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Physiol. Genomics 8: 15-21, 2002. First published November 15, 2001; doi:10.1152/physiolgenomics.00057.2001
1094-8341/02 $5.00
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Received 13 July 2001; accepted in final form 12 November 2001.
Physiological Genomics 8:15-21 (2002)
1094-8341/02 $5.00 © 2002 American Physiological Society

Chromosome 1 blood pressure QTL region influences renal function curve and salt sensitivity in SHR

MING LO1, KIAO LING LIU1, JENNIFER-REBECCA CLEMITSON2, JEAN SASSARD1 and NILESH J. SAMANI2

1 Département de Physiologie et Pharmacologie Clinique, Centre National de la Recherche Scientifique UMR 5014, Faculté de Pharmacie, 69373 Lyon cedex 08, France;
2 Department of Cardiology, Glenfield General Hospital, University of Leicester, Leicester LE3 9QP, United Kingdom

One or more quantitative trait locus (QTL) for blood pressure (BP) exists on rat chromosome 1, in the vicinity of the Sa gene. The present work examined whether this QTL region: 1) alters pressure-natriuresis relationship and 2) affects the BP response to salt load. Male spontaneously hypertensive rats (SHR), Wistar-Kyoto (WKY) rats, and rats from an SHR congenic strain that contains a WKY chromosome 1 segment spanning the BP QTL region (SHR. WKY-Sa) were used. In an acute study in anesthetized animals, renal function was measured at several levels of renal perfusion pressure. In a chronic study, BP was measured in freely moving rats using telemetry during normal and high sodium intake (2% NaCl as drinking water for 2 wk). WKY rats showed a significantly higher glomerular filtration rate and increased pressure-natriuresis compared with SHR. SHR.WKY-Sa also demonstrated an increased glomerular filtration rate and enhanced pressure-natriuresis, associated with a lower tubular sodium reabsorption, compared with SHR. These modifications were accompanied by a lower basal BP in SHR.WKY-Sa compared with SHR and a markedly reduced BP response to salt load. These findings suggest that the BP QTL(s) present in this region of chromosome 1 influences BP and salt sensitivity, at least partly, by modulating pressure-natriuresis.

genetic hypertension; congenic strain; kidney




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