CU Molecular, Cellular, and Developmental Biology
MCDB Home > faculty > FacultyPublications > LeinwandLAPublications > Expression of cardiac troponin T with CO ... on kinetics in mouse myocardium
Document Actions

Expression of cardiac troponin T with CO ... on kinetics in mouse myocardium


Expression of cardiac troponin T with COOH-terminal truncation accelerates cross-bridge interaction kinetics in mouse myocardium.

24

Transgenic mice expressing an allele of cardiac troponin T (cTnT) with a COOH-terminal truncation (cTnT(trunc)) exhibit severe diastolic and mild systolic dysfunction. We tested the hypothesis that contractile dysfunction in myocardium expressing low levels of cTnT(trunc) (i.e., <5%) is due to slowed cross-bridge kinetics and reduced thin filament activation as a consequence of reduced cross-bridge binding. We measured the Ca(2+) sensitivity of force development [pCa for half-maximal tension generation (pCa(50))] and the rate constant of force redevelopment (k(tr)) in cTnT(trunc) and wild-type (WT) skinned myocardium both in the absence and in the presence of a strong-binding, non-force-generating derivative of myosin subfragment-1 (NEM-S1). Compared with WT mice, cTnT(trunc) mice exhibited greater pCa(50), reduced steepness of the force-pCa relationship [Hill coefficient (n(H))], and faster k(tr) at submaximal Ca(2+) concentration ([Ca(2+)]), i.e., reduced activation dependence of k(tr). Treatment with NEM-S1 elicited similar increases in pCa(50) and similar reductions in n(H) in WT and cTnT(trunc) myocardium but elicited greater increases in k(tr) at submaximal activation in cTnT(trunc) myocardium. Contrary to our initial hypothesis, cTnT(trunc) appears to enhance thin filament activation in myocardium, which is manifested as significant increases in Ca(2+)-activated force and the rate of cross-bridge attachment at submaximal [Ca(2+)]. Although these mechanisms would not be expected to depress systolic function per se in cTnT(trunc) hearts, they would account for slowed rates of myocardial relaxation during early diastole.


Stelzer JE, Patel JR, Olsson MC, Fitzsimons DP, Leinwand LA, Moss RL

American journal of physiology. Heart and circulatory physiology

2004-10-01 00:00

287

4

H1756-61

Animals,Calcium,Cross-Linking Reagents,Kinetics,Mice,Mice, Transgenic,Microfilaments,Mutagenesis,Myocardial Contraction,Myocardium,Myosin Subfragments,Protein Structure, Tertiary,Troponin T,Cross-Linking Reagents,Myosin Subfragments,Troponin T,Calcium

Dept of Physiology, University of Wisconsin School of Medicine, 1300 University Avenue, Madison, WI 53706, USA stelzerphysiologywiscedu

Am. J. Physiol. Heart Circ. Physiol.


0363-6135

10.1152/ajpheart.00172.2004

00172.2004

713

True

15165990

University of Colorado Contact Us  |   Legal & Trademarks  |  Privacy