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L1CAM基因中的一个沉默突变C924T(G308G)导致X连锁脑积水(HSAS)。

A silent mutation, C924T (G308G), in the L1CAM gene results in X linked hydrocephalus (HSAS).

作者信息

Du Y Z, Dickerson C, Aylsworth A S, Schwartz C E

机构信息

J C Self Research Institute of Human Genetics, Greenwood Genetic Center, SC 29646, USA.

出版信息

J Med Genet. 1998 Jun;35(6):456-62. doi: 10.1136/jmg.35.6.456.

Abstract

The L1 cell adhesion molecule (L1CAM) is a neuronal gene involved in the development of the nervous system. Mutations in L1CAM are known to cause several clinically overlapping X linked mental retardation conditions: X linked hydrocephalus (HSAS), MASA syndrome (mental retardation, aphasia, shuffling gait, adducted thumbs), spastic paraplegia type I (SPG1), and X linked agenesis of the corpus callosum (ACC). In an analysis of a family with HSAS, we identified a C-->T transition (C924T) in exon 8 that was initially thought to have no effect on the protein sequence as the alteration affected the third base of a codon (G308G). Extensive analysis of the other 27 exons showed no other alteration. A review of the sequence surrounding position 924 indicated that the C-->T transition created a potential 5' splice site consensus sequence, which would result in an in frame deletion of 69 bp from exon 8 and 23 amino acids of the L1CAM protein. RT-PCR of the RNA from an affected male fetus and subsequent sequence analysis confirmed the use of the new splice site. This is the first report of a silent nucleotide substitution in L1CAM giving rise to an alteration at the protein level. Furthermore, it shows that as mutation analysis plays an ever more important role in human genetics, the identification of a synonymous base change should not be routinely discounted as a neutral polymorphism.

摘要

L1细胞黏附分子(L1CAM)是一种参与神经系统发育的神经元基因。已知L1CAM突变会导致几种临床上相互重叠的X连锁智力迟钝病症:X连锁脑积水(HSAS)、MASA综合征(智力迟钝、失语、拖步、拇指内收)、I型痉挛性截瘫(SPG1)和X连锁胼胝体发育不全(ACC)。在对一个患有HSAS的家族进行分析时,我们在第8外显子中发现了一个C→T转换(C924T),最初认为该转换对蛋白质序列没有影响,因为该改变影响了密码子的第三个碱基(G308G)。对其他27个外显子的广泛分析未发现其他改变。对924位点周围序列的检查表明,C→T转换产生了一个潜在的5'剪接位点共有序列,这将导致第8外显子69 bp的框内缺失以及L1CAM蛋白23个氨基酸的缺失。对一名受影响男性胎儿的RNA进行RT-PCR及随后的序列分析证实了新剪接位点的使用。这是关于L1CAM中一个沉默核苷酸替换导致蛋白质水平改变的首次报道。此外,它表明随着突变分析在人类遗传学中发挥越来越重要的作用,同义碱基变化的鉴定不应常规地被视为中性多态性而被忽视。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab05/1051338/dbcd544b04df/jmedgene00235-0017-a.jpg

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