A functional analysis of mouse models of cardiac disease through metabolic profiling

被引:47
作者
Jones, GLAH
Sang, E
Goddard, C
Mortishire-Smith, RJ
Sweatman, BC
Haselden, JN
Davies, K
Grace, AA
Clarke, K
Griffin, JL
机构
[1] Univ Cambridge, Dept Biochem, Cambridge CB2 1GA, England
[2] Univ Oxford, Physiol Lab, Oxford OX1 3PT, England
[3] Univ Cambridge, Dept Physiol, Cambridge CB2 1QW, England
[4] Merck Sharp & Dohme Ltd, Ctr Neurosci, Harlow CM20 2QR, Essex, England
[5] GlaxoSmithKline, Metabon Grp, Ware SG12 0DP, Herts, England
[6] Univ Oxford, Dept Genet, Oxford OX1 3QX, England
关键词
D O I
10.1074/jbc.M410200200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Since the completion of the human and mouse genomes, the focus in mammalian biology has been on assessing gene function. Tools are needed for assessing the phenotypes of the many mouse models that are now being generated, where genes have been "knocked out," "knocked in," or mutated, so that gene expression can be understood in its biological context. Metabolic profiling of cardiac tissue through high resolution NMR spectroscopy in conjunction with multivariate statistics has been used to classify mouse models of cardiac disease. The data sets included metabolic profiles from mouse models of Duchenne muscular dystrophy, two models of cardiac arrhythmia, and one of cardiac hypertrophy. The metabolic profiles demonstrate that the strain background is an important component of the global metabolic phenotype of a mouse, providing insight into how a given gene deletion may result in very different responses in diverse populations. Despite these differences associated with strain, multivariate statistics were capable of separating each mouse model from its control strain, demonstrating that metabolic profiles could be generated for each disease. Thus, this approach is a rapid method of phenotyping mouse models of disease.
引用
收藏
页码:7530 / 7539
页数:10
相关论文
共 41 条
[1]  
ANTHONY ML, 1994, MOL PHARMACOL, V46, P199
[2]   MLP-deficient mice exhibit a disruption of cardiac cytoarchitectural organization, dilated cardiomyopathy, and heart failure [J].
Arber, S ;
Hunter, JJ ;
Ross, J ;
Hongo, M ;
Sansig, G ;
Borg, J ;
Perriard, JC ;
Chien, KR ;
Caroni, P .
CELL, 1997, 88 (03) :393-403
[3]   Nuclear magnetic resonance spectroscopic and principal components analysis investigations into biochemical effects of three model hepatotoxins [J].
Beckwith-Hall, BM ;
Nicholson, JK ;
Nicholls, AW ;
Foxall, PJD ;
Lindon, JC ;
Connor, SC ;
Abdi, M ;
Connelly, J ;
Holmes, E .
CHEMICAL RESEARCH IN TOXICOLOGY, 1998, 11 (04) :260-272
[4]   Strain-dependent variation in vascular responses to nitric oxide in the isolated murine heart [J].
Bendall, JK ;
Heymes, C ;
Wright, TJF ;
Wheatcroft, S ;
Grieve, DJ ;
Shah, AM ;
Cave, AC .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2002, 34 (10) :1325-1333
[5]  
Brindle JT, 2002, NAT MED, V8, P1439, DOI 10.1038/nm802
[6]   Application of chemometrics to 1H NMR spectroscopic data to investigate a relationship between human serum metabolic profiles and hypertension [J].
Brindle, JT ;
Nicholson, JK ;
Schofield, PM ;
Grainger, DJ ;
Holmes, E .
ANALYST, 2003, 128 (01) :32-36
[7]  
BRINDLE KM, 2003, BIOCHEMIST, V25, P15
[8]   X-CHROMOSOME-LINKED MUSCULAR-DYSTROPHY (MDX) IN THE MOUSE [J].
BULFIELD, G ;
SILLER, WG ;
WIGHT, PAL ;
MOORE, KJ .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1984, 81 (04) :1189-1192
[9]   Muscular dystrophy - Reason for optimism? [J].
Burton, EA ;
Davies, KE .
CELL, 2002, 108 (01) :5-8
[10]   An optimized protocol for metabolome analysis in yeast using direct infusion electrospray mass spectrometry [J].
Castrillo, JI ;
Hayes, A ;
Mohammed, S ;
Gaskell, SJ ;
Oliver, SG .
PHYTOCHEMISTRY, 2003, 62 (06) :929-937