In rat ventricular trabeculae, the magnitude of sarcomere length-dependent changes in maximum Ca2+-activated force was significantly smaller in those expressing the giant N2BA-G titin isoform compared to the wild-type N2B isoform.
The magnitude of sarcomere length-dependent changes in passive force, maximum Ca2+-activated force, Ca2+ sensitivity, and cooperativity in rat ventricles is defined by the titin isoform.
Absolute Event Rate: 5.85% vs 9.3%
p-value: p=<0.05
The effects of differential expression of titin isoforms on sarcomere length (SL)-dependent changes in passive force, maximum Ca(2+)-activated force, apparent cooperativity in activation of force (n(H)), Ca(2+) sensitivity of force (pCa(50)), and rate of force redevelopment (k(tr)) were investigated in rat cardiac muscle. Skinned right ventricular trabeculae were isolated from wild-type (WT) and mutant homozygote (Ho) hearts expressing predominantly a smaller N2B isoform (2,970 kDa) and a giant N2BA-G isoform (3,830 kDa), respectively. Stretching WT and Ho trabeculae from SL 2.0 to 2.35 μm increased passive force, maximum Ca(2+)-activated force, and pCa(50), and it decreased n(H) and k(tr). Compared with WT trabeculae, the magnitude of SL-dependent changes in passive force, maximum Ca(2+)-activated force, pCa(50), and n(H) was significantly smaller in Ho trabeculae. These results suggests that, at least in rat ventricle, the magnitude of SL-dependent changes in passive force, maximum Ca(2+)-activated force, pCa(50), n(H), and k(tr) is defined by the titin isoform.
Patel et al. (Sat,) conducted a other in Titin isoform expression in rat ventricles (n=17). Giant N2BA-G titin isoform (Homozygote) vs. Smaller N2B titin isoform (Wild-type) was evaluated on Magnitude of sarcomere length-dependent changes in maximum Ca2+-activated force (mN/mm2) (p=<0.05). In rat ventricular trabeculae, the magnitude of sarcomere length-dependent changes in maximum Ca2+-activated force was significantly smaller in those expressing the giant N2BA-G titin isoform compared to the wild-type N2B isoform.
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