{"title":"Overexpressed Drosophila DNA methyltransferase 2 isoform C interacts with Hsp70 in vivo.","authors":"Karim Roder","doi":"10.5483/bmbrep.2007.40.4.554","DOIUrl":null,"url":null,"abstract":"<p><p>Shen and colleagues (Lin et al., 2004) have recently shown that overexpression of the Drosophila DNA methyltransferase 2 isoform C, dDnmt2c, extended life span of fruit flies, probably due to increased expression of small heat shock proteins such as Hsp22 or Hsp26. Here, I demonstrate with immunoprecipitations that overexpressed dDnmt2c interacts with endogenous Hsp70 protein in vivo in S2 cells. However, its C-terminal half, dDnmt2c(178-345) forms approximately 10-fold more Hsp70-containing protein complexe than wild-type dDnmt2c. Overexpressed dDnmt2c(178-345) but not the full length dDnmt2c is able to increase endogenous mRNA levels of the small heat shock proteins, Hsp26 and Hsp22. I provide evidence that dDnmt2c(178-345) increases Hsp26 promoter activity via two heat shock elements, HSE6 and HSE7. Simultaneously overexpressed Hsp40 or a dominant negative form of heat shock factor abrogates the dDnmt2c(178-345)-dependent increase in Hsp26 transcription. The data support a model in which the activation of heat shock factor normally found as an inactive monomer bound to chaperones is linked to the overexpressed C-terminus of dDnmt2c. Despite the differences observed in flies and S2 cells, these findings provide a possible explanation for the extended lifespan in dDnmt2c-overexpressing flies with increased levels of small heat shock proteins.</p>","PeriodicalId":15113,"journal":{"name":"Journal of biochemistry and molecular biology","volume":"40 4","pages":"554-61"},"PeriodicalIF":0.0000,"publicationDate":"2007-07-31","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"1","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Journal of biochemistry and molecular biology","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.5483/bmbrep.2007.40.4.554","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 1
Abstract
Shen and colleagues (Lin et al., 2004) have recently shown that overexpression of the Drosophila DNA methyltransferase 2 isoform C, dDnmt2c, extended life span of fruit flies, probably due to increased expression of small heat shock proteins such as Hsp22 or Hsp26. Here, I demonstrate with immunoprecipitations that overexpressed dDnmt2c interacts with endogenous Hsp70 protein in vivo in S2 cells. However, its C-terminal half, dDnmt2c(178-345) forms approximately 10-fold more Hsp70-containing protein complexe than wild-type dDnmt2c. Overexpressed dDnmt2c(178-345) but not the full length dDnmt2c is able to increase endogenous mRNA levels of the small heat shock proteins, Hsp26 and Hsp22. I provide evidence that dDnmt2c(178-345) increases Hsp26 promoter activity via two heat shock elements, HSE6 and HSE7. Simultaneously overexpressed Hsp40 or a dominant negative form of heat shock factor abrogates the dDnmt2c(178-345)-dependent increase in Hsp26 transcription. The data support a model in which the activation of heat shock factor normally found as an inactive monomer bound to chaperones is linked to the overexpressed C-terminus of dDnmt2c. Despite the differences observed in flies and S2 cells, these findings provide a possible explanation for the extended lifespan in dDnmt2c-overexpressing flies with increased levels of small heat shock proteins.
Shen和他的同事(Lin et al., 2004)最近发现果蝇DNA甲基转移酶2亚型C (dDnmt2c)的过表达可以延长果蝇的寿命,这可能是由于热休克小蛋白如Hsp22或Hsp26的表达增加。在这里,我通过免疫沉淀证明,在体内S2细胞中,过表达的dDnmt2c与内源性Hsp70蛋白相互作用。然而,其c端一半dDnmt2c(178-345)形成的含hsp70的蛋白复合物比野生型dDnmt2c多约10倍。过表达的dDnmt2c(178-345)但不是全长的dDnmt2c能够增加内源性小热休克蛋白Hsp26和Hsp22的mRNA水平。我提供的证据表明,dDnmt2c(178-345)通过两个热休克元件HSE6和HSE7增加Hsp26启动子活性。同时过表达Hsp40或热休克因子的显性阴性形式消除了dDnmt2c(178-345)依赖性的Hsp26转录增加。这些数据支持一个模型,在这个模型中,热休克因子的激活通常被认为是与伴侣蛋白结合的非活性单体,与dnmt2c过表达的c端有关。尽管在果蝇和S2细胞中观察到差异,但这些发现为ddnmt2c过表达果蝇的寿命延长提供了可能的解释,这些果蝇的小热休克蛋白水平增加。