Suppr超能文献

影响前体mRNA剪接的人类胰岛素基因变体:-23HphI是否为IDDM2处的功能性单核苷酸多态性?

Variants in the human insulin gene that affect pre-mRNA splicing: is -23HphI a functional single nucleotide polymorphism at IDDM2?

作者信息

Královicová Jana, Gaunt Tom R, Rodriguez Santiago, Wood Peter J, Day Ian N M, Vorechovsky Igor

机构信息

University of Southampton School of Medicine, Human Genetics Division, Duthie Building, MP808, Tremona Road, Southampton SO16 6YD, U.K.

出版信息

Diabetes. 2006 Jan;55(1):260-4. doi: 10.2337/diabetes.55.01.06.db05-0773.

Abstract

Predisposition to type 1 diabetes and juvenile obesity is influenced by the susceptibility locus IDDM2 that includes the insulin gene (INS). Although the risk conferred by IDDM2 has been attributed to a minisatellite upstream of INS, intragenic variants have not been ruled out. We examined whether INS polymorphisms affect pre-mRNA splicing and proinsulin secretion using minigene reporter assays. We show that IVS1-6A/T (-23HphI+/-) is a key INS variant that influences alternative splicing of intron 1 through differential recognition of its 3' splice site. The A allele resulted in an increased production of mature transcripts with a long 5' leader in several cell lines, and the extended mRNAs generated more proinsulin in culture supernatants than natural transcripts. The longer mRNAs were significantly overrepresented among beta-cell-expressed sequenced tags containing the A allele as compared with those with T alleles. In addition, we show that a rare insertion/deletion polymorphism IVS1+5insTTGC (IVS-69), which is exclusively present in Africans, activated a downstream cryptic 5' splice site, extending the 5' leader by 30 bp. These results indicate that -23HphI and IVS-69 are the most important INS variants affecting pre-mRNA splicing and suggest that -23HphI+/- is a common functional single nucleotide polymorphism at IDDM2.

摘要

1型糖尿病和青少年肥胖的易感性受包含胰岛素基因(INS)的易感基因座IDDM2影响。尽管IDDM2赋予的风险归因于INS上游的一个小卫星,但基因内变体并未被排除。我们使用小基因报告分析检测了INS多态性是否影响前体mRNA剪接和胰岛素原分泌。我们发现IVS1-6A/T(-23HphI+/-)是一个关键的INS变体,它通过对其3'剪接位点的差异识别影响内含子1的可变剪接。在几种细胞系中,A等位基因导致产生更多带有长5'前导序列的成熟转录本,并且与天然转录本相比,这些延长的mRNA在培养上清液中产生更多的胰岛素原。与含有T等位基因的β细胞表达的测序标签相比,含有A等位基因的标签中较长的mRNA显著富集。此外,我们发现一种罕见的插入/缺失多态性IVS1+5insTTGC(IVS-69),它仅存在于非洲人中,激活了一个下游隐蔽的5'剪接位点,使5'前导序列延长了30 bp。这些结果表明,-23HphI和IVS-69是影响前体mRNA剪接的最重要的INS变体,并表明-23HphI+/-是IDDM2处常见的功能性单核苷酸多态性。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验