Genetic variation in mRNA coding sequences of highly conserved genes

Author:

TEN ASBROEK ANNELOOR L. M. A.1,OLSEN JEFFREY2,HOUSMAN DAVID3,BAAS FRANK1,STANTON VINCE2

Affiliation:

1. Neurozintuigen Laboratory, Academic Medical Center, 1105 AZ, Amsterdam, The Netherlands

2. Variagenics, Cambridge 02139-1562

3. Center for Cancer Research, Massachusetts Institute of Technology, Cambridge, Massachusetts 02140

Abstract

The frequency and distribution of genetic polymorphism in the human genome is a question of major importance. We have studied this in highly conserved genes, which encode crucial functions such as DNA replication, mRNA transcription, and translation. Evolutionary comparisons suggest that these genes are under particularly strong selective pressure, and their frequency of nucleotide sequence polymorphism would be expected to represent a minimum estimate for sequence variation throughout the genome. We have analyzed the complete coding sequence and the 3′-untranslated region (3′-UTR) of 22 human genes, most of which have homologs in all cellular organisms and all of which are at least 25% amino acid identical to homologs in yeast. Comparisons with similar studies of less conserved human disease genes indicate that 1) evolutionarily conserved genes are, on average, less polymorphic than disease related genes; 2) the difference in polymorphism levels is attributable almost entirely to reduced levels of variation in protein coding sequences, whereas noncoding sequences have similar levels of polymorphism; and 3) the character of polymorphism, in terms of the spectrum and frequency of mutational changes, is similar.

Publisher

American Physiological Society

Subject

Genetics,Physiology

Reference20 articles.

1. Sequence Diversity in 36 Candidate Genes for Cardiovascular Disorders

2. Characterization of single-nucleotide polymorphisms in coding regions of human genes

3. Variations on a Theme: Cataloging Human DNA Sequence Variation

4. Cooper D, Krawczak M, and Antonarakis SE. The nature and mechanism of human gene mutation. In: The Metabolic Basis of Inherited Disease (7th ed.), edited by Scriver CR, Beaudet AL, Sly WS, and Valle D. 1995, p. 259–292.

5. Base-Calling of Automated Sequencer Traces UsingPhred. I. Accuracy Assessment

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