期刊文献+

慢病毒介导的犬WRD细胞p53基因沉默及稳定感染细胞系的建立 被引量:2

Establishment of a canine WRD cell line with stable p53 knockdown by lentivirus-mediated p53 silencing
下载PDF
导出
摘要 目的构建靶向犬p53基因慢病毒干扰载体,建立稳定沉默p53基因的WRD/p53-细胞系。方法设计并构建4条针对犬p53基因的特异性shRNA干扰质粒。将构建的慢病毒表达载体(p GMLV-p53)和包装质粒(packaging mix)组成的包装系统共转染293T细胞,包装病毒,收集病毒原液,超滤浓缩,并测定滴度。包装好的慢病毒感染WRD细胞,Western blot和实时荧光定量PCR方法检测不同靶点RNA干扰载体对p53基因的干扰效果,确定有效靶点。针对有效靶点慢病毒颗粒以最适感染复数(multiplicity of infection,MOI)感染WRD细胞,puromycin抗生素筛选稳定感染细胞系WRD/p53-。结果结果显示p53 RNAi慢病毒载体构建成功,成功包装四种不同靶点的p53基因RNA干扰慢病毒,病毒滴度均达到1×109TU/ml。四种干扰载体慢病毒均具有较好的干扰效果,选用沉默效果最好的p GMLV-p53A1为最优靶点,成功建立p53 RNAi慢病毒载体稳定感染细胞系WRD/p53-。结论成功构建p53 RNAi慢病毒载体,并有效干扰WRD细胞中p53 mRNA和蛋白表达,同时成功筛选并建立p53RNAi慢病毒稳定感染WRD/p53-细胞系。 Objective To establish a canine cell line with p53 gene knockdown by lentivirus-mediated RNA interference (RNAi). Methods Four pairs of oligonucleotide sequences of p53 gene were synthesized and cloned into the pGMLV-SC5 RNAi vector. Following confirmation by PCR and DNA sequencing, the recombinant pGMLV-p53 plasmids and packaging mix vectors were packaged into mature lentivirus to infect 293T cells. The supernatant of the infected cells was harvested to infect WRD cells, in which p53 expression was detected using Western blotting and real-time PCR. The lentivirus with the strongest p53-silencing effect was packaged for infecting WRD cells at the optimal multiplicity of infection (MOI) to establish a stably infected cell line (WRD/p53-) screened using puromycin. Results The lentivirus carrying p53 shRNA was constructed successfully and a virus titer of 1 × 109 TU/ml. The 4 pGMLV-p53 plasmids all produced strong p53 interference affects, and pGMLV- p53A1 with the strongest effect. The stably infected cells line WRD/p53- was established successfully using pGMLV- p53A1 plasmid. Conclusion The canine cell line WRD/p53-with stable lentivirus-mediated p53 silencing has been established successfully.
出处 《南方医科大学学报》 CAS CSCD 北大核心 2014年第12期1721-1727,共7页 Journal of Southern Medical University
基金 国家自然科学基金(81060130)~~
关键词 P53 RNA干扰 慢病毒载体 WRD细胞 P53 RNA interference lentivirus vector WRD cells
  • 相关文献

参考文献29

  • 1Golubovskaya VM, Cance WG. Targeting the p53 pathway[J]. Surg Onco[ Clin N Am, 2013, 22(4): 747-64.
  • 2Muller PA, Vousden KH. Mutant p53 in cancer: new functions and therapeutic opportunities[Jl. Cancer Cell, 2014, 25(3): 304-17.
  • 3Elia J, Dimitrio L, Clairambault J, et al. The p53 protein and its molecular network: modelling a missing Link between DNA damage and cell fate[J]. Biochim Biophys Acta, 2014, 1844(1 Pt B): 232-47.
  • 4Narayanan A, Amaya M, Voss K, et al. Reactive Oxygen species activate NF:B (p65) and p53 and induce apoptosis in RVFVinfected liver cells[J]. Virology, 2014, 449: 270-86.
  • 5Sato Y, Tsurumi T. Genome Guardian p53 and viral infections[J]. Rev Med Virol, 2013, 23(4): 213-20.
  • 6Sim6es M, Martins C, Ferreira F. Host DNA damage response facilitates African swine fever virus infection [J]. Vet Microbiol, 2013, 165(1/2): 140-7.
  • 7Chen AY, Luo Y, Cheng F, et al. Bocavirus infection induces mitochondrion-mediated apoptosis and cell cycle arrest at G2/M phase[J]. J Virol, 2010, 84(11): 5615-26.
  • 8Luo Y, Chen AY, Qiu J. Bocavirus infection induces a DNA damage response that facilitates viral DNA replication and mediates cell death[J]. J Virol, 2011, 85(1): 133-45.
  • 9Binn LN, Lazar EC, Eddy GA, et al. Recovery and characterization of a minute virus of canines[J]. Infect Immun, 1970, 1(5): 503-8.
  • 10Lin PY, Lee JW, Liao MH, et al. Modulation of p53 by mitogen- activated protein kinase pathways and protein kinase C delta during avian reovirus S1133-induced apoptosis[J]. Virology, 2009, 385(2): 323-34.

同被引文献29

  • 1焦伊胜,王永来,张淑兰,王桂玲.凋亡蛋白抑制因子Livin shRNA慢病毒载体的构建与鉴定[J].中国现代医学杂志,2008,18(24):3601-3605. 被引量:1
  • 2马晓生,姜建元,吕飞舟,马昕,李小康,黄煌渊.腺病毒和慢病毒载体感染骨髓间质干细胞的比较[J].中华医学杂志,2006,86(47):3340-3344. 被引量:29
  • 3Pantopoulos K. h'on metabolism and the IRE/IRP regulatory system: an update[J]. Ann N Y Acad Sci, 2004, 1012:1 -13.
  • 4Ma J, Wen X, Mo F, et al. Effects of different doses and duration of iren supplementation on curing iron deficiency anenfia: an experimental study [J]. Biol Trace Elem Res, 2014, 162 ( 1/2/3 ) : 242 - 251.
  • 5Choi J W, Lee K H, Lee J I, et al. Genetic characteristics of canine bocaviruses in Korean dogs [ J ]. Vet Microbiol, 2015, 179 ( 3/4 ) : 177 - 183.
  • 6Pratelli A, Buonavoglia D, Tempesta M, et al. Fatal canine parvovims type-1 infection in pups from Italy [ J]. J Vet Diagn Invest, 1999, 11(4): 365 -367.
  • 7Allison A B, Organtini L J, Zhang S, et al. Single mutations in the VP2 300 loop resion of the three-fold spike of the carnivore parvovirus eapsid can determine host range [ J ]. J Virel, 2015, 90 (2): 753 - 767.
  • 8Moehizuki M, Hashimoto M, I-Iajima T, et al. Virofogie and serologic identitleation of minute virus of canines ( canine parvovirus type 1 ) from dogs in Japan [J]. J Clin Mierehiol, 2002, 40 (11): 3993 - 3998.
  • 9Sun J Z, Wang J, Wang S, et al. mieroRNA miR-320a and miR-140 inhibit mink enteritis virus infection by repression of its receptor, feline tranoferrin receptor [J/OL]. Virol J, 2014, 11: 210. doi: 10. 1186/s12985 -014 -0210 -3.
  • 10Parker J S, Murphy W J, Wang D, et al. Canine and feline parvoviruses can use human er feline tranderrln receptors to bind, enter, and infect eell[J]. J Virol, 2001,75(8) : 3896 -3902.

引证文献2

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部