strain, C. glabrata med15B Delta, and an overexpression strain, C. glabrata HTU Delta/CgMED15B. Deletion of MED15B caused biomass production, glucose consumption rate, and cell viability to decrease by 28.3, 31.7, and 26.5, respectively, compared with those of the parent (HTU Delta) strain at pH 2.0. Expression of lipid metabolism-related genes was significantly downregulated in the med15B Delta strain, whereas key genes of ergosterol biosynthesis showed abnormal upregulation. This caused the proportion of C-18:1 fatty acids, the ratio of unsaturated to saturated fatty acids (UFA/SFA), and the total phospholipid content to decrease by 11.6, 27.4, and 37.6, respectively. Cells failed to synthesize fecosterol and ergosterol, leading to the accumulation and a 60.3-fold increase in the concentration of zymosterol. Additionally, cells showed reductions of 69.2, 11.6, and 21.8 in membrane integrity, fluidity, and H+-ATPase activity, respectively. In contrast, overexpression of Med15B increased the C18: 1 levels, total phospholipids, ergosterol content, and UFA/ SFA by 18.6, 143.5, 94.5, and 18.7, respectively. Membrane integrity, fluidity, and H+-ATPase activity also increased by 30.2, 6.9, and 51.8, respectively. Furthermore, in the absence of pH buffering, dry weight of cells and pyruvate concentrations were 29.3 and 61.2 higher, respectively, than those of the parent strain. These results indicated that in C. glabrata, Med15B regulates tolerance toward low pH via transcriptional regulation of acid stress response genes and alteration in lipid composition.
机译:光滑念珠菌是一种很有前途的有机酸生产者。为了阐明介导尾部亚基Med15B在低pH胁迫下的生理功能,我们构建了一个缺失菌株,即光滑衣人med15B Delta,以及一个过表达菌株,即光滑衣人HTU Delta/CgMED15B。在pH 2.0下,MED15B的缺失导致生物量产生、葡萄糖消耗率和细胞活力分别比亲本(HTU Delta)下降28.3%、31.7%和26.5%。med15B Delta菌株脂质代谢相关基因表达显著下调,麦角甾醇生物合成关键基因上调异常。这导致C-18:1脂肪酸比例、不饱和脂肪酸比值(UFA/SFA)和总磷脂含量分别下降了11.6%、27.4%和37.6%。细胞未能合成非甾醇和麦角甾醇,导致酶甾醇的积累和浓度增加 60.3 倍。此外,细胞的膜完整性、流动性和 H+-ATP 酶活性分别降低了 69.2%、11.6% 和 21.8%。相反,Med15B的过表达使C18:1水平、总磷脂、麦角甾醇含量和UFA/SFA分别提高了18.6%、143.5%、94.5%和18.7%。膜完整性、流动性和H+-ATP酶活性也分别提高了30.2%、6.9%和51.8%。此外,在没有pH缓冲的情况下,细胞的干重和丙酮酸浓度分别比亲本菌株高29.3%和61.2%。这些结果表明,在光滑念珠菌中,Med15B通过酸应激反应基因的转录调节和脂质组成的改变来调节对低pH值的耐受性。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号