Human centromeric alphoid domains are periodically homogenized so that they vary substantially between homologues. Mechanism and implications for centromere functioning
Open Access
- 23 March 2006
- journal article
- Published by Oxford University Press (OUP) in Nucleic Acids Research
- Vol. 34 (6), 1912-1924
- https://doi.org/10.1093/nar/gkl137
Abstract
Sequence analysis of alphoid repeats from human chromosomes 17, 21 and 13 reveals recurrent diagnostic variant nucleotides. Their combinations define haplotypes, with higher order repeats (HORs) containing identical or closely-related haplotypes tandemly arranged into separate domains. The haplotypes found on homologues can be totally different, while HORs remain 99.8% homogeneous both intrachromosomally and between homologues. These results support the hypothesis, never before demonstrated, that unequal crossovers between sister chromatids accumulate to produce homogenization and amplification into tandem alphoid repeats. I propose that the molecular basis of this involves the diagnostic variant nucleotides, which enable pairing between HORs with identical or closely-related haplotypes. Domains are thus periodically renewed to maintain high intrachromosomal and interhomologue homogeneity. The capacity of a domain to form an active centromere is maintained as long as neither retrotransposons nor significant numbers of mutations affect it. In the presented model, a chromosome with an altered centromere can be transiently rescued by forming a neocentromere, until a restored, fully-competent domain is amplified de novo or rehomogenized through the accumulation of unequal crossovers.Keywords
This publication has 44 references indexed in Scilit:
- Rapid generation of long synthetic tandem repeats and its application for analysis in human artificial chromosome formationNucleic Acids Research, 2005
- Evidence for a Fast, Intrachromosomal Conversion Mechanism From Mapping of Nucleotide Variants Within a Homogeneous α-Satellite DNA ArrayGenome Research, 2002
- Alpha-satellite DNA of primates: old and new familiesChromosoma, 2001
- Transmission of a Fully Functional Human Neocentromere through Three GenerationsAmerican Journal of Human Genetics, 1999
- Evolutionarily different alphoid repeat DNA on homologous chromosomes in human and chimpanzee.Proceedings of the National Academy of Sciences, 1992
- Structural organization and polymorphism of the alpha satellite DNA sequences of chromosomes 13 and 21 as revealed by pulse field gel electrophoresisHuman Genetics, 1991
- Genomic analysis of sequence variation in tandemly repeated DNAJournal of Molecular Biology, 1990
- Patterns of intra- and interarray sequence variation in alpha satellite from the human X chromosome: Evidence for short-range homogenization of tandemly repeated DNA sequencesGenomics, 1989
- Structure of the major block of alphoid satellite DNA on the human Y chromosomeJournal of Molecular Biology, 1987
- Molecular drive: a cohesive mode of species evolutionNature, 1982