Mapping the genetic determinants of hypertension, metabolic diseases, and related phenotypes in the lyon hypertensive rat

被引:45
作者
Bilusic, M
Bataillard, A
Tschannen, MR
Gao, L
Barreto, NE
Vincent, M
Wang, T
Jacob, HJ
Sassard, J
Kwitek, AE
机构
[1] Med Coll Wisconsin, Dept Physiol, HMGC, Milwaukee, WI 53226 USA
[2] Med Coll Wisconsin, Human & Mol Genet Ctr, Milwaukee, WI 53226 USA
[3] Med Coll Wisconsin, Div Biostat, Milwaukee, WI 53226 USA
[4] Univ Lyon 1, Fac Pharm, F-69365 Lyon, France
关键词
genetics; linkage analysis; metabolism; hypertension; genetic; rats; inbred strains; cardiovascular diseases;
D O I
10.1161/01.HYP.0000144542.57306.5e
中图分类号
R6 [外科学];
学科分类号
1002 ; 100210 ;
摘要
The complex nature of hypertension makes identifying the pathophysiology and its genetic contributions a challenging task. One powerful approach for the genetic dissection of blood pressure regulation is studying inbred rat models of hypertension, as they provide natural allele variants but reduced heterogeneity (both genetic and etiologic). Furthermore, the detailed physiologic studies to which the rat is amenable allow for the determination of intermediate phenotypes. We have performed a total genome scan in offspring of an F-2 intercross between the Lyon hypertensive (LH) and Lyon normotensive rat strains to identify linkage of anthropometric, blood pressure, renal, metabolic, and endocrine phenotypes. Quantitative trait locus (QTL) regions involved in blood pressure regulation, end-stage organ damage, body and organ weight, and lipid metabolism in the LH rat were identified on chromosomes 1, 2, 3, 5, 7, 10, 13, and 17, with 2 phenotypes associated with the metabolic syndrome identified on chromosomes 1 and 17. Regions on chromosomes 2, 13, and 17 were revealed to be important for blood pressure regulation. Regions on chromosome 17 were found to significantly contribute to both metabolic homeostasis and blood pressure regulation; 2 aggregates of a total of 23 QTLs were identified, including several "intermediate phenotypes." These intermediate phenotypes may be used as closer surrogates to the mechanisms leading to hypertension and metabolic dysfunction in the LH rat.
引用
收藏
页码:695 / 701
页数:7
相关论文
共 33 条
[1]  
[Anonymous], TXB HYPERTENSION
[2]   Genetic mapping of soluble guanylyl cyclase genes - Implications for linkage to blood pressure in the Dahl rat [J].
Azam, M ;
Gupta, G ;
Chen, W ;
Wellington, S ;
Warburton, D ;
Danziger, RS .
HYPERTENSION, 1998, 32 (01) :149-154
[3]   Renal disease susceptibility and hypertension are under independent genetic control in the fawn-hooded rat [J].
Brown, DM ;
Provoost, AP ;
Daly, MJ ;
Lander, ES ;
Jacob, HJ .
NATURE GENETICS, 1996, 12 (01) :44-51
[4]   Experimental strategies for the genetic dissection of complex traits in animal models [J].
Darvasi, A .
NATURE GENETICS, 1998, 18 (01) :19-24
[5]   GENETIC-DETERMINANTS OF DIASTOLIC AND PULSE PRESSURE MAP TO DIFFERENT LOCI IN LYON HYPERTENSIVE RATS [J].
DUBAY, C ;
VINCENT, M ;
SAMANI, NJ ;
HILBERT, P ;
KAISER, MA ;
BERESSI, JP ;
KOTELEVTSEV, Y ;
BECKMANN, JS ;
SOUBRIER, F ;
SASSARD, J ;
LATHROP, GM .
NATURE GENETICS, 1993, 3 (04) :354-357
[6]   Time-course genetic analysis of albuminuria in Dahl salt-sensitive rats on low-salt diet [J].
Garrett, MR ;
Dene, H ;
Rapp, JP .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2003, 14 (05) :1175-1187
[7]   Genome scan and congenic strains for blood pressure QTL using Dahl salt-sensitive rats [J].
Garrett, MR ;
Dene, H ;
Walder, R ;
Zhang, QY ;
Cicila, GT ;
Assadnia, S ;
Deng, AY ;
Rapp, JP .
GENOME RESEARCH, 1998, 8 (07) :711-723
[8]   Chromosomal mapping of genetic loci associated with non-insulin dependent diabetes in the GK rat [J].
Gauguier, D ;
Froguel, P ;
Parent, V ;
Bernard, C ;
Bihoreau, MT ;
Portha, B ;
James, MR ;
Penicaud, L ;
Lathrop, M ;
Ktorza, A .
NATURE GENETICS, 1996, 12 (01) :38-43
[9]   Genome sequence of the Brown Norway rat yields insights into mammalian evolution [J].
Gibbs, RA ;
Weinstock, GM ;
Metzker, ML ;
Muzny, DM ;
Sodergren, EJ ;
Scherer, S ;
Scott, G ;
Steffen, D ;
Worley, KC ;
Burch, PE ;
Okwuonu, G ;
Hines, S ;
Lewis, L ;
DeRamo, C ;
Delgado, O ;
Dugan-Rocha, S ;
Miner, G ;
Morgan, M ;
Hawes, A ;
Gill, R ;
Holt, RA ;
Adams, MD ;
Amanatides, PG ;
Baden-Tillson, H ;
Barnstead, M ;
Chin, S ;
Evans, CA ;
Ferriera, S ;
Fosler, C ;
Glodek, A ;
Gu, ZP ;
Jennings, D ;
Kraft, CL ;
Nguyen, T ;
Pfannkoch, CM ;
Sitter, C ;
Sutton, GG ;
Venter, JC ;
Woodage, T ;
Smith, D ;
Lee, HM ;
Gustafson, E ;
Cahill, P ;
Kana, A ;
Doucette-Stamm, L ;
Weinstock, K ;
Fechtel, K ;
Weiss, RB ;
Dunn, DM ;
Green, ED .
NATURE, 2004, 428 (6982) :493-521
[10]   The dysmetabolic syndrome [J].
Groop, L ;
Orho-Melander, M .
JOURNAL OF INTERNAL MEDICINE, 2001, 250 (02) :105-120