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首页> 外文期刊>American Journal of Physiology >Changes in protein kinase C in early cardiomyopathy and in gracilis muscle in the BB/Wor diabetic rat.
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Changes in protein kinase C in early cardiomyopathy and in gracilis muscle in the BB/Wor diabetic rat.

机译:BB / Wor糖尿病大鼠早期心肌病和腹肌中蛋白激酶C的变化。

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Hyperglycemia can upregulate protein kinase C (PKC), which may be an important mediator of the progression from normal heart and muscle function to diabetic myopathy in the myocardium and skeletal muscle in type 1 insulin-dependent diabetes mellitus (IDM). We evaluated this possibility during the early stage of IDM in BB/Wor diabetic (D) rats and age-matched BB/Wor diabetes-resistant (DR) rats. Interventricular septal thickness, E wave peak velocity of tricuspid inflow (both minimum and maximum), and left ventricular (LV) weight index were increased, and the rate of change in LV pressure (LV dP/dt) decreased in D rats subjected to M-mode and two-dimensional echocardiography and hemodynamic recording of heart rate, LV pressure (LVP), + LV dP/dt, -LV dP/dt, and LV end-diastolic pressure (LVEDP) in vivo and in vitro 41 days after the onset of hyperglycemia. Whole ventricle basal PKC activity was increased by 44.4 and 18.4% in the particulate and soluble fractions, respectively, from D rats compared with that from DR rats using r-32P phosphorylation of appropriate peptide substrates. When measured by Western blot gel densitometry, particulate PKC-alpha and PKC-delta content increased by 89 and 24%, respectively, but soluble PKC-beta and soluble and particulate PKC-epsilon were unchanged compared with that of DR rats. Similarly, gracilis muscle PKC activity and PKC-alpha and PKC-delta were elevated in the gracilis muscle, whereas that of the circulating neutrophil did not differ between the D and DR rats. Thus, in vivo, the early diabetic cardiomyopathy of the D rat is characterized by a restrictive LV with increased septal thickness and is associated with elevated PKC activity and increased amounts of myocardial particulate PKC-alpha and PKC-delta, which are also seen in the skeletal muscle. We conclude that increased PKC isozymes may play a pivotal role during IDM in the development of diabetic cardiomyopathy and skeletal muscle myopathy.
机译:高血糖可以上调蛋白激酶C(PKC),它可能是1型胰岛素依赖型糖尿病(IDM)心肌和骨骼肌从正常的心脏和肌肉功能发展为糖尿病性肌病的重要介质。我们在IDM早期的BB / Wor糖尿病(D)大鼠和年龄匹配的BB / Wor糖尿病抵抗(DR)大鼠中评估了这种可能性。接受M干预的D大鼠的室间隔厚度,三尖瓣流入的E波峰值速度(最大值和最小值)和左室(LV)重量指数增加,左室压力的变化率(LV dP / dt)降低。 -二维超声心动图和心率,LV压力(LVP),+ LV dP / dt,-LV dP / dt和LV舒张末期压力(LVEDP)的血流动力学记录高血糖发作。使用适当肽底物的r-32P磷酸化处理后,与使用DR-32P磷酸化的DR大鼠相比,D大鼠的整个脑室基底PKC活性分别增加了44.4%和18.4%。用Western blot凝胶密度法测量时,PKC-α和PKC-δ的含量分别增加了89%和24%,但可溶性DRC-β和可溶性PKC-ε的含量与DR大鼠相比没有变化。同样,在腹肌中,腹肌的PKC活性以及PKC-α和PKC-δ升高,而D和DR大鼠之间的中性粒细胞循环没有差异。因此,在体内,D大鼠的早期糖尿病性心肌病的特征是限制性LV,其间隔厚度增加,并且与PKC活性升高和心肌颗粒PKC-α和PKC-δ量增加有关,这也可见于骨骼肌。我们得出结论,增加的PKC同工酶可能在IDM期间在糖尿病性心肌病和骨骼肌肌病的发展中起关键作用。

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