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首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >Mutations in the human SC4MOL gene encoding a methyl sterol oxidase cause psoriasiform dermatitis, microcephaly, and developmental delay.
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Mutations in the human SC4MOL gene encoding a methyl sterol oxidase cause psoriasiform dermatitis, microcephaly, and developmental delay.

机译:编码甲基甾醇氧化酶的人 SC4MOL 基因突变会导致银屑病样皮炎、小头畸形和发育迟缓。

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摘要

Defects in cholesterol synthesis result in a wide variety of symptoms, from neonatal lethality to the relatively mild dysmorphic features and developmental delay found in individuals with Smith-Lemli-Opitz syndrome. We report here the identification of mutations in sterol-C4-methyl oxidase-like gene (SC4MOL) as the cause of an autosomal recessive syndrome in a human patient with psoriasiform dermatitis, arthralgias, congenital cataracts, microcephaly, and developmental delay. This gene encodes a sterol-C4-methyl oxidase (SMO), which catalyzes demethylation of C4-methylsterols in the cholesterol synthesis pathway. C4-Methylsterols are meiosis-activating sterols (MASs). They exist at high concentrations in the testis and ovary and play roles in meiosis activation. In this study, we found that an accumulation of MASs in the patient led to cell overproliferation in both skin and blood. SMO deficiency also substantially altered immunocyte phenotype and in vitro function. MASs serve as ligands for liver X receptors alpha and beta(LXRalpha and LXRbeta), which are important in regulating not only lipid transport in the epidermis, but also innate and adaptive immunity. Deficiency of SMO represents a biochemical defect in the cholesterol synthesis pathway, the clinical spectrum of which remains to be defined.
机译:胆固醇合成缺陷会导致多种症状,从新生儿致死到相对轻微的畸形特征和在Smith-Lemli-Opitz综合征患者中发现的发育迟缓。我们在这里报告了甾醇-C4-甲基氧化酶样基因 (SC4MOL) 突变的鉴定,该突变是患有银屑病样皮炎、关节痛、先天性白内障、小头畸形和发育迟缓的人类患者常染色体隐性遗传综合征的原因。该基因编码甾醇-C4-甲基氧化酶 (SMO),其催化胆固醇合成途径中 C4-甲基甾醇的去甲基化。C4-甲基甾醇是减数分裂活化甾醇 (MAS)。它们以高浓度存在于睾丸和卵巢中,并在减数分裂激活中发挥作用。在这项研究中,我们发现患者体内 MAS 的积累导致皮肤和血液中的细胞过度增殖。SMO缺乏也大大改变了免疫细胞表型和体外功能。MASs是肝脏X受体α和β(LXRα和LXRβ)的配体,不仅在调节表皮中的脂质转运方面很重要,而且在先天性和适应性免疫方面也很重要。SMO缺乏症是胆固醇合成途径中的生化缺陷,其临床范围仍有待确定。

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