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[Construction and identification of recombinant adenoviral vector encoding B7-H4 gene].

Pei-yi Yan, Hangping Yao, Yun Qian, Lijuan Gu, Lan Tao, Lihuang Zhang

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Abstract

OBJECTIVE: To construct the recombinant adenovirus containing B7-H4 gene with AdEasy XL system and to identify its biological activities. METHODS: The full-length mouse B7-H4 gene was amplified by RT-PCR from C57 mouse lung and put into T vector, then verified by sequencing. Digested with Xhol I and EcoR V the B7-H4 gene was inserted into pshuttle-CMW(PSC). Pme I linearized shuttle plasmid was transformed into E.coli BJ5183-AD-1 to obtain the recombinant adenoviral plasmid pAd-mB7-H4 by efficient homologous recombination. Then the recombinant adenovirus-mB7-H4/Ad was obtained by packaging Pac I linearized in D-293 cells. The mRNA and protein expression of B7-H4 in mB7-H4/Ad infected AD-293 cells were detected by RT-PCR and Western blot, respectively. mB7-H4/Ad was used to infect L929 cells, the bioactivity of expressed B7-H4 in stimulation of T lymphocytes proliferation and cytokine production were tested. RESULTS: The full-length of mB7-H4 was cloned from mouse lung tissue cDNA and verified by sequencing. The recombinant plasmid pAd-m B7-H4 was successfully generated by homologous recombination, and the primary mB7-H4/Ad was obtained by packaging pAd-B7-H4 in AD-293 cells. Compared with the negative control, L929 cells infected with mB7-H4/Ad effectively inhibited the proliferation of T lymphocytes and cytokines production. CONCLUSION: The bioactive recombinant adenovirus mB7-H4/Ad has been successfully constructed.

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What this paper is about

OBJECTIVE: To construct the recombinant adenovirus containing B7-H4 gene with AdEasy XL system and to identify its biological activities. METHODS: The full-length mouse B7-H4 gene was amplified by RT-PCR from C57 mouse lung and put into T vector, then verified by sequencing. Digested with Xhol I and EcoR V the B7-H4 gene was inserted into pshuttle-CMW(PSC). Pme I linearized shuttle plasmid was transformed into E.coli BJ5183-AD-1 to obtain the recombinant adenoviral plasmid pAd-mB7-H4 by efficient homologous recombination. Then the recombinant adenovirus-mB7-H4/Ad was obtained by packaging Pac I linearized in D-293 cells. The mRNA and protein expression of B7-H4 in mB7-H4/Ad infected AD-293 cells were detected by RT-PCR and Western blot, respectively. mB7-H4/Ad was used to infect L929 cells, the bioactivity of expressed B7-H4 in stimulation of T lymphocytes proliferation and cytokine production were tested. RESULTS: The full-length of mB7-H4 was cloned from mouse lung tissue cDNA and verified by sequencing. The recombinant plasmid pAd-m B7-H4 was successfully generated by homologous recombination, and the primary mB7-H4/Ad was obtained by packaging pAd-B7-H4 in AD-293 cells. Compared with the negative control, L929 cells infected with mB7-H4/Ad effectively inhibited the proliferation of T lymphocytes and cytokines production. CONCLUSION: The bioactive recombinant adenovirus mB7-H4/Ad has been successfully constructed.

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Available abstract

OBJECTIVE: To construct the recombinant adenovirus containing B7-H4 gene with AdEasy XL system and to identify its biological activities. METHODS: The full-length mouse B7-H4 gene was amplified by RT-PCR from C57 mouse lung and put into T vector, then verified by sequencing. Digested with Xhol I and EcoR V the B7-H4 gene was inserted into pshuttle-CMW(PSC). Pme I linearized shuttle plasmid was transformed into E.coli BJ5183-AD-1 to obtain the recombinant adenoviral plasmid pAd-mB7-H4 by efficient homologous recombination. Then the recombinant adenovirus-mB7-H4/Ad was obtained by packaging Pac I linearized in D-293 cells. The mRNA and protein expression of B7-H4 in mB7-H4/Ad infected AD-293 cells were detected by RT-PCR and Western blot, respectively. mB7-H4/Ad was used to infect L929 cells, the bioactivity of expressed B7-H4 in stimulation of T lymphocytes proliferation and cytokine production were tested. RESULTS: The full-length of mB7-H4 was cloned from mouse lung tissue cDNA and verified by sequencing. The recombinant plasmid pAd-m B7-H4 was successfully generated by homologous recombination, and the primary mB7-H4/Ad was obtained by packaging pAd-B7-H4 in AD-293 cells. Compared with the negative control, L929 cells infected with mB7-H4/Ad effectively inhibited the proliferation of T lymphocytes and cytokines production. CONCLUSION: The bioactive recombinant adenovirus mB7-H4/Ad has been successfully constructed.

Key concepts: Recombinant DNA, Molecular biology, Biology, Plasmid, Homologous recombination, Viral vector, Complementary DNA, Gene

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