Kaddour Nancy, Zhang Di, Gao Zu-Hua, Liu Jun-Li
Frasers Laboratories for Diabetes Research, Department of Medicine, McGill University Health Centre, Montreal, Canada.
Special Medicine Department, Medical College, Qingdao University, Qingdao, China.
Growth Factors. 2019 Aug;37(3-4):120-130. doi: 10.1080/08977194.2019.1652400. Epub 2019 Aug 22.
Pancreatic ß cell proliferation, survival and function are key elements that need to be considered in developing novel antidiabetic therapies. We recently identified CCN5/WISP2 to have potential growth promoting properties when overexpressed in ß cells; however, further investigations are needed to validate those properties. In this study, we demonstrated that exogenous treatment of insulinoma cells and primary islets with recombinant CCN5 (rh-CCN5) protein enhanced the proliferative capacity which was correlated with activation of cell-cycle regulators CDK4 and cyclin D1. Furthermore, pre-incubation of these cells with rh-CCN5 enhanced their survival rate after being exposed to harsh treatments such as streptozotocin and high concentrations of glucose and free fatty acids. CCN5 as well caused an upregulation in the expression of key genes associated with ß cell identity and function such as GLUT-2 and GCK. Finally, CCN5 activated FAK and downstream ERK kinases which are known to stimulate cell proliferation and survival. Hence, our results validate the growth promoting activities of rh-CCN5 in ß cells and open the door for further investigations in vivo.
胰腺β细胞的增殖、存活和功能是开发新型抗糖尿病疗法时需要考虑的关键因素。我们最近发现,CCN5/WISP2在β细胞中过表达时具有潜在的促生长特性;然而,需要进一步研究来验证这些特性。在本研究中,我们证明用重组CCN5(rh-CCN5)蛋白对外源胰岛素瘤细胞和原代胰岛进行处理可增强增殖能力,这与细胞周期调节因子CDK4和细胞周期蛋白D1的激活相关。此外,用rh-CCN5对这些细胞进行预孵育可提高它们在暴露于链脲佐菌素以及高浓度葡萄糖和游离脂肪酸等严苛处理后的存活率。CCN5还导致与β细胞特性和功能相关的关键基因如GLUT-2和GCK的表达上调。最后,CCN5激活了已知可刺激细胞增殖和存活的FAK及下游ERK激酶。因此,我们的结果验证了rh-CCN5在β细胞中的促生长活性,并为进一步的体内研究打开了大门。