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外显子剪接增强子突变导致常染色体显性遗传性生长激素缺乏症。

An exon splice enhancer mutation causes autosomal dominant GH deficiency.

作者信息

Moseley Chanda T, Mullis Primus E, Prince Melissa A, Phillips John A

机构信息

Department of Pediatrics, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-2578, USA.

出版信息

J Clin Endocrinol Metab. 2002 Feb;87(2):847-52. doi: 10.1210/jcem.87.2.8236.

Abstract

Familial isolated GH deficiency type II (IGHD II) is caused, in some cases, by heterogeneous IVS3 mutations that affect GH mRNA splicing. We report here our finding an A-->G transition of the fifth base of exon 3 (E3+ 5 A-->G) in affected individuals from an IGHD II family. This mutation disrupts a (GAA)(n) exon splice enhancer (ESE) motif immediately following the weak IVS2 3' splice site. The mutation also destroys an MboII site used to demonstrate heterozygosity in all affected family members. To determine the effect of ESE mutations on GH mRNA processing, GH(3) cells were transfected with expression constructs containing the normal ESE, +5 A-->G, or other ESE mutations, and cDNAs derived from the resulting GH mRNAs were sequenced. All ESE mutations studied reduced activation of the IVS2 3' splice site and caused either partial E3 skipping, due to activation of an E3+ 45 cryptic 3' splice site, or complete E3 skipping. Partial or complete E3 skipping led to loss of the codons for amino acids 32-46 or 32-71, respectively, of the mature GH protein. Our data indicate that the E3+ 5 A-->G mutation causes IGHD II because it perturbs an ESE required for GH splicing.

摘要

II型家族性孤立性生长激素缺乏症(IGHD II)在某些情况下是由影响生长激素(GH)mRNA剪接的异质性IVS3突变引起的。我们在此报告,在一个IGHD II家族的患病个体中发现第3外显子(E3)第5个碱基发生了A→G转换(E3 + 5 A→G)。该突变破坏了紧邻弱IVS2 3'剪接位点后的一个(GAA)n外显子剪接增强子(ESE)基序。该突变还破坏了一个用于证明所有患病家族成员杂合性的MboII位点。为了确定ESE突变对GH mRNA加工的影响,用含有正常ESE、+5 A→G或其他ESE突变的表达构建体转染GH3细胞,并对由此产生的GH mRNA衍生的cDNA进行测序。所研究的所有ESE突变均降低了IVS2 3'剪接位点的激活,并由于E3 + 45隐蔽性3'剪接位点的激活导致部分E3跳跃或完全E3跳跃。部分或完全E3跳跃分别导致成熟GH蛋白第32 - 46或32 - 71位氨基酸的密码子缺失。我们的数据表明,E3 + 5 A→G突变导致IGHD II,因为它扰乱了GH剪接所需的一个ESE。

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