Hu Tongtong, Gong Zelong, Wan Yu, Li Yubin, Gao Xuefeng, Lun Jingxian, Huang Shenghe, Cao Hong
Department of Microbiology, School of Public Health, Southern Medical University/Guangdong Key Laboratory of Tropical Diseases, Guangzhou 510515, China.
Los Angeles Children's Hospital, University of Southern California, Los Angeles, 90027, USA.
Nan Fang Yi Ke Da Xue Xue Bao. 2020 Aug 30;40(8):1184-1191. doi: 10.12122/j.issn.1673-4254.2020.08.17.
To construct a HIV-1 gp120 transgenic mouse model (gp120) with 7 nicotinic acetylcholine receptor (7nAChR) gene knockout.
The 7nAChR gene knockout mice (7R) were crossed with HIV-1gp120 transgenic mice (gp120) to generate F1 generation mice. We selected the F1 mice with the genotype of 7R/gp120 to mate to obtain the F2 mice. The genotypes of the F3 mice were identified by PCR, and the protein expressions in the double transgenic animal model was analyzed by immunohistochemistry. BV2 cells were treated with gp120 protein and 7nAChR inhibitor, and the expressions of IL-1β and TNF- were detected using ELISA.
The results of PCR showed the bands of the expected size in F3 mice. Two F3 mice with successful double gene editing (7R/gp120) were obtained, and immunohistochemistry showed that the brain tissue of the mice did not express 7 nAChR but with high gp120 protein expression. In the cell experiment, treatment with gp120 promoted the secretion of IL-1β and TNF- in BV2 cells, while inhibition of 7nAChR significantly decreased the expression of IL-1β and TNF- ( < 0.001).
By mating gp120 Tg mice with 7R mice, we obtained gp120 transgenic mice with 7nAChR gene deletion, which serve as a new animal model for exploring the role of 7nAChR in gp120-induced neurotoxicity.
构建一种敲除7烟碱型乙酰胆碱受体(7nAChR)基因的HIV-1 gp120转基因小鼠模型(gp120)。
将7nAChR基因敲除小鼠(7R)与HIV-1 gp120转基因小鼠(gp120)杂交以产生F1代小鼠。我们选择基因型为7R/gp120的F1小鼠进行交配以获得F2小鼠。通过PCR鉴定F3小鼠的基因型,并通过免疫组织化学分析双转基因动物模型中的蛋白表达。用gp120蛋白和7nAChR抑制剂处理BV2细胞,并使用ELISA检测IL-1β和TNF-的表达。
PCR结果显示F3小鼠中出现预期大小的条带。获得了两只双基因编辑成功(7R/gp120)的F3小鼠,免疫组织化学显示小鼠脑组织不表达7 nAChR但gp120蛋白表达较高。在细胞实验中,用gp120处理促进了BV2细胞中IL-1β和TNF-的分泌,而抑制7nAChR则显著降低了IL-1β和TNF-的表达(<0.001)。
通过将gp120转基因小鼠与7R小鼠交配,我们获得了缺失7nAChR基因的gp120转基因小鼠,其作为一种新的动物模型用于探索7nAChR在gp120诱导的神经毒性中的作用。