The chromosomal arrangement of human alpha-like globin genes: sequence homology and alpha-globin gene deletions. 1980

J Lauer, and C K Shen, and T Maniatis

We report the isolation of a cluster of four alpha-like globin genes from a bacteriophage lambda library of human DNA (Lawn et al., 1978). Analysis of the cloned DNA confirms the linkage arrangement of the two adult alpha-globin genes (alpha 1 and alpha 2) previously derived from genomic blotting experiments (Orkin, 1978) and identifies two additional closely linked alpha-like genes. The nucleotide sequence of a portion of each of these alpha-like genes was determined. One of these sequences is tentatively identified as an embryonic zeta-globin gene (zeta 1) by comparison with structural data derived from purified zeta-globin protein (J. Clegg, personal communication), while the other sequence cannot be matched with any known alpha-like polypeptide sequence (we designate this sequence phi alpha 1). Localization of the four alpha-like sequences on a restriction map of the gene cluster indicates that the genes have the same transcriptional orientation and are arranged in the order 5'-zeta 1-phi alpha 1-alpha 2-alpha 1-3'. Genomic blotting experiments identified a second, nonallelic zeta-like globin gene (phi 2) located 10-12 kb 5' to the cloned zeta-globin gene. Comparison of the locations of restriction sites within alpha 1 and alpha 2 and heteroduplex studies reveal extensive sequence homology within and flanking the two genes. The homologous sequences, which are interrupted by two blocks of nonhomology, span a region of approximately 4 kb. This extensive sequence homology between two genes which are thought to be the products of an ancient duplication event suggests the existence of a mechanism for sequence matching during evolution. One consequence of this arrangement of homologous sequences is the occurrence of two types of deletions in recombinant phage DNA during propagation in E. coli. The locations and sizes of the two types of deletions are indistinguishable from those of the two types of deletions associated with alpha-thalassemia 2 (Embury et al., 1979; Orkin et al., 1979; S. Embury et al., manuscript submitted). This information strongly suggests that the genetic disease is a consequence of unequal crossing over between homologous sequences within and/or surrounding the two adult alpha-globin genes.

UI MeSH Term Description Entries
D008040 Genetic Linkage The co-inheritance of two or more non-allelic GENES due to their being located more or less closely on the same CHROMOSOME. Genetic Linkage Analysis,Linkage, Genetic,Analyses, Genetic Linkage,Analysis, Genetic Linkage,Genetic Linkage Analyses,Linkage Analyses, Genetic,Linkage Analysis, Genetic
D009693 Nucleic Acid Hybridization Widely used technique which exploits the ability of complementary sequences in single-stranded DNAs or RNAs to pair with each other to form a double helix. Hybridization can take place between two complimentary DNA sequences, between a single-stranded DNA and a complementary RNA, or between two RNA sequences. The technique is used to detect and isolate specific sequences, measure homology, or define other characteristics of one or both strands. (Kendrew, Encyclopedia of Molecular Biology, 1994, p503) Genomic Hybridization,Acid Hybridization, Nucleic,Acid Hybridizations, Nucleic,Genomic Hybridizations,Hybridization, Genomic,Hybridization, Nucleic Acid,Hybridizations, Genomic,Hybridizations, Nucleic Acid,Nucleic Acid Hybridizations
D010582 Bacteriophage lambda A temperate inducible phage and type species of the genus lambda-like viruses, in the family SIPHOVIRIDAE. Its natural host is E. coli K12. Its VIRION contains linear double-stranded DNA with single-stranded 12-base 5' sticky ends. The DNA circularizes on infection. Coliphage lambda,Enterobacteria phage lambda,Phage lambda,lambda Phage
D002872 Chromosome Deletion Actual loss of portion of a chromosome. Monosomy, Partial,Partial Monosomy,Deletion, Chromosome,Deletions, Chromosome,Monosomies, Partial,Partial Monosomies
D003001 Cloning, Molecular The insertion of recombinant DNA molecules from prokaryotic and/or eukaryotic sources into a replicating vehicle, such as a plasmid or virus vector, and the introduction of the resultant hybrid molecules into recipient cells without altering the viability of those cells. Molecular Cloning
D004274 DNA, Recombinant Biologically active DNA which has been formed by the in vitro joining of segments of DNA from different sources. It includes the recombination joint or edge of a heteroduplex region where two recombining DNA molecules are connected. Genes, Spliced,Recombinant DNA,Spliced Gene,Recombinant DNA Research,Recombination Joint,DNA Research, Recombinant,Gene, Spliced,Joint, Recombination,Research, Recombinant DNA,Spliced Genes
D005075 Biological Evolution The process of cumulative change over successive generations through which organisms acquire their distinguishing morphological and physiological characteristics. Evolution, Biological
D005796 Genes A category of nucleic acid sequences that function as units of heredity and which code for the basic instructions for the development, reproduction, and maintenance of organisms. Cistron,Gene,Genetic Materials,Cistrons,Genetic Material,Material, Genetic,Materials, Genetic
D005809 Genes, Regulator Genes which regulate or circumscribe the activity of other genes; specifically, genes which code for PROTEINS or RNAs which have GENE EXPRESSION REGULATION functions. Gene, Regulator,Regulator Gene,Regulator Genes,Regulatory Genes,Gene, Regulatory,Genes, Regulatory,Regulatory Gene
D005914 Globins A superfamily of proteins containing the globin fold which is composed of 6-8 alpha helices arranged in a characterstic HEME enclosing structure. Globin

Related Publications

J Lauer, and C K Shen, and T Maniatis
June 1981, Cell,
J Lauer, and C K Shen, and T Maniatis
January 1982, Birth defects original article series,
J Lauer, and C K Shen, and T Maniatis
January 1983, Cell,
J Lauer, and C K Shen, and T Maniatis
June 1989, Gene,
J Lauer, and C K Shen, and T Maniatis
January 1989, Progress in clinical and biological research,
J Lauer, and C K Shen, and T Maniatis
December 1979, Cell,
J Lauer, and C K Shen, and T Maniatis
January 1993, Mammalian genome : official journal of the International Mammalian Genome Society,
Copied contents to your clipboard!