Origin of a "bridge" intron in the gene for a two-domain globin.
- 1 August 1991
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 88 (15) , 6672-6676
- https://doi.org/10.1073/pnas.88.15.6672
Abstract
Red cells of the clam Barbatia reeveana express two hemoglobins, one composed of 16- to 17-kDa chains and the other of 35-kDa chains. The nucleotide sequence of the cDNA encoding the 35-kDa chain shows that the polypeptide has two very similar heme-binding domains, which are joined without use of an additional bridging sequence. Two novel introns occur in the gene for the two-domain globin: one, the "precoding" intron, is located two bases 5' from the start codon, and the other, a "bridge" intron, separates the DNA sequences encoding the two domains. Close correspondence exists between the 3' end of the precoding intron and the 3' end of the bridge intron and between parts of the 3' noncoding region of the cDNA for the two-domain globin and the 5' end of the bridge intron. These observations indicate that the bridge intron arose by unequal crossing-over between two identical or very similar genes for a single-domain globin. This conclusion, together with the proposal that exons were initially independent "minigenes" [Gilbert, W. (1987) Cold Spring Harbor Symp. Quant. Biol. 52, 901-905], suggests that many introns may have evolved from the 5' noncoding region of one gene and/or the 3' noncoding region of a second gene. This hypothesis implies that splice junctions would be associated with the original NH2 and COOH termini of proteins and provides an explanation for the observation that splice junctions usually map to protein surfaces. They do so because most NH2- and COOH-terminal residues are usually located on or near the surfaces of proteins.Keywords
This publication has 28 references indexed in Scilit:
- Evolution of a polymeric globin in the brine shrimp ArtemiaNature, 1990
- Mini-myoglobin: The structural significance of haem-ligand interactionsJournal of Molecular Biology, 1988
- Exon-Intron Organization in Genes of Earthworm and Vertebrate GlobinsScience, 1988
- Functioning haemoglobin genes in non-nodulating plantsNature, 1988
- Somatic generation of antibody diversityNature, 1983
- The seal myoglobin gene: an unusually long globin geneNature, 1983
- O2 binding properties of the product of the central exon of β-globin geneNature, 1981
- Correlation of DNA exonic regions with protein structural units in haemoglobinNature, 1981
- THE MOLECULAR GENETICS OF HUMAN HEMOGLOBINSAnnual Review of Genetics, 1980
- The relationship between coding sequences and function in haemoglobinNature, 1980