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人类鸟氨酸转氨甲酰酶第109位残基上的精氨酸突变为谷氨酰胺,会使Cos1细胞中的酶活性完全丧失。

An arginine to glutamine mutation in residue 109 of human ornithine transcarbamylase completely abolishes enzymatic activity in Cos1 cells.

作者信息

Lee J T, Nussbaum R L

机构信息

Howard Hughes Medical Institute, Department of Human Genetics, University of Pennsylvania, Philadelphia 19104.

出版信息

J Clin Invest. 1989 Dec;84(6):1762-6. doi: 10.1172/JCI114360.

DOI:10.1172/JCI114360
PMID:2556444
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC304053/
Abstract

Ornithine transcarbamylase (OTC) is an important enzyme in the detoxification of ammonia to urea, and its deficiency is the most common inborn error of ureagenesis in humans. Among 24 cases of OTC deficiency previously examined, three unrelated individuals all showed loss of a Taq I site in the OTC gene corresponding to codon 109, suggesting that this Taq I site may be prone to mutation. Two of these patients demonstrated the same C----T transition (in antisense strand) converting Arg109 to Gln. Although these studies implied a strong association between the missense mutation and OTC-deficient phenotype, a causal relationship could not be firmly established. We have investigated this relationship by reconstructing the mutation in vitro. A full-length human OTC cDNA was cloned into an SV40-based expression vector and has been reproducibly expressed at high levels in the cell line Cos1. By site-directed mutagenesis of this wild type sequence, we constructed a missense mutation which contains the C----T transition. Electroporation and transient assay in Cos1 indicated that the specific activity of mutant OTC was 100-fold lower than that of wild type. This result confirms that the Taq I alteration leading to the Gln missense is responsible for the OTC deficiency affecting the above patients.

摘要

鸟氨酸转氨甲酰酶(OTC)是氨解毒生成尿素过程中的一种重要酶,其缺乏是人类尿素生成中最常见的先天性错误。在之前检测的24例OTC缺乏症病例中,三名无亲缘关系的个体在OTC基因中对应于密码子109的Taq I位点均出现缺失,这表明该Taq I位点可能易于发生突变。其中两名患者表现出相同的C→T转换(反义链),将Arg109转换为Gln。尽管这些研究暗示错义突变与OTC缺乏表型之间存在密切关联,但因果关系尚未得到确凿证实。我们通过在体外重建突变来研究这种关系。将全长人OTC cDNA克隆到基于SV40的表达载体中,并已在Cos1细胞系中以高水平可重复表达。通过对该野生型序列进行定点诱变,我们构建了一个包含C→T转换的错义突变。在Cos1细胞中进行电穿孔和瞬时检测表明,突变型OTC的比活性比野生型低100倍。这一结果证实,导致Gln错义的Taq I改变是影响上述患者的OTC缺乏的原因。

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An arginine to glutamine mutation in residue 109 of human ornithine transcarbamylase completely abolishes enzymatic activity in Cos1 cells.人类鸟氨酸转氨甲酰酶第109位残基上的精氨酸突变为谷氨酰胺,会使Cos1细胞中的酶活性完全丧失。
J Clin Invest. 1989 Dec;84(6):1762-6. doi: 10.1172/JCI114360.
2
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本文引用的文献

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Evidence for an exceptionally reactive arginyl residue at the binding site for carbamyl phosphate in bovine ornithine transcarbamylase.牛鸟氨酸转氨甲酰酶中氨甲酰磷酸结合位点处存在一个异常活泼的精氨酰残基的证据。
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Ornithine transcarbamylase deficiencies in human males. Kinetic and immunochemical classification.人类男性中的鸟氨酸转氨甲酰酶缺乏症。动力学和免疫化学分类。
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Ornithine transcarbamylases. Ordering of S-cyano peptides and location of characteristically reactive cysteinyl residues within the sequence.鸟氨酸转氨甲酰酶。S-氰基肽的排序及序列中特征性反应性半胱氨酰残基的位置。
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Biogenesis of ornithine transcarbamylase in spfash mutant mice: two cytoplasmic precursors, one mitochondrial enzyme.无特定病原体(SPF)ASH突变小鼠中鸟氨酸转氨甲酰酶的生物合成:两种细胞质前体,一种线粒体酶。
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Evolutionary divergence of genes for ornithine and aspartate carbamoyl-transferases--complete sequence and mode of regulation of the Escherichia coli argF gene; comparison of argF with argI and pyrB.鸟氨酸和天冬氨酸氨甲酰基转移酶基因的进化分歧——大肠杆菌argF基因的完整序列及调控模式;argF与argI和pyrB的比较
Nucleic Acids Res. 1984 Aug 10;12(15):6277-89. doi: 10.1093/nar/12.15.6277.
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Structure and expression of a complementary DNA for the nuclear coded precursor of human mitochondrial ornithine transcarbamylase.人线粒体鸟氨酸转氨甲酰酶核编码前体的互补DNA的结构与表达
Science. 1984 Jun 8;224(4653):1068-74. doi: 10.1126/science.6372096.
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The DNA sequence of argI from Escherichia coli K12.来自大肠杆菌K12的精氨酸酶I的DNA序列。
Nucleic Acids Res. 1983 Dec 10;11(23):8509-18. doi: 10.1093/nar/11.23.8509.
10
Nucleotide sequence of the structural gene (pyrB) that encodes the catalytic polypeptide of aspartate transcarbamoylase of Escherichia coli.编码大肠杆菌天冬氨酸转氨甲酰酶催化多肽的结构基因(pyrB)的核苷酸序列。
Proc Natl Acad Sci U S A. 1983 May;80(9):2462-6. doi: 10.1073/pnas.80.9.2462.