Balagúe C, Kalla M, Zhang W W
Molecular Biology Department, Baxter Healthcare Corporation, Round Lake, Illinois 60073, USA.
J Virol. 1997 Apr;71(4):3299-306. doi: 10.1128/JVI.71.4.3299-3306.1997.
Two adeno-associated virus (AAV) elements are necessary for the integration of the AAV genome: Rep78/68 proteins and inverted terminal repeats (ITRs). To study the contribution of the Rep proteins and the ITRs in the process of integration, we have compared the integration efficiencies of three different plasmids containing a green fluorescent protein (GFP) expression cassette. In one plasmid, no viral sequences were present; a second plasmid contained AAV ITRs flanking the reporter gene (integration cassette), and a third plasmid consisted of an integration cassette plus a Rep78 expression cassette. One day after transfection of 293 cells, fluorescent cells were sorted by flow cytometry and plated at 1 cell per well. Two weeks after sorting, colonies were monitored for stable expression of GFP. Transfection with the GFP plasmid containing no viral sequences resulted in no stable fluorescent colonies. Transfection with the plasmid containing the integration cassette alone (GFP flanked by ITRs) produced stable fluorescent colonies at a frequency of 5.3% +/- 1.0% whereas transfection with the plasmid containing both the integration cassette and Rep78 expression cassette produced stable fluorescent colonies at a frequency of 47% +/- 7.5%. Southern blot analysis indicated that in the presence of Rep78, integration is targeted to the AAVSI site in more than 50% of the clones analyzed. Some clones also showed tandem arrays of the integrated GFP cassette. Both head-to-head and head-to-tail orientations were detected. These findings indicate that the presence of AAV ITRs and the Rep78 protein enhance the integration of DNA sequences into the cellular genome and that the integration cassette is targeted to AAVS1 in the presence of Rep78.
腺相关病毒(AAV)基因组整合需要两种元件:Rep78/68蛋白和反向末端重复序列(ITR)。为了研究Rep蛋白和ITR在整合过程中的作用,我们比较了三种含有绿色荧光蛋白(GFP)表达盒的不同质粒的整合效率。一种质粒不含病毒序列;第二种质粒在报告基因(整合盒)两侧含有AAV ITR,第三种质粒由一个整合盒加一个Rep78表达盒组成。转染293细胞一天后,通过流式细胞术分选荧光细胞并以每孔1个细胞接种。分选两周后,监测菌落中GFP的稳定表达。转染不含病毒序列的GFP质粒未产生稳定的荧光菌落。单独转染含有整合盒的质粒(ITR侧翼的GFP)产生稳定荧光菌落的频率为5.3%±1.0%,而转染同时含有整合盒和Rep78表达盒的质粒产生稳定荧光菌落的频率为47%±7.5%。Southern印迹分析表明,在Rep78存在的情况下,超过50%的分析克隆中整合靶向AAVS1位点。一些克隆还显示出整合的GFP盒的串联阵列。检测到了头对头和头对尾两种方向。这些发现表明,AAV ITR和Rep78蛋白的存在增强了DNA序列整合到细胞基因组中,并且在Rep78存在的情况下,整合盒靶向AAVS1。