Suppr超能文献

类固醇21-羟化酶(P450c21):一个新的等位基因以及突变通过假基因的传播。

Steroid 21-hydroxylase (P450c21): a new allele and spread of mutations through the pseudogene.

作者信息

Wedell A, Luthman H

机构信息

Rolf Luft Center for Diabetes Research, Department of Clinical Genetics, Karolinska Hospital, Stockholm, Sweden.

出版信息

Hum Genet. 1993 Apr;91(3):236-40. doi: 10.1007/BF00218263.

Abstract

Lesions in the gene encoding the adrenal enzyme steroid 21-hydroxylase (P450c21) result in defective adrenal cortisol synthesis, often accompanied by aldosterone deficiency. The symptoms range from severe neonatal disease to inconspicuous symptoms in adulthood depending on the nature of the mutations. The 21-hydroxylase gene is present in close proximity to a highly homologous pseudogene, and both genes show variation in copy number between individuals. For complete DNA sequence characterization, we have applied selective polymerase chain reaction amplification and direct sequencing of all full-length steroid 21-hydroxylase genes present in individuals. Using healthy individuals with only one remaining steroid 21-hydroxylase allele as normal references, a new allele was found in two siblings, in whom clinical and laboratory findings demonstrated moderate enzyme deficiency. Full-length sequencing of this allele displayed an Arg 484 to Pro codon change in exon 10, in the same position as a previously identified GG to C mutation found in a patient with severe 21-hydroxylase deficiency. Arg 484 is located within a stretch of amino acids that are highly conserved between mammalian 21-hydroxylases. The finding of the presently reported 21-hydroxylase allele indicates that the GG to C mutation from the severely affected patient has arisen by a two-step mechanism, consisting of a G to C transversion accompanied by an adjacent G deletion. When sequencing 26 pseudogenes, both these mutations, which are not present in the pseudogenes hitherto reported, were found at low frequency together with a number of other polymorphisms. Thus, also rare mutations can spread via the pseudogene and can therefore be expected to arise independently in unrelated individuals.

摘要

编码肾上腺酶类固醇21-羟化酶(P450c21)的基因发生病变会导致肾上腺皮质醇合成缺陷,常伴有醛固酮缺乏。症状从严重的新生儿疾病到成年期不明显的症状不等,这取决于突变的性质。21-羟化酶基因与一个高度同源的假基因紧密相邻,并且这两个基因在个体之间的拷贝数存在差异。为了进行完整的DNA序列特征分析,我们应用了选择性聚合酶链反应扩增和对个体中存在的所有全长类固醇21-羟化酶基因进行直接测序。以仅保留一个类固醇21-羟化酶等位基因的健康个体作为正常对照,在两名兄弟姐妹中发现了一个新的等位基因,他们的临床和实验室检查结果显示存在中度酶缺乏。对该等位基因的全长测序显示第10外显子中存在一个从Arg 484到Pro的密码子变化,与先前在一名严重21-羟化酶缺乏患者中发现的GG到C突变位于相同位置。Arg 484位于哺乳动物21-羟化酶之间高度保守的一段氨基酸序列内。目前报道的21-羟化酶等位基因的发现表明,来自严重受影响患者的GG到C突变是通过两步机制产生的,包括一个G到C的颠换以及相邻G的缺失。在对26个假基因进行测序时,发现迄今报道的假基因中不存在的这两个突变以及一些其他多态性以低频率共同出现。因此,罕见突变也可以通过假基因传播,并且因此可以预期在无关个体中独立出现。

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