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ATP-sensitive K+ channel knockout compromises the metabolic benefit of exercise training, resulting in cardiac deficits.

Authors :
Kane GC
Behfar A
Yamada S
Perez-Terzic C
O'Cochlain F
Reyes S
Dzeja PP
Miki T
Seino S
Terzic A
Source :
Diabetes [Diabetes] 2004 Dec; Vol. 53 Suppl 3, pp. S169-75.
Publication Year :
2004

Abstract

Exercise training elicits a metabolic and cardiovascular response that underlies fitness. The molecular mechanisms that orchestrate this adaptive response and secure the wide-ranging gains of a regimented exercise program are poorly understood. Formed through association of the Kir6.2 pore and the sulfonylurea receptor, the stress-responsive ATP-sensitive K(+) channels (K(ATP) channels), with their metabolic-sensing capability and broad tissue expression, are potential candidates for integrating the systemic adaptive response to repetitive exercise. Here, the responses of mice lacking functional Kir6.2-containing K(ATP) channels (Kir6.2-KO) were compared with wild-type controls following a 28-day endurance swimming protocol. While chronic aquatic training resulted in lighter, leaner, and fitter wild-type animals, the Kir6.2-KO manifested less augmentation in exercise capacity and lacked metabolic improvement in body fat composition and glycemic handling with myocellular defects. Moreover, the repetitive stress of swimming unmasked a survival disadvantage in the Kir6.2-KO, associated with pathologic calcium-dependent structural damage in the heart and impaired cardiac performance. Thus, Kir6.2-containing K(ATP) channel activity is required for attainment of the physiologic benefits of exercise training without injury.

Details

Language :
English
ISSN :
0012-1797
Volume :
53 Suppl 3
Database :
MEDLINE
Journal :
Diabetes
Publication Type :
Academic Journal
Accession number :
15561907
Full Text :
https://doi.org/10.2337/diabetes.53.suppl_3.s169