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Biomedical subjects

K Mikawa

Publications and source records attributed to K Mikawa.

182 records · Page 11Linked to original sources

Limited proteolysis of protein kinase C subspecies by calpain: stimulation by basic polypeptides.

Limited proteolysis of Protein Kinase C (PKC) subspecies by Ca(2+)-dependent neutral protease II (calpain II) was remarkably stimulated by the presence of basic polypeptides, such as H1 histone, protamine, poly-L-arginine, and poly-L-lysine. The stimulatory effect of basic polypeptides was observed for proteolysis of the active form of PKC which was associated with diacylglycerol and phospholipid. The inactive form of PKC was far less susceptible to proteolysis, either in the presence or absence of the basic polypeptides. The basic polypeptides did not appear to interact with calpain II, but caused a conformational change in PKC to make the kinase molecule more susceptible to proteolysis. The relative rates of cleavage of the active form of types I (gamma), II (beta), and III (alpha) PKC by calpain II in the absence and presence of basic polypeptides were 100:48:23 and 100:100:50, respectively. Available evidence suggests that, like calpain I, calpain II may also contribute to the down-regulation or depletion of PKC.

Animals↗

Characteristics of energy metabolism in specialized muscle of bovine heart.

Characterization of the energy metabolism pattern of the specialized heart muscle of bovine heart was studied in comparison with that of the ordinary heart muscle. Mitochondrial oxygen consumption of the specialized heart muscle was significantly lower than that of the ordinary heart muscle with succinate as the substrate. On the other hand, there was no significant difference in oxygen consumption between both heart muscles with glutamate + malate as the substrates. The activity levels of succinate dehydrogenase and lactate dehydrogenase were much lower than those of the ordinary heart muscle. The isozyme pattern of LDH of the specialized heart muscle consisted of one major component of LDH-1 (H4) and that of the ordinary heart muscle consisted of two major components of LDH-1 (H4) and LDH-2 (H3M). The ratio of NADH to NAD of the specialized heart muscle was remarkably lower than that of the ordinary heart muscle. These results indicate that the specialized heart muscle depends not only upon anaerobic metabolism but also upon aerobic metabolism for its energy supply.

Animals↗