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首页> 外文期刊>Human Molecular Genetics >PHF8, a gene associated with cleft lip/palate and mental retardation, encodes for an Nepsilon-dimethyl lysine demethylase.
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PHF8, a gene associated with cleft lip/palate and mental retardation, encodes for an Nepsilon-dimethyl lysine demethylase.

机译:PHF8是与唇裂/唇ate裂和智力障碍相关的基因,编码Nepsilon-二甲基赖氨酸脱甲基酶。

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Mutations of human PHF8 cluster within its JmjC encoding exons and are linked to mental retardation (MR) and a cleft lip/palate phenotype. Sequence comparisons, employing structural insights, suggest that PHF8 contains the double stranded beta-helix fold and ferrous iron binding residues that are present in 2-oxoglutarate-dependent oxygenases. We report that recombinant PHF8 is an Fe(II) and 2-oxoglutarate-dependent N(epsilon)-methyl lysine demethylase, which acts on histone substrates. PHF8 is selective in vitro for N(epsilon)-di- and mono-methylated lysine residues and does not accept trimethyl substrates. Clinically observed mutations to the PHF8 gene cluster in exons encoding for the double stranded beta-helix fold and will therefore disrupt catalytic activity. The PHF8 missense mutation c.836C>T is associated with mild MR, mild dysmorphic features, and either unilateral or bilateral cleft lip and cleft palate in two male siblings. This mutant encodes a F279S variant of PHF8 that modifies a conserved hydrophobic region; assays with both peptides and intact histones reveal this variant to be catalytically inactive. The dependence of PHF8 activity on oxygen availability is interesting because the occurrence of fetal cleft lip has been demonstrated to increase with maternal hypoxia in mouse studies. Cleft lip and other congenital anomalies are also linked indirectly to maternal hypoxia in humans, including from maternal smoking and maternal anti-hypertensive treatment. Our results will enable further studies aimed at defining the molecular links between developmental changes in histone methylation status, congenital disorders and MR.
机译:人PHF8的突变在其JmjC编码外显子内簇集,并与智力低下(MR)和唇裂/ pal裂表型相关。序列比较,利用结构上的见解,表明PHF8包含双链的β螺旋折叠和亚铁结合残基存在于2-氧戊二酸依赖性加氧酶中。我们报告说重组PHF8是Fe(II)和2-氧代戊二酸酯依赖性N(epsilon)-甲基赖氨酸脱甲基酶,其作用于组蛋白底物。 PHF8在体外对N(ε)-二和单甲基化的赖氨酸残基具有选择性,并且不接受三甲基底物。临床上观察到的编码双链β-螺旋折叠的外显子中PHF8基因簇的突变,因此会破坏催化活性。 PHF8错义突变c.836C> T与轻度MR,轻度畸形特征以及两个男性同胞的单侧或双侧唇裂和c裂相关。此突变体编码PHF8的F279S变体,该变体修饰了保守的疏水区。肽和完整组蛋白的分析均表明该变体具有催化活性。 PHF8活性对氧气可用性的依赖性很有趣,因为在小鼠研究中已证明胎儿裂唇的发生会随着母体缺氧而增加。唇裂和其他先天性异常也与人的母体缺氧间接相关,包括母体吸烟和母体抗高血压治疗。我们的结果将使进一步的研究旨在确定组蛋白甲基化状态,先天性疾病和MR的发展变化之间的分子联系。

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