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首页> 外文期刊>Annals of the New York Academy of Sciences >Modeling Werner Syndrome in Drosophila melanogaster: Hyper-recombination in Flies Lacking WRN-like Exonuclease
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Modeling Werner Syndrome in Drosophila melanogaster: Hyper-recombination in Flies Lacking WRN-like Exonuclease

机译:果蝇中的Werner综合征建模:缺乏WRN样核酸外切酶的果蝇中的超重组。

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摘要

Human progeroid Werner syndrome provides the current best model for analysis of human aging, recapitulating many aspects of normal aging as a result of mutation of the WRN gene. This gene encodes a RecQ-type helicase with additional exonuclease activity. While biochemical studies in vitro have proven invaluable in determining substrate specificities of the WRN exonuclease and helicase, it has been difficult to dissociate the two key enzyme activities in vivo. We are developing Drosophila as a model system for analysis of WRN function; the suitability of Drosophila for extensive and sophisticated genetic manipulation permits us to investigate regulatory pathways and the impact of WRN loss at organismal, cellular, and molecular levels. BLASTP screening of the Drosophila genome with human WRN sequence allowed us to identify three RecQ helicases with strong homology to human WRN, a presumed helicase component of the spliceosome, and two DEAH-box putative RNA helicases with weaker WRN homology. None of these helicases contain a WRN-like exonuclease domain, but two potential WRN-like exonucleases in flies encoded by the loci CG7670 and CG6744 were also identified in the BLAST search. CG6744 and CG7670 are more closely related to human WRN than to each other. We have obtained a fly strain with a piggyBac insertional mutation within the CG6744 locus, which decreases expression of the encoded mRNA. Such flies show elevated levels of somatic recombination. We suggest that WRN-like exonuclease activity is critical in maintaining genomic integrity in flies.
机译:人类早衰型Werner综合征提供了当前最佳的人类衰老分析模型,概括了WRN基因突变导致正常衰老的许多方面。该基因编码具有其他核酸外切酶活性的RecQ型解旋酶。尽管体外生化研究已证明在确定WRN外切核酸酶和解旋酶的底物特异性方面具有不可估量的价值,但很难在体内解离这两个关键酶活性。我们正在开发果蝇作为WRN功能分析的模型系统。果蝇对广泛而复杂的基因操作的适用性使我们能够研究调节途径以及WRN丧失对机体,细胞和分子水平的影响。用人WRN序列对果蝇基因组进行的BLASTP筛选使我们能够鉴定出与人WRN具有强烈同源性的三种RecQ解旋酶,一种推测的剪接体解旋酶组分以及两种WRN同源性较弱的DEAH-box推定RNA解旋酶。这些解旋酶均不包含WRN样核酸外切酶结构域,但在BLAST搜索中还发现了由基因座CG7670和CG6744编码的果蝇中两个潜在的WRN样核酸外切酶。 CG6744和CG7670与人类WRN的关联更为紧密,而彼此之间的关联更为紧密。我们已在CG6744基因座中获得了一个带有piggyBac插入突变的蝇品系,从而降低了编码的mRNA的表达。这些果蝇显示出高水平的体细胞重组。我们建议,WRN样核酸外切酶活性对于维持果蝇的基因组完整性至关重要。

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