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QTL mapping in a mouse model of cardiomyopathy reveals an ancestral modifier allele affecting heart function and survival.

Publication ,  Journal Article
Wheeler, FC; Fernandez, L; Carlson, KM; Wolf, MJ; Rockman, HA; Marchuk, DA
Published in: Mamm Genome
June 2005

The progression from myocardial hypertrophy to heart failure is a complex process, involving genetic and environmental factors. Elucidating the genetic components contributing to heart failure has been difficult, largely because of the heterogeneity of human populations. We have employed a strategy to map genetic loci that modify the heart failure phenotype in a transgenic mouse model of cardiomyopathy caused by cardiac-specific overexpression of calsequestrin. Strain-specific differences in both cardiac function and survival are observed when the transgene is moved into different inbred mouse strains. We have previously reported linkage results from mapping in reciprocal backcrosses between C57/BL6 (BL6) and DBA/2J (DBA) and a backcross between DBA/AKR and AKR. Here we report the results of a genome-wide linkage scan in the reciprocal backcross between DBA/AKR and DBA. We identified one novel locus on Chromosome (Chr) 18 that affects heart function and a second on Chr 3 that shows significant linkage to both survival and heart function. Intriguingly, the Chr 3 allele of AKR shows a susceptibility effect on phenotype, whereas the overall effect of the AKR genetic background is protective. The Chr 3 locus also completely overlaps the Hrtfm2 locus, which was previously mapped in crosses between DBA and BL6. Mapping the same QTL in two different crosses allowed us to use ancestral haplotypes to narrow the candidate gene interval from 9 to 2 Mb. Identification of the genes at these QTLs in the mouse will provide novel candidate genes that can be evaluated for their role in human heart failure.

Duke Scholars

Published In

Mamm Genome

DOI

ISSN

0938-8990

Publication Date

June 2005

Volume

16

Issue

6

Start / End Page

414 / 423

Location

United States

Related Subject Headings

  • Survival Analysis
  • Quantitative Trait Loci
  • Phenotype
  • Microsatellite Repeats
  • Mice, Inbred DBA
  • Mice, Inbred AKR
  • Mice
  • Lod Score
  • Heart Ventricles
  • Heart
 

Citation

APA
Chicago
ICMJE
MLA
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Wheeler, F. C., Fernandez, L., Carlson, K. M., Wolf, M. J., Rockman, H. A., & Marchuk, D. A. (2005). QTL mapping in a mouse model of cardiomyopathy reveals an ancestral modifier allele affecting heart function and survival. Mamm Genome, 16(6), 414–423. https://doi.org/10.1007/s00335-005-2468-7
Wheeler, Ferrin C., Liliana Fernandez, Kerri M. Carlson, Matthew J. Wolf, Howard A. Rockman, and Douglas A. Marchuk. “QTL mapping in a mouse model of cardiomyopathy reveals an ancestral modifier allele affecting heart function and survival.Mamm Genome 16, no. 6 (June 2005): 414–23. https://doi.org/10.1007/s00335-005-2468-7.
Wheeler FC, Fernandez L, Carlson KM, Wolf MJ, Rockman HA, Marchuk DA. QTL mapping in a mouse model of cardiomyopathy reveals an ancestral modifier allele affecting heart function and survival. Mamm Genome. 2005 Jun;16(6):414–23.
Wheeler, Ferrin C., et al. “QTL mapping in a mouse model of cardiomyopathy reveals an ancestral modifier allele affecting heart function and survival.Mamm Genome, vol. 16, no. 6, June 2005, pp. 414–23. Pubmed, doi:10.1007/s00335-005-2468-7.
Wheeler FC, Fernandez L, Carlson KM, Wolf MJ, Rockman HA, Marchuk DA. QTL mapping in a mouse model of cardiomyopathy reveals an ancestral modifier allele affecting heart function and survival. Mamm Genome. 2005 Jun;16(6):414–423.
Journal cover image

Published In

Mamm Genome

DOI

ISSN

0938-8990

Publication Date

June 2005

Volume

16

Issue

6

Start / End Page

414 / 423

Location

United States

Related Subject Headings

  • Survival Analysis
  • Quantitative Trait Loci
  • Phenotype
  • Microsatellite Repeats
  • Mice, Inbred DBA
  • Mice, Inbred AKR
  • Mice
  • Lod Score
  • Heart Ventricles
  • Heart