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作 者:房师强[1] 梅晰凡[1] 袁亚江[1] 郭占鹏[1] 郭跃[1] 曾锦浩[1] 王岩松[1] 尹海楠[2]
机构地区:[1]辽宁医学院附属第一医院骨科,锦州121001 [2]辽宁医学院附属第一医院心内科,锦州121001
出 处:《神经解剖学杂志》2012年第6期595-600,共6页Chinese Journal of Neuroanatomy
基 金:国家自然科学基金(81171799)
摘 要:目的:构建并筛选针对SD大鼠锌离子转运体1(ZnT1)的siRNA慢病毒载体。并检测其在大鼠神经元中的作用。方法:设计并合成针对ZnT1基因的3条(A,B,C)siRNA序列与1条阴性对照序列,将以上序列退火与pFU-GW-iRNA质粒相连接,通过测序鉴定后,分别与慢病毒包装质粒共感染293T细胞,检测收获病毒滴度后感染体外培养的SD大鼠脑皮层神经细胞,设置感染复数(MOI)分别为1,3,6,8,于转染后72 h计算转染效率。在最佳MOI值下,设置未经病毒感染组(CON组)、阴性对照病毒感染组(NC组)和慢病毒阳性干扰组(ZnT1-siR-NA-A组,ZnT1-siRNA-B组,ZnT1-siRNA-C组),72 h后利用Western blot技术检测ZnT1的表达情况,确定对ZnT1蛋白的最有效的干扰序列与抑制效率。结果:测序证实目的干扰序列已被准确克隆到pFU-GW-iRNA质粒,收获的慢病毒颗粒滴度为8×108TU/ml,其在MOI=6时对神经细胞的转染效率最高(93%),并保持神经细胞良好的生存状态。转染后ZnT1的表达被不同程度的抑制,A,B,C三种干扰序列对ZnT1的抑制率分别为47.74%±1.40%,81.19%±1.36%,94.10%±2.41%。结论:成功构建了ZnT1-siRNA慢病毒载体,其在MOI=6时对神经细胞具有最佳的转染效率,并有效沉默神经细胞中ZnT1蛋白的表达。Objective: To construct and screening lentiviral vectors of RNA interference (RNAi) targeting ZnT1 gene of SD rats and detect the effect of the vector in rat neurons. Methods: Three target sequences of ZnT1 (A, B, C) and a negative control sequence were developed and cloned into the pFU-GW-iRNA vector, then the results were confirmed by DNA sequencing. Recombinant lcntivirus vectors were respectively transfected into 293T cells by cotransfection of packa- ging plasmids and then the virus titer of harvested lentivirus was determined. The cerebral ~:ortical neurons of SD rats were transfected under the different MOI conditions (MOI = 1, 3, 6, 8) for 72 h to detect the transfection efficiency. Under the best MOI, the transfected neurons were divided into cells without transfection group ( CON group) , negative control group (NC group) and cells with positive transfection group (ZnT1-siRNA-A group, ZnTI-siRNA-B group, ZnTI-siRNA- C group). 72 h after transfected, the changes of ZnT1 protein was detected by Western blot to detect the most efficient RNAi sequence and the inhibition efficiency. Results: The result showed that target sequences were accurately cloned in- to pFU-GW-iRNA plasmid. The titer of harvested lentivirus was 8 x 10s TU/ml, the transfection efficiency was best at MOI = 6 (93%) and the neurons were at a good condition as well The ZnTI expression was inhibited to different degrees by A, B, C sequences after transfection, the inhibition effects were about 47.74% + 1.40%, 81. 19% + 1.36%, 94.10% +2.41% respectively. Conclusion: ZnTI-siRNA lentivirus vector has been constructed successfully, MOI = 6 is the best transfect condition in neurons and it can effectively silence the ZnT1 expression in neurons.
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