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本文引用的文献

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Escherichia coli RNase HI inhibits murine leukaemia virus reverse transcription in vitro and yeast retrotransposon Ty1 transposition in vivo.大肠杆菌核糖核酸酶 HI 在体外抑制小鼠白血病病毒逆转录,并在体内抑制酵母逆转座子 Ty1 转座。
Genes Cells. 1996 Jun;1(6):581-93. doi: 10.1046/j.1365-2443.1996.d01-265.x.
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Inhibition of human and simian immunodeficiency virus protease function by targeting Vpx-protease-mutant fusion protein into viral particles.通过将Vpx-蛋白酶突变体融合蛋白靶向病毒颗粒来抑制人类和猿猴免疫缺陷病毒蛋白酶功能。
J Virol. 1996 Jun;70(6):3378-84. doi: 10.1128/JVI.70.6.3378-3384.1996.
3
Expression of transduced genes in mice generated by infecting blastocysts with avian leukosis virus-based retroviral vectors.通过用基于禽白血病病毒的逆转录病毒载体感染囊胚所产生的小鼠中转导基因的表达。
Proc Natl Acad Sci U S A. 1996 May 14;93(10):4931-6. doi: 10.1073/pnas.93.10.4931.
4
Proteolytic activity of human immunodeficiency virus Vpr- and Vpx-protease fusion proteins.人类免疫缺陷病毒Vpr-蛋白酶与Vpx-蛋白酶融合蛋白的蛋白水解活性
Virology. 1996 May 1;219(1):307-13. doi: 10.1006/viro.1996.0253.
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Assembly of HIV GAG-B-galactosidase fusion proteins into virus particles.HIV GAG-β-半乳糖苷酶融合蛋白组装成病毒颗粒。
Virology. 1994 May 1;200(2):524-34. doi: 10.1006/viro.1994.1215.
6
Effects of the gag region on genome stability: avian retroviral vectors that contain sequences from the Bryan strain of Rous sarcoma virus.gag区域对基因组稳定性的影响:含有劳氏肉瘤病毒布莱恩株序列的禽逆转录病毒载体。
Virology. 1994 Sep;203(2):211-20. doi: 10.1006/viro.1994.1478.
7
A system for tissue-specific gene targeting: transgenic mice susceptible to subgroup A avian leukosis virus-based retroviral vectors.一种用于组织特异性基因靶向的系统:对基于A亚群禽白血病病毒的逆转录病毒载体敏感的转基因小鼠。
Proc Natl Acad Sci U S A. 1994 Nov 8;91(23):11241-5. doi: 10.1073/pnas.91.23.11241.
8
Targeting of a nuclease to murine leukemia virus capsids inhibits viral multiplication.将核酸酶靶向小鼠白血病病毒衣壳可抑制病毒增殖。
Proc Natl Acad Sci U S A. 1995 Jan 17;92(2):364-8. doi: 10.1073/pnas.92.2.364.
9
Targeting foreign proteins to human immunodeficiency virus particles via fusion with Vpr and Vpx.通过与Vpr和Vpx融合将外源蛋白靶向人类免疫缺陷病毒颗粒。
J Virol. 1995 Jun;69(6):3389-98. doi: 10.1128/JVI.69.6.3389-3398.1995.
10
A large deletion in the connection subdomain of murine leukemia virus reverse transcriptase or replacement of the RNase H domain with Escherichia coli RNase H results in altered polymerase and RNase H activities.鼠白血病病毒逆转录酶连接子域中的大片段缺失,或用大肠杆菌核糖核酸酶H替换核糖核酸酶H结构域,会导致聚合酶和核糖核酸酶H活性发生改变。
Biochemistry. 1993 Jun 1;32(21):5508-17. doi: 10.1021/bi00072a004.

鼠白血病病毒Gag-大肠杆菌核糖核酸酶HI融合多蛋白的表达显著抑制病毒传播。

Expression of a murine leukemia virus Gag-Escherichia coli RNase HI fusion polyprotein significantly inhibits virus spread.

作者信息

VanBrocklin M, Ferris A L, Hughes S H, Federspiel M J

机构信息

Molecular Medicine Program, Mayo Clinic and Mayo Foundation, Rochester, Minnesota 55905, USA.

出版信息

J Virol. 1997 Apr;71(4):3312-8. doi: 10.1128/JVI.71.4.3312-3318.1997.

DOI:10.1128/JVI.71.4.3312-3318.1997
PMID:9060701
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC191470/
Abstract

The antiviral strategy of capsid-targeted viral inactivation (CTVI) was designed to disable newly produced virions by fusing a Gag or Gag-Pol polyprotein to a degradative enzyme (e.g., a nuclease or protease) that would cause the degradative enzyme to be inserted into virions during assembly. Several new experimental approaches have been developed that increase the antiviral effect of the CTVI strategy on retroviral replication in vitro. A Moloney murine leukemia virus (Mo-MLV) Gag-Escherichia coli RNase HI fusion has a strong antiviral effect when used prophylactically, inhibiting the spread of Mo-MLV and reducing virus titers 1,500- to 2,500-fold. A significant (approximately 100-fold) overall improvement of the CTVI prophylactic antiviral effect was produced by a modification in the culture conditions which presumably increases the efficiency of delivery and expression of the Mo-MLV Gag fusion polyproteins. The therapeutic effect of Mo-MLV Gag-RNase HI polyproteins is to reduce the production of infectious Mo-MLV up to 18-fold. An Mo-MLV Gag-degradative enzyme fusion junction was designed that can be cleaved by the Mo-MLV protease to release the degradative enzyme.

摘要

衣壳靶向病毒灭活(CTVI)的抗病毒策略旨在通过将Gag或Gag - Pol多聚蛋白与一种降解酶(如核酸酶或蛋白酶)融合,使新产生的病毒粒子失活,从而在病毒组装过程中将降解酶插入病毒粒子中。已经开发出几种新的实验方法,这些方法增强了CTVI策略在体外对逆转录病毒复制的抗病毒效果。莫洛尼鼠白血病病毒(Mo - MLV)的Gag - 大肠杆菌核糖核酸酶HI融合蛋白在预防性使用时具有很强的抗病毒效果,可抑制Mo - MLV的传播并将病毒滴度降低1500至2500倍。通过改变培养条件对CTVI预防性抗病毒效果产生了显著的(约100倍)整体改善,这可能提高了Mo - MLV Gag融合多聚蛋白的递送和表达效率。Mo - MLV Gag - 核糖核酸酶HI多聚蛋白的治疗效果是将感染性Mo - MLV的产生减少多达18倍。设计了一种Mo - MLV Gag - 降解酶融合接头,它可以被Mo - MLV蛋白酶切割以释放降解酶。