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PMID: 14595094 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

Mammalian housekeeping genes evolve more slowly than tissue-specific genes.

Molecular biology and evolution ·Vol. 21 ·No. 2 ·2004-02-00 ·Pages 236-9

Zhang L, Li WH

Abstract

Do housekeeping genes, which are turned on most of the time in almost every tissue, evolve more slowly than genes that are turned on only at specific developmental times or tissues? Recent large-scale gene expression studies enable us to have a better definition of housekeeping genes and to address the above question in detail. In this study, we examined 1581 human-mouse orthologous gene pairs for their patterns of sequence evolution, contrasting housekeeping genes with tissue-specific genes. Our results show that, in comparison to tissue-specific genes, housekeeping genes on average evolve more slowly and are under stronger selective constraints as reflected by significantly smaller values of Ka/Ks. Besides stronger purifying selection, we explored several other factors that can possibly slow down nonsynonymous rates in housekeeping genes. Although mutational bias might slightly slow the nonsynonymous rates in housekeeping genes, it is unlikely to be the major cause of the rate difference between the two types of genes. The codon usage pattern of housekeeping genes does not seem to differ from that of tissue-specific genes. Moreover, contrary to the old textbook concept, we found that approximately 74% of the housekeeping genes in our study belong to multigene families, not significantly different from that of the tissue-specific genes ( approximately 70%). Therefore, the stronger selective constraints on housekeeping genes are not due to a lower degree of genetic redundancy.

MeSH Terms
Animals Databases, Nucleic Acid Evolution, Molecular Gene Expression Regulation Genome Humans Mammals Mice Mutation Organ Specificity/genetics
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Zhang Liqing
Department of Ecology and Evolution, University of Chicago, USA.
Li Wen-Hsiung
Article Info
Journal
Molecular biology and evolution
Abbr.
Mol Biol Evol
ISSN
0737-4038
Published
2004-02-00
Epub
2003-00-31
Pages
236-9
Language
English
Region
United States
NLM ID
8501455
Subset
IM
Grants
NIGMS NIH HHS · GM30998 · United States
NIGMS NIH HHS · GM66104 · United States
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