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首页> 外文期刊>Molecular genetics and metabolism >Identification of two novel mutations in the murine Nsdhl sterol dehydrogenase gene and development of a functional complementation assay in yeast.
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Identification of two novel mutations in the murine Nsdhl sterol dehydrogenase gene and development of a functional complementation assay in yeast.

机译:鉴定鼠Nsdhl固醇脱氢酶基因中的两个新突变,并开发酵母中的功能互补测定法。

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摘要

Nsdhl is a 3beta-hydroxysterol dehydrogenase that is involved in the removal of C-4 methyl groups in the cholesterol biosynthetic pathway. Mutations in this gene are associated with the X-linked male lethal mouse mutations bare patches (Bpa) and striated (Str) and human CHILD syndrome. We have now detected the missense mutations V53D and A94T in conserved amino acids in two additional Bpa alleles. The latter alters the same amino acid as a missense mutation found in two unrelated CHILD patients, strongly suggesting that differences in the phenotype between Bpa mice and females with CHILD syndrome are unlikely to be explained by different types or sites of mutations. We have also demonstrated that the mouse NSDHL protein can rescue the lethality of erg26 deficient cells of Saccharomyces cerevisiae that lack the yeast ortholog, substantiating the role of NSDHL as a C-3 sterol dehydrogenase. Using this in vivo assay, we have demonstrated that two Str alleles function as hypomorphs, while three Bpa and oneStr allele provide no complementation or rescue.
机译:Nsdhl是一种3beta-羟基固醇脱氢酶,参与胆固醇生物合成途径中C-4甲基的去除。该基因的突变与X连锁的雄性致命小鼠突变裸斑(Bpa)和横纹(Str)和人类CHILD综合征有关。现在,我们已经在另外两个Bpa等位基因的保守氨基酸中检测到错义突变V53D和A94T。后者改变了与两名无关的CHILD患者中发现的错义突变相同的氨基酸,强烈表明Bpa小鼠和患有CHILD综合征的雌性之间的表型差异不可能由突变的不同类型或位点来解释。我们还证明了小鼠NSDHL蛋白可以挽救缺少酵母直系同源基因的酿酒酵母中erg26缺陷细胞的致死性,从而证实NSDHL作为C-3固醇脱氢酶的作用。使用该体内试验,我们已经证明了两个Str等位基因起亚型的作用,而三个Bpa和oneStr等位基因则不提供互补或拯救作用。

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