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从分子角度理解 IFAP 和 Olmsted 综合征的表型相似性:MBTPS2 和 TRPV3 的相互作用。

Understanding the phenotypic similarities between IFAP and Olmsted syndrome from a molecular perspective: the interaction of MBTPS2 and TRPV3.

机构信息

Department of Biochemistry and Molecular Genetics, American University of Beirut, Beirut, Lebanon.

Department of Pediatrics, American University of Beirut, Beirut, Lebanon.

出版信息

Arch Dermatol Res. 2017 Oct;309(8):637-643. doi: 10.1007/s00403-017-1762-z. Epub 2017 Jul 17.

Abstract

Ichthyosis Follicularis, Atrichia, and Photophobia (IFAP) is a severe rare genetic disorder caused by mutations in the gene encoding the Membrane-Bound Transcription Factor Peptidase, Site 2 (MBTPS2). Olmsted syndrome is another rare genetic disease with overlapping clinical features caused by mutations in the gene encoding the Transient Receptor Potential Cation Channel, subfamily V (TRPV3). Mutations in MBTPS2 have been recently reported in Olmsted syndrome, underscoring the overlap and the confusion in separating Olmsted from IFAP syndrome. We studied a Lebanese family with IFAP syndrome both, clinically and molecularly, and investigated whether there is a cross relation between TRPV3 and MBTPS2. We identified a recurrent mutation designated p.F475S in MBTPS2 in the affected individuals. This mutation was not found in 100 control individuals from the same population. We determined that TRPV3 regulatory region is a target for MBTPS2. In addition, there was an increased cell death in the cells transfected with the mutant versus the wild-type MBTPS2. In conclusion, we identified a direct regulatory effect of MBTPS2 on TRPV3 which can partially contribute to the overlapping clinical features of IFAP and Olmsted syndromes under a common signaling pathway.

摘要

滤泡性鱼鳞病、少毛症和畏光症(IFAP)是一种由编码膜结合转录因子肽酶 2(MBTPS2)的基因突变引起的严重罕见遗传疾病。Olmsted 综合征是另一种具有重叠临床特征的罕见遗传疾病,由编码瞬时受体电位阳离子通道,亚家族 V(TRPV3)的基因突变引起。最近在 Olmsted 综合征中报道了 MBTPS2 的突变,突显了 Olmsted 和 IFAP 综合征之间的重叠和混淆。我们研究了一个黎巴嫩 IFAP 综合征家族,从临床和分子两方面进行了研究,并调查了 TRPV3 和 MBTPS2 之间是否存在交叉关系。我们在受影响的个体中发现了 MBTPS2 中指定为 p.F475S 的反复突变。该突变未在来自同一人群的 100 名对照个体中发现。我们确定 TRPV3 调节区是 MBTPS2 的靶标。此外,与野生型 MBTPS2 相比,转染突变型 MBTPS2 的细胞死亡增加。总之,我们确定了 MBTPS2 对 TRPV3 的直接调节作用,这可能部分导致 IFAP 和 Olmsted 综合征在共同信号通路下具有重叠的临床特征。

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