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Beta2-adrenergic receptor allele frequencies in the Quechua, a high altitude native population

Published online by Cambridge University Press:  01 March 2000

J. L. RUPERT
Affiliation:
Department of Zoology, University of British Columbia, Vancouver, B.C. Canada V6T 1Z4
M. V. MONSALVE
Affiliation:
Department of Anthropology, University of British Columbia, Vancouver, B.C. Canada V6T 1Z4 Departments of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, B.C. Canada V6T 1Z4
D. V. DEVINE
Affiliation:
Departments of Pathology and Laboratory Medicine, University of British Columbia, Vancouver, B.C. Canada V6T 1Z4
P. W. HOCHACHKA
Affiliation:
Department of Zoology, University of British Columbia, Vancouver, B.C. Canada V6T 1Z4
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Abstract

The beta2-adrenergic receptor is involved in the control of numerous physiological processes and, as the primary catecholamine receptor in the lungs, is of particular importance in the regulation of pulmonary function. There are several polymorphic loci in the beta2-adrenergic receptor gene that have alleles that alter receptor function, including two (A/G46, G/C79) that increase agonist sensitivity. As such a phenotype may increase vaso and bronchial dilation, thereby facilitating air and blood flow through the lungs, we hypothesized that selection may have favoured these alleles in high altitude populations as part of an adaptive strategy to deal with the hypoxic conditions characteristic of such environments. We tested this hypothesis by determining the allele frequencies for these two polymorphisms, as well one additional missense mutation (C/T491) and two silent mutations (G/A252 and C/A523) in 63 Quechua speaking natives from communities located between 3200 and 4200 m on the Peruvian altiplano. These frequencies were compared with those of two lowland populations, one native American (Na-Dene from the west coast of Canada) and one Caucasian of Western European descent. The Quechua manifest many of the pulmonary characteristics of high altitude populations and differences in allele frequencies between the Quechua and lowlanders could be indicative of a selective advantage conferred by certain genotypes in high altitude environments. Allele frequencies varied between populations at some loci and patterns of linkage disequilibrium differed between the old-world and new-world samples; however, as these populations are not closely related, significant variation would be expected due to stochastic effects alone. Neither of the alleles associated with increased receptor sensitivity (A46, G79) was significantly over-represented in the Quechua compared with either lowland group. The Quechua were monomorphic for the C allele at base 79. This variant has been associated with body mass index; however no clearly defined metabolic phenotype has been established. In addition, we sequenced the coding region of the gene in three unrelated Quechua to determine if there were any other polymorphisms common in this population. None were detected.

Type
Research Article
Copyright
© University College London 2000

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