Molecular structure of the human argininosuccinate synthetase gene: occurrence of alternative mRNA splicing.
Open Access
- 1 October 1984
- journal article
- research article
- Published by Taylor & Francis in Molecular and Cellular Biology
- Vol. 4 (10) , 1978-1984
- https://doi.org/10.1128/mcb.4.10.1978
Abstract
The human genome contains one expressed argininosuccinate synthetase gene and ca. 14 pseudogenes that are dispersed to at least 11 human chromosomes. Eleven clones isolated from a human genomic DNA library were characterized extensively by restriction mapping, Southern blotting, and nucleotide sequencing. These 11 clones represent the entire expressed argininosuccinate synthetase gene that spans 63 kilobases and contains at least 13 exons. The expressed gene codes for two mRNAs that differ in their 5' untranslated sequences and arise by alternative splicing involving the inclusion or deletion of an entire exon. In normal human liver and cultured fibroblasts, the predominant mature argininosuccinate synthetase mRNA lacks sequences encoded by exon 2 in the expressed gene. In contrast, the predominant argininosuccinate synthetase mRNA in baboon liver contains exon 2 sequences. A transformed canavanine-resistant human cell line in which argininosuccinate synthetase activity is 180-fold higher than that in wild-type cells contains abundant amounts of both forms of the argininosuccinate synthetase mRNA. The mRNA lacking exon 2 sequences is the more abundant mRNA species in the canavanine-resistant cells. These observations show that splicing of the argininosuccinate synthetase mRNA is species specific in primates and varies among different human cell types.This publication has 35 references indexed in Scilit:
- Detection of specific sequences among DNA fragments separated by gel electrophoresisPublished by Elsevier ,2006
- Three different fibronectin mRNAs arise by alternative splicing within the coding regionCell, 1983
- Production of a novel neuropeptide encoded by the calcitonin gene via tissue-specific RNA processingNature, 1983
- Two promoters of different strengths control the transcription of the mouse alpha-amylase gene Amy-1a in the parotid gland and the liverCell, 1983
- Alternative RNA splicing of the murine αA-crystallin gene: Protein-coding information within an intronCell, 1983
- Organization of the rat γ-fibrinogen gene: Alternative mRNA splice patterns produce the γA and γB (γ′) chains of fibrinogenCell, 1982
- Dispersion of argininosuccinate synthetase-like human genes to multiple autosomes and the X chromosomeCell, 1982
- Sequences on the human Y chromosome homologous to the autosomal gene for argininosuccinate synthetaseNature, 1982
- Two differentially regulated mRNAs with different 5′ ends encode secreted and intracellular forms of yeast invertaseCell, 1982
- Transcription and RNA processing by the DNA tumour virusesNature, 1980