首页> 外文期刊>The Biochemical Journal >A paralogue of the phosphomutase-like gene family in Candida glabrata, CgPmu2, gained broad-range phosphatase activity due to a small number of clustered substitutions
【24h】

A paralogue of the phosphomutase-like gene family in Candida glabrata, CgPmu2, gained broad-range phosphatase activity due to a small number of clustered substitutions

机译:Candida Glabrata,CGPMU2,CGPMU2的副磷酸酶样基因家族,由于少量的聚类取代而获得了广泛的磷酸酶活性

获取原文
获取原文并翻译 | 示例
           

摘要

Inorganic phosphate is required for a range of cellular processes, such as DNA/RNA synthesis and intracellular signalling. The phosphate starvation-inducible phosphatase activity of Candida glabrata is encoded by the gene CgPMU2 (C. glabrata phosphomutase-like protein). CgPMU2 is part of a three-gene family (similar to 75% identical) created through gene duplication in the C. glabrata clade; only CgPmu2 is a PHO-regulated broad range acid phosphatase. We identified amino acids that confer broad range phosphatase activity on CgPmu2 by creating fusions of sections of CgPMU2 with CgPMU1, a paralogue with little broad range phosphatase activity. We used site-directed mutagenesis on various fusions to sequentially convert CgPmu1 to CgPmu2. Based on molecular modelling of the Pmu proteins on to a histidine phosphatase crystal structure, clusters of amino acids were found in two distinct regions that were able to confer phosphatase activity. Substitutions in these two regions together conferred broad phosphatase activity on CgPmu1. Interestingly, one change is a histidine adjacent to the active site histidine of CgPmu2 and it exhibits a novel ability to partially replace the conserved active site histidine in CgPmu2. Additionally, a second amino acid change was able to confer nt phosphatase activity to CgPmu1, suggesting single amino acid changes neofunctionalize CgPmu2.
机译:一系列细胞过程需要无机磷酸盐,例如DNA / RNA合成和细胞内信号传导。 Candida glabrata的磷酸盐饥饿诱导型磷酸酶活性由基因CGPMU2(C.Glabrata磷酸酯酶样蛋白)编码。 CGPMU2是通过C.Glabrata Clade中的基因重复而产生的三基因家族(类似于75%相同)的一部分;只有CGPMU2是一种Pho调节的宽范围酸性磷酸酶。我们通过产生CGPMU2的CGPMU1的偏差,鉴定赋予CGPMU2的氨基酸赋予CGPMU2的宽范围磷酸酶活性,具有较小的磷酸酶活性小的寄生虫。我们在各种融合中使用了站点诱变,以顺序将CGPMU1转换为CGPMU2。基于PMU蛋白对组氨酸磷酸酶晶体结构的分子建模,在两个能够赋予磷酸酶活性的两个不同区域中发现氨基酸簇。这两个区域中的取代在一起赋予CGPMU1的宽磷酸酶活性。有趣的是,一种变化是与CGPMU2的活性部位组氨酸相邻的组氨酸,并且它表现出一种新的能力在CGPMU2中部分地替换保守的活性位点组氨酸。另外,第二氨基酸变化能够赋予NT磷酸酶活性至CGPMU1,表明单氨基酸改变新官能化CGPMU2。

著录项

相似文献

  • 外文文献
  • 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