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在mut0型甲基丙二酸尿症中显示基因内互补的突变的克隆与表达

Cloning and expression of mutations demonstrating intragenic complementation in mut0 methylmalonic aciduria.

作者信息

Qureshi A A, Crane A M, Matiaszuk N V, Rezvani I, Ledley F D, Rosenblatt D S

机构信息

Department of Human Genetics, McGill University Montreal, Quebec, Canada.

出版信息

J Clin Invest. 1994 Apr;93(4):1812-9. doi: 10.1172/JCI117166.

Abstract

The mut0 mutation resulting in methylmalonyl CoA mutase (MCM) apoenzyme deficiency and methylmalonic aciduria is characterized by undetectable enzyme activity in cell extracts and low incorporation of propionate into cultured cells which is not stimulated by hydroxycobalamin. A mut0 fibroblast cell line (WG1681) from an African-American male infant complemented another mut0 cell line (WG 1130). Cloning and sequencing of cDNA from WG 1681 demonstrated compound heterozygosity for two novel changes at highly conserved sites: G623R and G703R. In addition, two previously described homozygous polymorphisms, H532R and V671I, were found. Hybridization of allele-specific oligonucleotides to PCR amplified MCM exons from the proband and family members identified a clinically normal mother, half-sister, and half-brother as carriers of the G703R change in cis with both polymorphisms. Transfection of each change into a mut0 cell line with very low MCM mRNA (GM1673) demonstrated a lack of stimulation of propionate uptake in the absence and presence of hydroxycobalamin. Cotransfection of each mutation with the previously identified R93H mutation of WG 1130 stimulated propionate uptake, indicating that G623R and G703R are independently capable of complementing the R93H mutation.

摘要

导致甲基丙二酰辅酶A变位酶(MCM)脱辅基酶缺乏和甲基丙二酸尿症的mut0突变的特征是,细胞提取物中检测不到酶活性,且丙酸盐掺入培养细胞的量较低,而羟钴胺素对此无刺激作用。一名非裔美国男婴的mut0成纤维细胞系(WG1681)与另一个mut0细胞系(WG 1130)互补。对WG 1681的cDNA进行克隆和测序,结果显示在高度保守位点有两个新变化存在复合杂合性:G623R和G703R。此外,还发现了两个先前描述的纯合多态性,即H532R和V671I。将等位基因特异性寡核苷酸与先证者及其家庭成员的PCR扩增的MCM外显子杂交,结果确定一名临床正常的母亲、同父异母的姐姐和同父异母的哥哥是G703R变化与这两种多态性处于顺式状态的携带者。将每种变化转染到MCM mRNA水平极低的mut0细胞系(GM1673)中,结果显示无论有无羟钴胺素,丙酸盐摄取均未受到刺激。将每种突变与先前确定的WG 1130的R93H突变共转染可刺激丙酸盐摄取,这表明G623R和G703R能够独立地互补R93H突变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2477/294249/c78b326397a3/jcinvest00033-0477-a.jpg

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