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与孤立性生长激素缺乏症相关的 U11/U12-65K 蛋白突变导致结构不稳定和 U12 snRNA 结合受损。

Mutations in the U11/U12-65K protein associated with isolated growth hormone deficiency lead to structural destabilization and impaired binding of U12 snRNA.

机构信息

Institute of Biotechnology, FI-00014 University of Helsinki, Finland.

出版信息

RNA. 2018 Mar;24(3):396-409. doi: 10.1261/rna.062844.117. Epub 2017 Dec 18.

Abstract

Mutations in the components of the minor spliceosome underlie several human diseases. A subset of patients with isolated growth hormone deficiency (IGHD) harbors mutations in the gene, which encodes the minor spliceosome-specific U11/U12-65K protein. Although a previous study showed that IGHD patient cells have defects in U12-type intron recognition, the biochemical effects of these mutations on the 65K protein have not been characterized. Here, we show that a proline-to-threonine missense mutation (P474T) and a nonsense mutation (R502X) in the C-terminal RNA recognition motif (C-RRM) of the 65K protein impair the binding of 65K to U12 and U6atac snRNAs. We further show that the nonsense allele is targeted to the nonsense-mediated decay (NMD) pathway, but in an isoform-specific manner, with the nuclear-retained long-3'UTR isoform escaping the NMD pathway. In contrast, the missense P474T mutation leads, in addition to the RNA-binding defect, to a partial defect in the folding of the C-RRM and reduced stability of the full-length protein, thus reducing the formation of U11/U12 di-snRNP complexes. We propose that both the C-RRM folding defect and NMD-mediated decrease in the levels of the U11/U12-65K protein reduce formation of the U12-type intron recognition complex and missplicing of a subset of minor introns leading to pituitary hypoplasia and a subsequent defect in growth hormone secretion.

摘要

小点核核糖核蛋白复合物成分的突变是几种人类疾病的基础。一部分孤立性生长激素缺乏症(IGHD)患者携带有 基因的突变,该基因编码小点核特异的 U11/U12-65K 蛋白。虽然先前的研究表明 IGHD 患者细胞在 U12 型内含子识别中存在缺陷,但这些突变对 65K 蛋白的生化影响尚未得到描述。在这里,我们发现 65K 蛋白 C 端 RNA 识别基序(C-RRM)中的脯氨酸到苏氨酸错义突变(P474T)和无义突变(R502X)会损害 65K 与 U12 和 U6atac snRNA 的结合。我们进一步表明,无义等位基因被靶向无义介导的衰变(NMD)途径,但以异构体特异性的方式,核保留的长 3'UTR 异构体逃避 NMD 途径。相比之下,错义 P474T 突变除了导致 RNA 结合缺陷外,还导致 C-RRM 的部分折叠缺陷和全长蛋白稳定性降低,从而减少 U11/U12 二 snRNP 复合物的形成。我们提出,C-RRM 折叠缺陷和 NMD 介导的 U11/U12-65K 蛋白水平降低都会减少 U12 型内含子识别复合物的形成和一小部分次要内含子的错误剪接,导致脑垂体发育不全和随后的生长激素分泌缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3ee4/5824358/a4d59930fa2b/396f01.jpg

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