Iacovelli Jared, Lopera Jorge, Bott Marga, Baldwin Elizabeth, Khaled Annette, Uddin Nizam, Fernandez-Valle Cristina
Department of Molecular Biology and Microbiology, University of Central Florida, Orlando, Florida, USA.
Glia. 2007 Dec;55(16):1638-47. doi: 10.1002/glia.20578.
Proliferation of Schwann cells in vitro, unlike most mammalian cells, is not induced by serum alone but additionally requires cAMP elevation and mitogenic stimulation. How these agents cooperate to promote progression through the G1 phase of the cell cycle is unclear. We studied the integrative effects of these compounds on receptor-mediated signaling pathways and regulators of G1 progression. We show that serum alone induces strong cyclical expression of cyclin D1 and E1, 6 and 12 h after addition, respectively. Serum also promotes strong but transient erbB2, ERK, and Akt phosphorylation, but Schwann cells remain arrested in G1 due to high levels of the inhibitor, p27(Kip). Forskolin with serum promotes G1 progression in 22% of Schwann cells between 18 and 24 h by inducing a steady decline in p27(Kip) levels that reaches a nadir at 12 h coinciding with peak cyclin E1 expression. Forskolin also delays neuregulin-induced loss of erbB2 receptors allowing strong acute activation of PI3K, sustained erbB2 phosphorylation and G1 progression in 31% of Schwann cells. We find that the ability of forskolin to decrease p27(Kip) is associated with its ability to decrease Krox-20 expression that is induced by serum and further increased by neuregulin. Our results explain why serum is required but insufficient to stimulate proliferation and identify two routes by which forskolin promotes proliferation in the presence of serum and neuregulin. These findings provide insights into how G1 progression and, cell cycle arrest leading to myelination are regulated in Schwann cells.
与大多数哺乳动物细胞不同,雪旺细胞在体外的增殖并非仅由血清诱导,还需要cAMP升高和有丝分裂刺激。这些因子如何协同作用以促进细胞周期G1期的进程尚不清楚。我们研究了这些化合物对受体介导的信号通路和G1期进程调节因子的综合作用。我们发现,单独的血清分别在添加后6小时和12小时诱导细胞周期蛋白D1和E1的强烈周期性表达。血清还促进erbB2、ERK和Akt的强烈但短暂的磷酸化,但由于高水平的抑制剂p27(Kip),雪旺细胞仍停滞在G1期。福斯高林与血清一起作用,通过诱导p27(Kip)水平稳步下降,在18至24小时内促进22%的雪旺细胞进入G1期,该水平在12小时达到最低点,与细胞周期蛋白E1的峰值表达同时出现。福斯高林还延迟了神经调节蛋白诱导的erbB2受体丧失,使31%的雪旺细胞中PI3K强烈急性激活、erbB2持续磷酸化并进入G1期。我们发现福斯高林降低p27(Kip)的能力与其降低血清诱导并由神经调节蛋白进一步增加的Krox-20表达的能力相关。我们的结果解释了为什么血清是刺激增殖所必需的但并不充分,并确定了福斯高林在存在血清和神经调节蛋白的情况下促进增殖的两条途径。这些发现为雪旺细胞中G1期进程以及导致髓鞘形成的细胞周期停滞是如何被调节提供了见解。