首页> 美国卫生研究院文献>Journal of Virology >Herpes Simplex Virus Type 1 Vector-Mediated Expression of Nerve Growth Factor Protects Dorsal Root Ganglion Neurons from Peroxide Toxicity
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Herpes Simplex Virus Type 1 Vector-Mediated Expression of Nerve Growth Factor Protects Dorsal Root Ganglion Neurons from Peroxide Toxicity

机译:单纯疱疹病毒1型载体介导的神经生长因子表达保护背根神经节神经元免受过氧化物毒性。

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摘要

Nerve growth factor β subunit (β-NGF) transgene delivery and expression by herpes simplex virus type 1 (HSV-1) vectors was examined in a cell culture model of neuroprotection from hydrogen peroxide toxicity. Replication-competent (tk K mutant background) and replication-defective (ICP4;tk S mutant background) vectors were engineered to contain the murine β-NGF cDNA under transcriptional control of either the human cytomegalovirus immediate-early gene promoter (HCMV IEp) (e.g., KHN and SHN) or the latency-active promoter 2 (LAP2) (e.g., KLN and SLN) within the viral thymidine kinase (tk) locus. Infection of rat B103 and mouse N2A neuronal cell lines, 9L rat glioma cells, and Vero cells with the KHN or SHN vectors resulted in the production of β-NGF-specific transcripts and β-NGF protein reaching a maximum at 3 days postinfection (p.i.). NGF protein was released into the culture media in amounts ranging from 10.83 to 352.86 ng/ml, with the highest levels being achieved in B103 cells, and was capable of inducing neurite sprouting of PC-12 cells. The same vectors produced high levels of NGF in primary dorsal root ganglion (DRG) cultures at 3 days. In contrast to HCMV IEp-mediated expression, the LAP2-NGF vectors showed robust expression in primary DRG neurons at 14 days. The neuroprotective effect of vector produced NGF was assessed by its ability to inhibit hydrogen peroxide-induced neuron toxicity in primary DRG cultures. Consistent with the kinetics of vector-mediated NGF expression, HCMV-NGF vectors were effective in abrogating the toxic effects of peroxide at 3 but not 14 days p.i. whereas LAP2-NGF vector transduction inhibited apoptosis in DRG neurons at 14 days p.i. but was ineffective at 3 days p.i. Similar kinetics of NGF expression were observed with the KHN and KLN vectors in latently infected mouse trigeminal ganglia, where high levels of β-NGF protein expression were detected at 4 wks p.i. only from the LAP2; HCMV-NGF-driven expression peaked at 3 days but could not be detected during HSV latency at 4 weeks. Together, these results indicate that (i) NGF vector-infected cells produce and secrete mature, biologically active β-NGF; (ii) vector-synthesized NGF was capable of blocking peroxide-induced apoptosis in primary DRG cultures; and (iii) the HCMV-IEp functioned to produce high levels of NGF for several days; but (iv) only the native LAP2 was capable of long-term expression of a therapeutic gene product in latently infected neurons in vivo.
机译:在神经保护免于过氧化氢毒性的细胞培养模型中,检查了1型单纯疱疹病毒(HSV-1)载体对神经生长因子β亚基(β-NGF)转基因的传递和表达。将具有复制能力的(tk - K突变体背景)和具有复制缺陷的(ICP4 -; tk - S突变体背景)载体改造为包含病毒内人巨细胞病毒即刻早期基因启动子(HCMV IEp)(例如,KHN和SHN)或潜伏时间活跃启动子2(LAP2)(例如,KLN和SLN)的转录控制下的鼠β-NGFcDNA胸苷激酶(tk)基因座。用KHN或SHN载体感染大鼠B103和小鼠N2A神经元细胞系,9L大鼠神经胶质瘤细胞和Vero细胞导致β-NGF特异性转录本和β-NGF蛋白的产生在感染后3天达到最大(pi )。 NGF蛋白以10.83至352.86 ng / ml的量释放到培养基中,在B103细胞中达到最高水平,并且能够诱导PC-12细胞的神经突出芽。相同的载体在第3天在原背根神经节(DRG)培养物中产生了高水平的NGF。与HCMV IEp介导的表达相反,LAP2-NGF载体在14天时在原代DRG神经元中表现出强健的表达。通过载体产生的NGF在原代DRG培养物中抑制过氧化氢诱导的神经元毒性的能力来评估其神经保护作用。与载体介导的NGF表达的动力学一致,HCMV-NGF载体在p.i第3天但不是第14天有效地消除了过氧化物的毒性作用。而LAP2-NGF载体转导可在p.i第14天抑制DRG神经元的凋亡。但在下午3天无效用KHN和KLN载体在潜伏感染的小鼠三叉神经节中观察到了类似的NGF表达动力学,其中在第4 wks p.i检测到高水平的β-NGF蛋白表达。仅来自LAP2; HCMV-NGF驱动的表达在3天达到峰值,但在4周的HSV潜伏期无法检测到。总之,这些结果表明(i)感染了NGF载体的细胞产生并分泌成熟的,具有生物活性的β-NGF; (ii)载体合成的NGF能够阻断原代DRG培养物中过氧化物诱导的细胞凋亡; (iii)HCMV-IEp连续几天可产生高水平的NGF;但是(iv)只有天然LAP2能够在体内潜伏感染的神经元中长期表达治疗性基因产物。

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