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复合杂合突变,包括ABCA12基因的一个新生错义突变,导致了一例临床严重程度为中度的丑角鱼鳞病。

Compound heterozygous mutations including a de novo missense mutation in ABCA12 led to a case of harlequin ichthyosis with moderate clinical severity.

作者信息

Akiyama Masashi, Sakai Kaori, Sugiyama-Nakagiri Yoriko, Yamanaka Yasuko, McMillan James R, Sawamura Daisuke, Niizeki Hironori, Miyagawa Sachiko, Shimizu Hiroshi

机构信息

Department of Dermatology, Hokkaido University Graduate School of Medicine, Sapporo, Japan.

出版信息

J Invest Dermatol. 2006 Jul;126(7):1518-23. doi: 10.1038/sj.jid.5700295. Epub 2006 May 4.

Abstract

Harlequin ichthyosis (HI) is one of the most devastating genodermatoses. Recently, ABCA12 mutations were identified as the cause of HI. A newborn Japanese male demonstrated the typical features of HI. The patient was treated with oral etretinate and his general condition has been good (now aged 1.5 years). This patient with moderate clinical severity was compound heterozygous for a novel de novo missense mutation 1160G > A (S387N) in exon 10 and a maternal deletion mutation 4158_4160delTAC (T1387del) in exon 28 of ABCA12. T1387del was a deletion of a highly conserved threonine residue within the first adenosine 5' triphosphate-binding domain and is thought to seriously affect the function of the ABCA12 protein. Conversely, the residue 387 is located outside the known active sites of ABCA12 and S387N is predicted not to lead to a serious functional deficiency in ABCA12. Electron microscopy revealed abnormal lamellar granules in the granular layer cells and a moderate number of lipid vacuoles in the cornified cells. Disturbed glucosylceramide transport was confirmed in the cultured keratinocytes from the patient. No de novo mutation in ABCA12 has yet been reported either in HI or lamellar ichthyosis. The present case suggested that a de novo ABCA12 mutation might underlie HI.

摘要

丑角样鱼鳞病(HI)是最严重的遗传性皮肤病之一。最近,ABCA12基因突变被确定为HI的病因。一名日本男婴表现出HI的典型特征。该患者接受了口服阿维A治疗,目前总体状况良好(现1.5岁)。该临床症状中等严重程度的患者,ABCA12基因第10外显子存在一个新的新生错义突变1160G>A(S387N),第28外显子存在一个来自母亲的缺失突变4158_4160delTAC(T1387del),呈复合杂合状态。T1387del是第一个三磷酸腺苷结合域内一个高度保守的苏氨酸残基缺失,被认为会严重影响ABCA12蛋白的功能。相反,387位残基位于ABCA12已知活性位点之外,预测S387N不会导致ABCA12出现严重的功能缺陷。电子显微镜检查显示颗粒层细胞中板层颗粒异常,角质形成细胞中有中等数量的脂质空泡。在该患者培养的角质形成细胞中证实了葡糖神经酰胺转运紊乱。在HI或板层状鱼鳞病中,尚未有ABCA12新生突变的报道。本病例提示ABCA12新生突变可能是HI的潜在病因。

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