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次要剪接体成分 U4atac snRNA 的缺乏会导致人类和斑马鱼的纤毛缺陷。

Deficiency of the minor spliceosome component U4atac snRNA secondarily results in ciliary defects in human and zebrafish.

机构信息

Université Claude Bernard Lyon 1, INSERM, CNRS, Centre de Recherche en Neurosciences de Lyon CRNL U1028 UMR5292,Genetics of Neurodevelopment Team, 69500 Bron, France.

Department of Genetics, Clinical Genetics Unit, Centre de Référence Maladies Rares des Anomalies du Développement, Hospices Civils de Lyon, Université Claude Bernard Lyon 1, 69500 Bron, France.

出版信息

Proc Natl Acad Sci U S A. 2023 Feb 28;120(9):e2102569120. doi: 10.1073/pnas.2102569120. Epub 2023 Feb 21.

Abstract

In the human genome, about 750 genes contain one intron excised by the minor spliceosome. This spliceosome comprises its own set of snRNAs, among which U4atac. Its noncoding gene, , has been found mutated in Taybi-Linder (TALS/microcephalic osteodysplastic primordial dwarfism type 1), Roifman (RFMN), and Lowry-Wood (LWS) syndromes. These rare developmental disorders, whose physiopathological mechanisms remain unsolved, associate ante- and post-natal growth retardation, microcephaly, skeletal dysplasia, intellectual disability, retinal dystrophy, and immunodeficiency. Here, we report bi-allelic mutations in five patients presenting with traits suggestive of the Joubert syndrome (JBTS), a well-characterized ciliopathy. These patients also present with traits typical of TALS/RFMN/LWS, thus widening the clinical spectrum of -associated disorders and indicating ciliary dysfunction as a mechanism downstream of minor splicing defects. Intriguingly, all five patients carry the n.16G>A mutation, in the Stem II domain, either at the homozygous or compound heterozygous state. A gene ontology term enrichment analysis on minor intron-containing genes reveals that the cilium assembly process is over-represented, with no less than 86 cilium-related genes containing at least one minor intron, among which there are 23 ciliopathy-related genes. The link between mutations and ciliopathy traits is supported by alterations of primary cilium function in TALS and JBTS-like patient fibroblasts, as well as by zebrafish model, which exhibits ciliopathy-related phenotypes and ciliary defects. These phenotypes could be rescued by WT but not by pathogenic variants-carrying human U4atac. Altogether, our data indicate that alteration of cilium biogenesis is part of the physiopathological mechanisms of TALS/RFMN/LWS, secondarily to defects of minor intron splicing.

摘要

在人类基因组中,大约有 750 个基因包含一个由小剪接体切除的内含子。这个剪接体包含自己的一套 snRNA,其中包括 U4atac。它的非编码基因 已在 Taybi-Linder(TALS/小头骨发育不良性原始侏儒症 1 型)、Roifman(RFMN)和 Lowry-Wood(LWS)综合征中发现突变。这些罕见的发育障碍,其生理病理机制仍未解决,与产前和产后生长迟缓、小头畸形、骨骼发育不良、智力障碍、视网膜营养不良和免疫缺陷有关。在这里,我们报道了 5 名患者的双等位基因突变,这些患者具有提示杰伯综合征(JBTS)的特征,这是一种特征明确的纤毛病。这些患者还表现出 TALS/RFMN/LWS 的典型特征,从而扩大了 相关疾病的临床谱,并表明纤毛功能障碍是小剪接缺陷的下游机制。有趣的是,所有 5 名患者均携带 n.16G>A 突变,要么为纯合子状态,要么为复合杂合子状态,位于茎 II 结构域。对包含小内含子的基因进行基因本体论术语富集分析显示,纤毛组装过程过表达,至少有 86 个与纤毛相关的基因含有至少一个小内含子,其中有 23 个纤毛病相关基因。TALS 和 JBTS 样患者成纤维细胞中初级纤毛功能改变以及 斑马鱼模型支持 突变与纤毛病相关表型之间的联系,该模型表现出纤毛病相关表型和纤毛缺陷。WT 可以挽救这些表型,但携带致病性变异的人 U4atac 则不能。总之,我们的数据表明,纤毛发生的改变是 TALS/RFMN/LWS 生理病理机制的一部分,是小内含子剪接缺陷的继发事件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f23c/9992838/da9435b199a0/pnas.2102569120fig01.jpg

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