Marchisio Marco, Santavenere Eugenio, Paludi Maya, Gaspari Anna Rita, Lanuti Paola, Bascelli Adriana, Ercolino Eva, Di Baldassarre Angela, Miscia Sebastiano
Cell Signalling Unit, Section of Human Anatomy, Department of Biomorfologia, University "G.d'Annunzio" of Chieti-Pescara, Chieti, Italy.
J Cell Physiol. 2005 Oct;205(1):32-6. doi: 10.1002/jcp.20364.
Protein kinases C (PKC) zeta expression and phosphorylation at nuclear level during dimethyl sulfoxide (DMSO)-induced differentiation in Friend erythroleukemia cells have been previously reported, suggesting a possible role of this PKC isoform in the DMSO-related signaling. In order to shed more light on this tantalizing topic, we investigated PKC intracellular and sub-cellular localization and activity during DMSO-induced erythroid differentiation. Results indicated that at least PKC alpha, zeta, and delta are strongly and temporally involved in the DMSO-induced differentiation signals since their expression and phosphorylation, though at different extents, were observed during treatments. Intriguingly, while PKC alpha and zeta associate to the nuclear matrix during the differentiation event, PKC delta appears to be residentially associated to the nuclear matrix. Furthermore, an evident downregulation of the beta-globin gene transcription (differentiation hallmark) was detected upon a progressive inhibition of these PKC isoforms by means of specific inhibitors, indicating, therefore, that PKC alpha, zeta, and delta phosphorylation play a crucial role in the control of erythroid differentiation.
先前已有报道称,在二甲基亚砜(DMSO)诱导的弗氏红白血病细胞分化过程中,蛋白激酶C(PKC)ζ在细胞核水平的表达及磷酸化情况,这表明该PKC同工型在与DMSO相关的信号传导中可能发挥作用。为了更深入地了解这个引人入胜的话题,我们研究了DMSO诱导红细胞分化过程中PKC在细胞内和亚细胞水平的定位及活性。结果表明,至少PKCα、ζ和δ在DMSO诱导的分化信号中发挥了强烈且具有时间依赖性的作用,因为在处理过程中观察到了它们的表达及磷酸化,尽管程度有所不同。有趣的是,在分化过程中,PKCα和ζ与核基质相关联,而PKCδ似乎始终与核基质相关。此外,通过特异性抑制剂对这些PKC同工型进行逐步抑制后,检测到β-珠蛋白基因转录(分化标志)明显下调,因此表明PKCα、ζ和δ的磷酸化在红细胞分化的调控中起着关键作用。