Price Sally A, Dent Carolyn, Duran-Jimenez Beatriz, Liang Yuxin, Zhang Lei, Rebar Edward J, Case Casey C, Gregory Philip D, Martin Tyler J, Spratt S Kaye, Tomlinson David R
Faculty of Life Sciences, University of Manchester, Manchester, UK.
Diabetes. 2006 Jun;55(6):1847-54. doi: 10.2337/db05-1060.
Peripheral neuropathy is a common, irreversible complication of diabetes. We investigated whether gene transfer of an engineered zinc finger protein transcription factor (ZFP-TF) designed to upregulate expression of the endogenous vascular endothelial growth factor (VEGF)-A gene could protect against experimental diabetic neuropathy. ZFP-TF-driven activation of the endogenous gene results in expression of all of the VEGF-A isoforms, a fact that may be of significance for recapitulation of the proper biological responses stimulated by this potent neuroprotective growth factor. We show here that this engineered ZFP-TF activates VEGF-A in appropriate cells in culture and that the secreted VEGF-A protein induced by the ZFP protects neuroblastoma cell lines from a serum starvation insult in vitro. Importantly, single and repeat intramuscular injections of formulated plasmid DNA encoding the VEGF-A-activating ZFP-TF resulted in protection of both sensory and motor nerve conduction velocities in a streptozotocin-induced rat model of diabetes. These data suggest that VEGF-A-activating ZFP-TFs may ultimately be of clinical utility in the treatment of this disease.
周围神经病变是糖尿病常见的、不可逆的并发症。我们研究了一种经过工程改造的锌指蛋白转录因子(ZFP-TF)的基因转移是否能预防实验性糖尿病神经病变,该转录因子旨在上调内源性血管内皮生长因子(VEGF)-A基因的表达。ZFP-TF驱动的内源性基因激活会导致所有VEGF-A异构体的表达,这一事实对于重现这种强大的神经保护生长因子刺激的适当生物学反应可能具有重要意义。我们在此表明,这种经过工程改造的ZFP-TF在培养的合适细胞中激活VEGF-A,并且由ZFP诱导分泌的VEGF-A蛋白在体外可保护神经母细胞瘤细胞系免受血清饥饿损伤。重要的是,在链脲佐菌素诱导的糖尿病大鼠模型中,单次和重复肌肉注射编码激活VEGF-A的ZFP-TF的配方质粒DNA可保护感觉和运动神经传导速度。这些数据表明,激活VEGF-A的ZFP-TF最终可能在这种疾病的治疗中具有临床应用价值。