The ability of cells to utilize oxygen as an electron acceptor (aerobic metabolism) for energy transfer defines a major aspect of our biology at all levels of organization. The investigators developed rat models for low and high intrinsic (untrained) aerobic capacity and have had numerous requests for samples of these rats to study. These models were started in 1996 from a founder population of 168 N:NIH rats. Divergent artificial selective breeding was applied to create low and high lines that contrast for aerobic treadmill running capacity. After ten generations of selection, the investigators recorded a 317% difference in aerobic capacity between the low and high lines. The investigators request the resources to create, phenotype, and provide these animals, their tissues, and parental DNA for others to study. Appended to this grant are requests from 23 investigators to use these models to answer previously unexplorable questions such as: 1) What phenotypes are associated exclusively with intrinsic (i.e., untrained) aerobic capacity? 2) Will differential expression analysis reveal previously unsuspected pathways that contribute to intrinsic aerobic capacity? 3) To what extent does the positive association between aerobic capacity and health accrue from intrinsic capacity relative to trained capacity? 4) What health-related traits correlate with intrinsic capacity, such as longevity or resistance to diabetes mellitus, hypertension, heart disease, obesity, cancer, or infective agents? The investigators present here as an example, detailed plans to provide the models for initial collaborations with three experienced teams: 1) Drs. William L. Rall and Carl Hansen will establish a bank of cryopreserved embryos and store them in a low-temperature repository; 2) Drs. Peter Wagner and Noberto Gonzales will measure the conductance properties of each step of the 2 transport path from the air to the mitochondria of skeletal muscle; and 3) Drs. Peter Bouchard and Noberto Rankinen will evaluate differential messenger RNA expression using large-scale micro-array technology in 11 tissues. Subsequently, the investigators propose to escalate their plan in order to provide low and high aerobic rats as a resource for a minimum of 43 major studies over five years. [Since last submission the investigators have: 1) acquired more space for the rat colony quarantine barrier area to assure adequacy for growth, and 2) upgraded the sentinel surveillance program to substantially increase the monitoring of the health status of our colony.]

Agency
National Institute of Health (NIH)
Institute
National Center for Research Resources (NCRR)
Type
Resource-Related Research Projects (R24)
Project #
5R24RR017718-05
Application #
7062139
Study Section
National Center for Research Resources Initial Review Group (RIRG)
Program Officer
O'Neill, Raymond R
Project Start
2003-02-01
Project End
2008-01-31
Budget Start
2006-02-01
Budget End
2007-01-31
Support Year
5
Fiscal Year
2006
Total Cost
$446,722
Indirect Cost
Name
University of Michigan Ann Arbor
Department
Physical Medicine & Rehab
Type
Schools of Medicine
DUNS #
073133571
City
Ann Arbor
State
MI
Country
United States
Zip Code
48109
Falegan, Oluyemi S; Vogel, Hans J; Hittel, Dustin S et al. (2017) High Aerobic Capacity Mitigates Changes in the Plasma Metabolomic Profile Associated with Aging. J Proteome Res 16:798-805
Chandrasekaran, Krish; Muragundla, Anjaneyulu; Demarest, Tyler G et al. (2017) mGluR2/3 activation of the SIRT1 axis preserves mitochondrial function in diabetic neuropathy. Ann Clin Transl Neurol 4:844-858
Burghardt, P R; Krolewski, D M; Dykhuis, K E et al. (2016) Nucleus accumbens cocaine-amphetamine regulated transcript mediates food intake during novelty conflict. Physiol Behav 158:76-84
Vieira-Potter, Victoria J; Padilla, Jaume; Park, Young-Min et al. (2015) Female rats selectively bred for high intrinsic aerobic fitness are protected from ovariectomy-associated metabolic dysfunction. Am J Physiol Regul Integr Comp Physiol 308:R530-42
Hart, Nikolett; Sarga, Linda; Csende, Zsolt et al. (2014) Resveratrol attenuates exercise-induced adaptive responses in rats selectively bred for low running performance. Dose Response 12:57-71
Gavini, Chaitanya K; Mukherjee, Sromona; Shukla, Charu et al. (2014) Leanness and heightened nonresting energy expenditure: role of skeletal muscle activity thermogenesis. Am J Physiol Endocrinol Metab 306:E635-47
Torma, Ferenc; Koltai, Erika; Nagy, Enik? et al. (2014) Exercise Increases Markers of Spermatogenesis in Rats Selectively Bred for Low Running Capacity. PLoS One 9:e114075
Choi, Joungil; Chandrasekaran, Krish; Demarest, Tyler G et al. (2014) Brain diabetic neurodegeneration segregates with low intrinsic aerobic capacity. Ann Clin Transl Neurol 1:589-604
Torma, Ferenc; Bori, Zoltan; Koltai, Erika et al. (2014) Eating habits modulate short term memory and epigenetical regulation of brain derived neurotrophic factor in hippocampus of low- and high running capacity rats. Brain Res Bull 107:54-60
Burniston, Jatin G; Kenyani, Jenna; Gray, Donna et al. (2014) Conditional independence mapping of DIGE data reveals PDIA3 protein species as key nodes associated with muscle aerobic capacity. J Proteomics 106:230-45

Showing the most recent 10 out of 86 publications