精氨酸琥珀酸合成酶的额外突变引起瓜氨酸血症。

Molecular biology & medicine Pub Date : 1991-02-01
K Kobayashi, C Rosenbloom, A L Beaudet, W E O'Brien
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引用次数: 0

摘要

精氨酸琥珀酸合成酶缺乏导致低等生物精氨酸萎缩,并导致人类和牛的瓜氨酸血症。此前,在新生儿瓜氨酸血症中发现了7个错义突变、4个与mRNA外显子缺失相关的突变和1个剪接突变。利用mRNA的逆转录、cDNA扩增和cDNA克隆测序,鉴定了另外两个引起瓜氨酸血症的错义突变。一种突变是在18号位置(S18L)亮氨酸取代丝氨酸,另一种突变是在86号位置(R86C)半胱氨酸取代精氨酸。这两种突变都代表CpG二核苷酸中的C----T转变,导致人瓜氨酸血症的9种错义突变中有8种涉及CpG二核苷酸的类似转变。核苷酸编码序列和推导出的氨基酸分析可用于4种哺乳动物、酵母和3种细菌。人类的9个错义突变中有6个发生在这些生物体中完全保守的氨基酸位置。引起人类瓜氨酸血症的突变是极其异质的,迄今为止研究的所有非近亲个体都是复合杂合子。
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Additional mutations in argininosuccinate synthetase causing citrullinemia.

Deficiency of argininosuccinate synthetase causes arginine auxotrophy in lower organisms and causes citrullinemia in humans and cattle. Previously, seven missense mutations, four mutations associated with an absence of an exon in mRNA, and one splicing mutation have been identified in human neonatal citrullinemia. Reverse transcription of mRNA, amplification of cDNA and sequencing of cDNA clones were used to identify two additional missense mutations causing citrullinemia. One mutation involves substitution of leucine for serine at position 18 (S18L) and the other a substitution of cysteine for arginine at position 86 (R86C). Both of these mutations represent C----T transitions in CpG dinucleotides, and eight of nine missense mutations causing human citrullinemia involve similar transitions in CpG dinucleotides. The nucleotide coding sequence and deduced amino acid analysis are available for four mammalian species, yeast and three bacterial species. Six of nine missense mutations in humans occur in amino acid positions that are completely conserved in these organisms. Mutations causing human citrullinemia are extremely heterogeneous, and all non-consanguineous individuals studied to date are compound heterozygotes.

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