Vector system for herpes simplex virus/phiC31 integrase (HSV/phiC31) heterozygosity amplicon and preparation method of vector system
A carrier system and amplicon technology, which is applied in the field of new HSV/ΦC31 heterozygous amplicon carrier system and its preparation, can solve the problem of long-term expression of transgenes, and achieve the effect of avoiding the risk of insertion mutation
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Embodiment 1
[0045] Embodiment 1 Novel heterozygous HSV / ΦC31 amplicon vector preparation method
[0046] The oligonucleotide core sequence attB (44bp) of the ΦC31 integrase recognition site was artificially synthesized, annealed and digested with KpnI / SpeI and cloned into plasmid pCMV-C31 to obtain recombinant plasmid pCMV-attb-C31. Using the recombinant plasmid as a template, design primers for PCR to obtain the PCR product (CMV-attb-C31-pA) composed of CMV regulatory elements, ΦC31 integrase gene and its polyA (pA) element, and clone it into the carrying There is an HSV amplicon vector (pHSV-GFP) encoding the green fluorescent protein gene (GFP), and the clone is sequenced to obtain a heterozygous HSV / C31 amplicon vector pHSV-GFP-CMV-attB-C31.
Embodiment 2
[0047] Embodiment 2 Preparation of novel heterozygous HSV / ΦC31 amplicon vector virus
[0048] The heterozygous HSV / ΦC31 amplicon vector or general HSV amplicon vector was mixed with 5 cosmids COS6Δa, COS14, COS28, COS56, COS48Δa at a mass ratio of 2:1:1:1:1:1. Transfection was performed on VERO 2-2 cells using liposomal LipofectamineTM. After 5 hours of transfection, 2% fetal bovine serum was added, and after culturing for 2-3 days, the cells and supernatant were collected, frozen and thawed three times, centrifuged at 1500 rpm for 5 minutes, and the virus supernatant was harvested.
Embodiment 3
[0049] Example 3 Novel heterozygous HSV / ΦC31 amplicon carrier virus system infection cell analysis
[0050] Infect the 293 cell line on a 96-well plate with 10ul of the heterozygous HSV / ΦC31 amplicon vector virus. GFP expression can be observed 2 days after the infection of the human embryonic kidney 293 cells, and flow cytometry detection shows , 4 days, 6 days and 8 days later, the percentages of positive cells expressing green fluorescent protein were 35%, 36.8%, 36.9%, and 37.6%, respectively, showing that the percentage of positive cells expressing green fluorescent protein did not change as the cells were passaged. After the control pHSV-GFP infected human embryonic kidney 293 cells, the expression of GFP could also be observed, but flow cytometry showed that the proportion of positive cells expressing green fluorescent protein gradually increased after 2 days, 4 days, 6 days and 8 days after infection. reduce. The results suggested that the novel heterozygous HSV / ΦC31 ...
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