...
首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Mitochondrial NAD dependent aldehyde dehydrogenase either from yeast or human replaces yeast cytoplasmic NADP dependent aldehyde dehydrogenase for the aerobic growth of yeast on ethanol
【24h】

Mitochondrial NAD dependent aldehyde dehydrogenase either from yeast or human replaces yeast cytoplasmic NADP dependent aldehyde dehydrogenase for the aerobic growth of yeast on ethanol

机译:来自酵母或人的线粒体NAD依赖性醛脱氢酶替代酵母细胞质NADP依赖性醛脱氢酶使酵母在乙醇上有氧生长

获取原文
获取原文并翻译 | 示例
           

摘要

Background In a previous study, we deleted three aldehyde dehydrogenase (ALDH) genes, involved in ethanol metabolism, from yeast Saccharomyces cerevisiae and found that the triple deleted yeast strain did not grow on ethanol as sole carbon source. The ALDHs were NADP dependent cytosolic ALDH1, NAD dependent mitochondrial ALDH2 and NAD/NADP dependent mitochondrial ALDH5. Double deleted strain ΔALDH2+ΔALDH5 or ΔALDH1+ΔALDH5 could grow on ethanol. However, the double deleted strain ΔALDH1+Δ ALDH2 did not grow in ethanol. Methods Triple deleted yeast strain was used. Mitochondrial NAD dependent ALDH from yeast or human was placed in yeast cytosol. Results In the present study we found that a mutant form of cytoplasmic ALDH1 with very low activity barely supported the growth of the triple deleted strain (ΔALDH1+ΔALDH2+ΔALDH5) on ethanol. Finding the importance of NADP dependent ALDH1 on the growth of the strain on ethanol we examined if NAD dependent mitochondrial ALDH2 either from yeast or human would be able to support the growth of the triple deleted strain on ethanol if the mitochondrial form was placed in cytosol. We found that the NAD dependent mitochondrial ALDH2 from yeast or human was active in cytosol and supported the growth of the triple deleted strain on ethanol. Conclusion This study showed that coenzyme preference of ALDH is not critical in cytosol of yeast for the growth on ethanol. General significance The present study provides a basis to understand the coenzyme preference of ALDH in ethanol metabolism in yeast.
机译:背景技术在先前的研究中,我们从酿酒酵母中删除了三个参与乙醇代谢的醛脱氢酶(ALDH)基因,并发现三重删除的酵母菌株不能在乙醇作为唯一碳源的情况下生长。 ALDHs是NADP依赖性的胞质ALDH1,NAD依赖性的线粒体ALDH2和NAD / NADP依赖性的线粒体ALDH5。双缺失菌株ΔALDH2+ΔALDH5或ΔALDH1+ΔALDH5可以在乙醇上生长。然而,双缺失菌株ΔALDH1+ΔALDH2在乙醇中不生长。方法使用三重缺失酵母菌株。将来自酵母或人的线粒体NAD依赖性ALDH置于酵母细胞质中。结果在本研究中,我们发现具有非常低活性的细胞质ALDH1突变体形式几乎不支持三重缺失菌株(ΔALDH1+ΔALDH2+ΔALDH5)在乙醇上的生长。为了发现NADP依赖性ALDH1对菌株在乙醇上的生长的重要性,我们检查了如果将线粒体形式的线粒体形式的ALDH2置于酵母菌液中,那么来自酵母或人的NAD依赖性线粒体ALDH2是否能够支持乙醇中三重缺失菌株的生长。我们发现来自酵母或人的NAD依赖线粒体ALDH2在细胞质中具有活性,并支持三重缺失菌株在乙醇上的生长。结论这项研究表明,ALDH的辅酶偏好对于酵母在乙醇中的细胞质生长并不重要。一般意义本研究为了解ALDH在酵母乙醇代谢中的辅酶偏好提供了基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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