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全外显子组测序在一个印度南部有眼皮肤白化病的家系中多个成员的纯合状态下发现 SLC45A2 中的新型致病性变异 [p.(Gly194valfs*7)]。

Whole exome sequencing identifies a novel pathogenic variation [p.(Gly194valfs*7)] in SLC45A2 in the homozygous state in multiple members of a family with oculocutaneous albinism in southern India.

机构信息

Department of Medical Genetics, Kasturba Medical College Manipal, Manipal Academy of Higher Education, Manipal, Karnataka, India.

出版信息

Clin Exp Dermatol. 2020 Jun;45(4):409-413. doi: 10.1111/ced.14126. Epub 2019 Dec 13.

DOI:10.1111/ced.14126
PMID:31630438
Abstract

Deleterious mutations within the SLC45A2 gene, encoding membrane-associated transporter protein (MATP), are responsible for type 4 oculocutaneous albinism. The cytogenetic location of SLC45A2 is 5p13.2 and it comprises seven exons located over around 40 kb. Its encoded protein, MATP, is 530 amino acids long and has 12 putative transmembrane domains. MATP is synthesized within melanocytes. It is in these cells that melanogenesis takes place and the melanin is contained within specialized organelles called melanosomes. Previous studies have shown that when MATP expression was reduced using small interfering RNA in MNT-1 melanoma cells, pH was lowered within melanosomes, they became poorly melanized and tyrosinase activity within melanocytes was also reduced. This type of albinism produces a broad spectrum of phenotypes, ranging from complete absence of melanin to brown hair and brown irides. In the current study, blood was collected from a family in which four members had oculocutaneous albinism, showing a complete absence of melanin in skin, hair and eyes. Screening of the TYR gene using the extracted DNA showed no mutation and therefore whole exome sequencing analysis was performed. A novel deletion mutation c.579delG [p.(Gly194Valfs*7)] in the SLC45A2 gene, predicted to be pathogenic and to result in both frameshift and premature termination of the MATP chain, was identified. These data add to the information pertaining to the mutation spectrum of OCA4.

摘要

SLC45A2 基因内的有害突变负责编码膜相关转运蛋白 (MATP),是 4 型眼皮肤白化病的病因。SLC45A2 的细胞遗传学位置是 5p13.2,它由 7 个外显子组成,大约 40kb。其编码的蛋白质 MATP 长 530 个氨基酸,有 12 个假定的跨膜结构域。MATP 在黑色素细胞内合成。正是在这些细胞中发生黑色素生成,黑色素包含在称为黑素体的特殊细胞器中。先前的研究表明,当使用小干扰 RNA 降低 MNT-1 黑色素瘤细胞中的 MATP 表达时,黑素体内的 pH 值降低,它们变得黑色素化不良,黑色素细胞内的酪氨酸酶活性也降低。这种类型的白化病产生广泛的表型,从完全缺乏黑色素到棕色头发和棕色虹膜。在本研究中,从一个有 4 名眼皮肤白化病成员的家庭中采集血液,显示皮肤、头发和眼睛完全缺乏黑色素。使用提取的 DNA 对 TYR 基因进行筛查未发现突变,因此进行了全外显子组测序分析。在 SLC45A2 基因中发现了一个新的缺失突变 c.579delG [p.(Gly194Valfs*7)],预测为致病性突变,导致 MATP 链发生移码和过早终止。这些数据增加了 OCA4 突变谱的信息。

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Evident hypopigmentation without other ocular deficits in Dutch patients with oculocutaneous albinism type 4.荷兰 4 型眼皮肤白化病患者无其他眼部缺损的明显色素减退。
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