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首页> 外文期刊>Biochemistry >Cross-talk between protein kinase C-alpha (PKC-alpha) and -delta (PKC-delta): PKC-alpha elevates the PKC-delta protein level, altering its mRNA transcription and degradation
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Cross-talk between protein kinase C-alpha (PKC-alpha) and -delta (PKC-delta): PKC-alpha elevates the PKC-delta protein level, altering its mRNA transcription and degradation

机译:蛋白激酶C-alpha(PKC-alpha)和-delta(PKC-delta)之间的串扰:PKC-alpha升高PKC-delta蛋白水平,改变其mRNA转录和降解

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摘要

Studies utilizing the overexpression of individual isoforms indicated that both PKC-alpha and -delta promote a number of biological effects, including inhibition of DNA synthesis associated with rearrangements of the actin cytoskeleton in the murine B-cell lymphoma (Baf3), differentiation of the murine promyelocyte line 32D, and activation of MAP kinase in CHO fibroblasts. We postulated that these results reflect some form of cross-regulation between PKC-alpha and -delta rather than their functional redundancy. In this report, we show that overexpression of PKC-alpha in Baf3 and 32D leads to an elevation of the endogenous PKC-delta mRNA and protein levels. The elevated steady-state PKC-delta mRNA level results from a combination of increased PKC-delta transcription and mRNA stability. Upregulation of PKC-delta mRNA by PKC-alpha occurs even after a selective depletion of the PKC-delta protein. In addition, phorbol ester-induced elevation of PKC-delta mRNA and protein levels can be prevented by the PKC inhibitor GF109203X, an indication of the requirement for PKC kinase activity. Inhibition of new protein synthesis by cycloheximide showed that upregulation of PKC-delta mRNA, as opposed to delayed downregulation of the PKC-delta protein, is primarily responsible for the accumulation of this isoform by PKC-alpha. In parental Baf3 and 32D cells and PKC-alpha overexpressers, PKC-alpha and PKC-delta are uniquely involved in cross-regulation, while PKC-epsilon, PKC-eta, and PKC-mu are not. [References: 33]
机译:利用个别同工型的过表达进行的研究表明,PKC-α和-δ均可促进多种生物学效应,包括抑制与鼠B细胞淋巴瘤(Baf3)中肌动蛋白细胞骨架重排有关的DNA合成,鼠的分化早幼粒细胞系32D,以及CHO成纤维细胞中MAP激酶的激活。我们假设这些结果反映了PKC-alpha和-delta之间某种形式的交叉调节,而不是它们的功能冗余。在此报告中,我们表明Baf3和32D中PKC-α的过度表达导致内源性PKC-δmRNA和蛋白质水平的升高。升高的稳态PKC-delta mRNA水平是由PKC-delta转录增加和mRNA稳定性共同导致的。即使在选择性清除PKC-δ蛋白后,PKC-alpha也会对PKC-δmRNA产生上调。此外,PKC抑制剂GF109203X可以防止佛波酯诱导的PKC-δmRNA和蛋白水平升高,这表明需要PKC激酶活性。环己酰亚胺对新蛋白质合成的抑制作用表明,与PKC-δ蛋白的延迟下调相反,PKC-δmRNA的上调主要是PKC-α积累这种同工型的原因。在亲本的Baf3和32D细胞以及PKC-α过表达中,PKC-α和PKC-δ独特地参与交叉调节,而PKC-ε,PKC-eta和PKC-mu不参与交叉调节。 [参考:33]

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