Patrone M, Pessino A, Passalacqua M, Sparatore B, Melloni E, Pontremoli S
Institute of Biochemistry, University of Genoa, Italy.
FEBS Lett. 1994 May 9;344(1):91-5. doi: 10.1016/0014-5793(94)00359-9.
In addition to alpha, delta and epsilon-protein kinase C, murine erythroleukemia cells contain zeta-PKC and also a c-PKC isoform, named alpha 1, which shows cross-reactivity with an anti-alpha-PKC antipeptide antibody. In a C44 MEL cell clone, characterized by a high rate of differentiation, both c-PKC forms are expressed at a level higher than that of the N23 MEL cell clone which differentiates at a low rate and contains higher levels of epsilon-PKC and particularly of the delta-PKC isozyme. In the course of MEL cell differentiation, delta-PKC in N23 cells and alpha 1-PKC in C44 cells are rapidly down-regulated and the overall process is almost completed before cell commitment. Of the other three PKC isozymes present in both clones, only alpha-PKC is down-regulated to a significant extent. It is proposed that modulation of the signal delivered by each PKC isozyme is one of the biochemical mechanisms involved in MEL cell differentiation.
除α、δ和ε蛋白激酶C外,小鼠红白血病细胞还含有ζ-PKC以及一种名为α1的c-PKC同工型,它与抗α-PKC抗肽抗体表现出交叉反应性。在以高分化率为特征的C44 MEL细胞克隆中,两种c-PKC形式的表达水平均高于低分化率且含有较高水平ε-PKC尤其是δ-PKC同工酶的N23 MEL细胞克隆。在MEL细胞分化过程中,N23细胞中的δ-PKC和C44细胞中的α1-PKC迅速下调,并且整个过程在细胞定向分化之前几乎就已完成。在两个克隆中均存在的其他三种PKC同工酶中,只有α-PKC受到显著下调。有人提出,每种PKC同工酶传递的信号调节是参与MEL细胞分化的生化机制之一。