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1.
Journal of Bacteriology and Virology ; : 69-80, 2019.
Article in English | WPRIM | ID: wpr-764233

ABSTRACT

The dynamics of the actin cytoskeleton plays a pivotal role in the process of cell division, the transportation of organelles, vesicle trafficking and cell movement. Human immunodeficiency virus type 1 (HIV-1) hijacks the actin dynamics network during the viral entry and migration of the pre-integration complex (PIC) into the nucleus. Actin dynamics linked to HIV-1 has emerged as a potent therapeutic target against HIV infection. Although some inhibitors have been intensely analyzed with regard to HIV-1 infection, their effects are sometimes disputed and the exact mechanisms for actin dynamics in HIV infection have not been well elucidated. In this study, the small molecules regulating HIV-1 infection from diverse inhibitors of the actin dynamic network were screened. Two compounds, including Chaetoglobosin A and CK-548, were observed to specifically bar the viral infection, while the cytochalasin family, 187-1, N-WASP inhibitor, Rho GTPase family inhibitors (EHop-016, CID44216842, and ML-141) and LIMK inhibitor (LIM domain kinase inhibitor) increased the viral infection without cytotoxicity within a range of ~ µM. However, previously known inhibitory compounds of HIV-1 infection, such as Latrunculin A, Jasplakinolide, Wiskostatin and Swinholide A, exhibited either an inhibitory effect on HIV-1 infection combined with severe cytotoxicity or showed no effects. Our data indicate that Chaetoglobosin A and CK-548 have considerable potential for development as new therapeutic drugs for the treatment of HIV infection. In addition, the newly identified roles of Cytochalasins and some inhibitors of Rho GTPase and LIMK may provide fundamental knowledge for understanding the complicated actin dynamic pathway when infected by HIV-1. Remarkably, the newly defined action modes of the inhibitors may be helpful in developing potent anti-HIV drugs that target the actin network, which are required for HIV infection.


Subject(s)
Humans , Actin Cytoskeleton , Actins , Anti-HIV Agents , Cell Division , Cell Movement , Cytochalasins , GTP Phosphohydrolases , HIV Infections , HIV-1 , Organelles , Phosphotransferases , Transportation
2.
Journal of Bacteriology and Virology ; : 57-66, 2004.
Article in Korean | WPRIM | ID: wpr-14988

ABSTRACT

Human immunodeficiency virus type 1 (HIV-1) virus causes severe defect in the immune system and affects the host cell gene expression profoundly. The gene expression pattern will be characterized by changes in cellular mRNA levels that are dependent on both the stage of infection and the biological state of the infected cells. The expression levels of 7,404 cellular RNA transcripts were assessed in H9 cells at different time points after HIV-1 IIIB infection. In total 7 time-points, 959/7,404 (13%) genes were a 2-fold or greater expressed. 387 of 959 genes (40.4%) were up-regulated, and other 572 genes (59.6%) were down-regulated. Three hundred seventeen genes were up-regulated a 2-fold or greater at 72 hr postinfection and 2 to 139 genes were up-regulated at the other time-points. In contrast, 126 to 349 genes were down-regulated a 2-fold or greater in all time-points, excepting 6 hr postinfection. Twenty-three genes were up-regulated a 2-fold or greater over at least four of seven time-points, which were mostly ribosomal proteins and MHCs. Especially, MHCs including HLA-DRA were steadily up-regulated from 24 hr postinfection. Thirty genes were down-regulated a 2-fold or greater in all the time-points, which were mainly related with synthesis and metabolism. These results show that host cell gene expression was altered by HIV-1 infection according to time-points and will provide a framework for studies on interactions between host and HIV-1 infection.


Subject(s)
Gene Expression , HIV-1 , HLA-DR alpha-Chains , Immune System , Metabolism , Oligonucleotide Array Sequence Analysis , Ribosomal Proteins , RNA , RNA, Messenger
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