Guo Mingzhang, Wu Mack H, Korompai Ferenc, Yuan Sarah Y
Cardiovascular Research Institute, Departments of Surgery and Medical Physiology, Texas A & M University System Health Science Center, Temple, Texas 76504, USA.
Physiol Genomics. 2003 Jan 15;12(2):139-46. doi: 10.1152/physiolgenomics.00125.2002.
The protein kinase C (PKC) pathway has recently been recognized as an important mechanism in the development of diabetic complications including cardiomyopathy and angiopathy. Although an increase in PKC kinase activity has been detected in the cardiovascular system of diabetic patients and animals, it is unclear whether the same pathological condition alters PKC at the transcriptional and translational levels. In this study we assessed quantitatively the mRNA and protein expression profiles of PKC isozymes in the heart and vascular tissues from streptozotocin-induced diabetic pigs. Partial regions of the porcine PKCalpha, beta1, and beta2 mRNAs were sequenced, and real-time RT-PCR assays were developed for PKC mRNA quantification. The results showed a significant increase in the mRNA levels of PKCalpha, beta1, and beta2 in the heart at 4-8 wk of diabetes. In concomitance, the PKCbeta1 and beta2 genes, but not the PKCalpha gene, were upregulated in the diabetic aorta. Correspondingly, there was a significant increase in the protein expression of PKCalpha and beta2 in the heart and PKCbeta2 in the aorta with a time course correlated to that of mRNA expression. In summary, PKCbeta2 was significantly upregulated in the heart and aorta at both the transcriptional and translational levels during early stages of experimental diabetes, suggesting that PKCbeta2 may be a prominent target of diabetic injury in the cardiovascular system.
蛋白激酶C(PKC)信号通路最近被认为是糖尿病并发症(包括心肌病和血管病变)发生发展过程中的一个重要机制。尽管在糖尿病患者和动物的心血管系统中已检测到PKC激酶活性增加,但尚不清楚相同的病理状况是否会在转录和翻译水平上改变PKC。在本研究中,我们定量评估了链脲佐菌素诱导的糖尿病猪心脏和血管组织中PKC同工酶的mRNA和蛋白表达谱。对猪PKCα、β1和β2 mRNA的部分区域进行了测序,并开发了实时RT-PCR检测方法用于PKC mRNA定量。结果显示,糖尿病4-8周时,心脏中PKCα、β1和β2的mRNA水平显著升高。同时,糖尿病主动脉中PKCβ1和β2基因上调,但PKCα基因未上调。相应地,心脏中PKCα和β2以及主动脉中PKCβ2的蛋白表达显著增加,其时间进程与mRNA表达相关。总之,在实验性糖尿病早期,PKCβ2在心脏和主动脉的转录和翻译水平均显著上调,提示PKCβ2可能是心血管系统中糖尿病损伤的一个主要靶点。