Organization and expression of H1 histone and H1 replacement histone genes
- 1 April 1994
- journal article
- review article
- Published by Wiley in Journal of Cellular Biochemistry
- Vol. 54 (4) , 423-431
- https://doi.org/10.1002/jcb.240540409
Abstract
The H1 family is the most divergent subgroup of the highly conserved class of histone proteins [Cole: Int J Pept Protein Res 30:433–449, 1987]. In several vertebrate species, the H1 complement comprises five or more subtypes, and tissue specific patterns of H1 histones have been described. The diversity of the H1 histone family raises questions about the functions of different H1 subtypes and about the differential control of expression of their genes. The expression of main type H1 genes is coordinated with DNA replication, whereas the regulation of synthesis of replacement H1 subtypes, such as H1° and H5, and the testis specific H1t appears to be more complex. The differential control of H1 gene expression is reflected in the chromosomal organization of the genes and in different promoter structures. This review concentrates on a comparison of the chromosomal organization of main type and replacement H1 histone genes and on the differential regulation of their expression. General structural and functional data, which apply to both H1 and core histone genes and which are covered by recent reviews, will not be discussed in detail.Keywords
This publication has 97 references indexed in Scilit:
- Temporal correlation between the appearance of testis-specific DNA-binding proteins and the onset of transcription of the testis-specific histone H1t geneExperimental Cell Research, 1992
- Structure and expression of the human gene encoding testicular H1 histone (H1t)Gene, 1991
- The expression of the histone H1° gene in the human hepatoma cell line HepG2 is independent of the state of cell proliferationDifferentiation, 1990
- Histone H1 subtype-specific consensus elements mediate cell cycle-regulated transcription in vitro.Genes & Development, 1989
- Cloning and characterization of the mouse histone H10 promoter regionGene, 1989
- Histone H5 in the Control of DNA Synthesis and Cell ProliferationScience, 1989
- Genomic organization and nucleotide sequence of two distinct histone gene clusters from Xenopus laevisJournal of Molecular Biology, 1985
- Association of histone H10 with a gene repressed during liver developmentNature, 1985
- Variations in the organization of human genomic DNA segments containing H1 histone genesBiochemical and Biophysical Research Communications, 1984
- Accumulation of Histone H1° during Chemically Induced Differentiation of Murine Neuroblastoma CellsEuropean Journal of Biochemistry, 1981