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HDAC6 基因 3'-UTR 中的突变导致 hsa-miR-433 介导的转录后调控丧失,与一种新的显性 X 连锁性软骨发育不良有关。

A mutation in the 3'-UTR of the HDAC6 gene abolishing the post-transcriptional regulation mediated by hsa-miR-433 is linked to a new form of dominant X-linked chondrodysplasia.

机构信息

Laboratoire de Génétique Humaine, EA 4137, Université Victor Segalen Bordeaux 2, Bordeaux 33076, France.

出版信息

Hum Mol Genet. 2010 May 15;19(10):2015-27. doi: 10.1093/hmg/ddq083. Epub 2010 Feb 24.

DOI:10.1093/hmg/ddq083
PMID:20181727
Abstract

A family with dominant X-linked chondrodysplasia was previously described. The disease locus was ascribed to a 24 Mb interval in Xp11.3-q13.1. We have identified a variant (c.*281A>T) in the 3' untranslated region (UTR) of the HDAC6 gene that totally segregates with the disease. The variant is located in the seed sequence of hsa-miR-433. Our data showed that, in MG63 osteosarcoma cells, hsa-miR-433 (miR433) down-regulated both the expression of endogenous HDAC6 and that of an enhanced green fluorescent protein-reporter mRNA bearing the wild-type 3'-UTR of HDAC6. This effect was totally abrogated when the reporter mRNA bore the mutated HDAC6 3'-UTR. The HDAC6 protein was found to be over-expressed in thymus from an affected male fetus. Concomitantly, the level of total alpha-tubulin, a target of HDAC6, was found to be increased in the affected fetal thymus, whereas the level of acetylated alpha-tubulin was found to be profoundly decreased. Skin biopsies were obtained from a female patient who presented a striking body asymmetry with hypotrophy of the left limbs. The mutated HDAC6 allele was expressed in 31% of left arm-derived fibroblasts, whereas it was not expressed in the right arm. Overexpression of HDAC6 was observed in left arm-derived fibroblasts. Altogether these results strongly suggest that this HDAC6 3'-UTR variant suppressed hsa-miR-433-mediated post-transcriptional regulation causing the overexpression of HDAC6. This variant is likely to constitute the molecular cause of this new form of X-linked chondrodysplasia. This represents to our knowledge the first example of a skeletal disease caused by the loss of a miRNA-mediated post-transcriptional regulation on its target mRNA.

摘要

先前描述了一个具有显性 X 连锁软骨发育不良的家族。该疾病位点被归因于 Xp11.3-q13.1 中的 24 Mb 间隔。我们已经在 HDAC6 基因的 3'非翻译区(UTR)中鉴定出一个变体(c.*281A>T),该变体完全与疾病共分离。该变体位于 hsa-miR-433 的种子序列中。我们的数据表明,在 MG63 骨肉瘤细胞中,hsa-miR-433(miR433)下调内源性 HDAC6 的表达以及携带野生型 3'-UTR 的增强型绿色荧光蛋白报告 mRNA 的表达。当报告 mRNA 携带突变的 HDAC6 3'-UTR 时,该效应完全被阻断。在受影响的男性胎儿的胸腺中发现 HDAC6 蛋白过表达。同时,在受影响的胎儿胸腺中发现总微管蛋白(HDAC6 的靶标)的水平增加,而乙酰化微管蛋白的水平则明显降低。从表现出明显身体不对称性和左侧肢体萎缩的女性患者中获得皮肤活检。突变的 HDAC6 等位基因在 31%的左臂衍生成纤维细胞中表达,而在右臂中不表达。在左臂衍生的成纤维细胞中观察到 HDAC6 的过表达。总之,这些结果强烈表明,该 HDAC6 3'-UTR 变体抑制了 hsa-miR-433 介导的转录后调节,导致 HDAC6 的过表达。该变体很可能是这种新形式的 X 连锁软骨发育不良的分子原因。这代表了我们所知的第一个由 miRNA 介导的对其靶 mRNA 的转录后调节丧失引起的骨骼疾病的例子。

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