National Eye Institute, National Institutes of Health (NIH), Bethesda, MD 20892, USA.
J Exp Med. 2010 Apr 12;207(4):867-80. doi: 10.1084/jem.20091704. Epub 2010 Mar 15.
Platelet-derived growth factor CC (PDGF-CC) is the third member of the PDGF family discovered after more than two decades of studies on the original members of the family, PDGF-AA and PDGF-BB. The biological function of PDGF-CC remains largely to be explored. We report a novel finding that PDGF-CC is a potent neuroprotective factor that acts by modulating glycogen synthase kinase 3beta (GSK3beta) activity. In several different animal models of neuronal injury, such as axotomy-induced neuronal death, neurotoxin-induced neuronal injury, 6-hydroxydopamine-induced Parkinson's dopaminergic neuronal death, and ischemia-induced stroke, PDGF-CC protein or gene delivery protected different types of neurons from apoptosis in both the retina and brain. On the other hand, loss-of-function assays using PDGF-C null mice, neutralizing antibody, or short hairpin RNA showed that PDGF-CC deficiency/inhibition exacerbated neuronal death in different neuronal tissues in vivo. Mechanistically, we revealed that the neuroprotective effect of PDGF-CC was achieved by regulating GSK3beta phosphorylation and expression. Our data demonstrate that PDGF-CC is critically required for neuronal survival and may potentially be used to treat neurodegenerative diseases. Inhibition of the PDGF-CC-PDGF receptor pathway for different clinical purposes should be conducted with caution to preserve normal neuronal functions.
血小板衍生生长因子 CC(PDGF-CC)是在对原始家族成员 PDGF-AA 和 PDGF-BB 进行了二十多年的研究后发现的 PDGF 家族的第三个成员。PDGF-CC 的生物学功能在很大程度上仍有待探索。我们报告了一个新发现,即 PDGF-CC 是一种有效的神经保护因子,通过调节糖原合酶激酶 3β(GSK3β)活性发挥作用。在几种不同的神经元损伤动物模型中,如轴突切断诱导的神经元死亡、神经毒素诱导的神经元损伤、6-羟多巴胺诱导的帕金森病多巴胺能神经元死亡和缺血性中风,PDGF-CC 蛋白或基因传递可保护视网膜和大脑中的不同类型神经元免受凋亡。另一方面,使用 PDGF-C 缺失小鼠、中和抗体或短发夹 RNA 的功能丧失实验表明,PDGF-CC 缺乏/抑制加剧了体内不同神经元组织中的神经元死亡。从机制上讲,我们揭示了 PDGF-CC 的神经保护作用是通过调节 GSK3β 磷酸化和表达来实现的。我们的数据表明,PDGF-CC 对神经元存活至关重要,可能可用于治疗神经退行性疾病。为了不同的临床目的抑制 PDGF-CC-PDGF 受体途径应该谨慎进行,以保持正常的神经元功能。