James A. Haley Veteran's Hospital, 13000 Bruce B. Downs Boulevard, Tampa, FL 33612, USA.
Carcinogenesis. 2012 Jan;33(1):10-9. doi: 10.1093/carcin/bgr231. Epub 2011 Oct 21.
The objective of this research was to study the potential function of protein kinase C (PKC)-ι in cell cycle progression and proliferation in glioblastoma. PKC-ι is highly overexpressed in human glioma and benign and malignant meningioma; however, little is understood about its role in regulating cell proliferation of glioblastoma. Several upstream molecular aberrations and/or loss of PTEN have been implicated to constitutively activate the phosphatidylinositol (PI) (3)-kinase pathway. PKC-ι is a targeted mediator in the PI (3)-kinase signal transduction repertoire. Results showed that PKC-ι was highly activated and overexpressed in glioma cells. PKC-ι directly associated and phosphorylated Cdk7 at T170 in a cell cycle-dependent manner, phosphorylating its downstream target, cdk2 at T160. Cdk2 has a major role in inducing G(1)-S phase progression of cells. Purified PKC-ι phosphorylated both endogenous and exogenous Cdk7. PKC-ι downregulation reduced Cdk7 and cdk2 phosphorylation following PI (3)-kinase inhibition, phosphotidylinositol-dependent kinase 1 knockdown as well as PKC-ι silencing (by siRNA treatment). It also diminished cdk2 activity. PKC-ι knockdown inhibited overall proliferation rates and induced apoptosis in glioma cells. These findings suggest that glioma cells may be proliferating through a novel PI (3)-kinase-/PKC-ι/Cdk7/cdk2-mediated pathway.
本研究旨在探讨蛋白激酶 C(PKC)-ι 在神经胶质瘤细胞周期进展和增殖中的潜在作用。PKC-ι 在人神经胶质瘤和良性及恶性脑膜瘤中高度过表达;然而,对于其在调节神经胶质瘤细胞增殖中的作用知之甚少。几种上游分子异常和/或 PTEN 的缺失被认为可使磷脂酰肌醇(PI)(3)-激酶途径持续激活。PKC-ι 是 PI(3)-激酶信号转导库中的靶向介质。结果表明,PKC-ι 在神经胶质瘤细胞中高度激活和过表达。PKC-ι 以细胞周期依赖性方式直接与 Cdk7 在 T170 处结合并磷酸化,磷酸化其下游靶标 cdk2 在 T160。Cdk2 在诱导细胞 G1-S 期进展中起主要作用。纯化的 PKC-ι 磷酸化内源性和外源性 Cdk7。PI(3)-激酶抑制、磷酸肌醇依赖性激酶 1 敲低以及 PKC-ι 沉默(通过 siRNA 处理)后,PKC-ι 下调减少了 Cdk7 和 cdk2 的磷酸化。它还降低了 cdk2 的活性。PKC-ι 下调抑制了神经胶质瘤细胞的整体增殖率并诱导其凋亡。这些发现表明,神经胶质瘤细胞可能通过一种新型的 PI(3)-激酶/-PKC-ι/Cdk7/cdk2 介导的途径进行增殖。