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Novel Drugs and Vaccines Based on the Structure and Function of HIV Pathogenic Proteins Including Nef

机译:基于包括NEF的HIV致病蛋白的结构和功能的新药和疫苗

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Evidence is presented to suggest that HIV-1 accessory protein Nef could be involved in AIDS pathogenesis. When present in extracellular medium, Nef causes the death of a wide variety of cells in vitro and may therefore be responsible for the depletion of bystander cells in lymphoid tissues during HIV infection. When present inside the cell, Nef could prevent the death of infected cells and thereby contribute to increased viral load. Intracellular Nef does this by preventing apoptosis of infected cells by either inhibiting proteins involved in apoptosis or preventing the infected cells from being recognized by CTLs. Neutralization of extracellular Nef could prevent the death of uninfected immune cells and thereby the destruction of the immune system. Neutralization of intracellular Nef could hasten the death of infected cells and help reduce the viral load. Nef is therefore a very important molecular target for developing therapeutics that slow progression to AIDS. The N-terminal region of Nef and the naturally occurring bee venom mellitin have very similar primary and tertiary structures, and they both act by destroying membranes. Chemical analogs of a mellitin inhibitor prevent Nef-mediated cell death and inhibit the interaction of Nef with cellular proteins involved in apoptosis. Naturally occurring bee propolis also contains substances that prevent Nef-mediated cell lysis and increases proliferation of CD4 cells in HIV-infected cultures. These chemical compounds and natural products are water soluble and nontoxic and are therefore potentially very useful candidate drugs.
机译:提出了证据表明HIV-1辅助蛋白NEF可以参与艾滋病发病机制。当存在细胞外培养基时,NEF在体外导致各种细胞死亡,因此可能负责HIV感染期间淋巴组织中的旁观者细胞的枯竭。当存在在细胞内时,NEF可以防止受感染细胞的死亡,从而有助于增加病毒载荷。通过通过抑制细胞凋亡的抑制蛋白或预防受感染的细胞被CTL识别来阻止感染细胞的细胞凋亡来实现这一点。细胞外Nef的中和可以防止未感染的免疫细胞死亡,从而破坏免疫系统。细胞内Nef的中和可以加速感染细胞的死亡,有助于降低病毒载荷。因此,NEF是一种非常重要的分子靶标,用于培养治疗效果缓慢进展的治疗方法。 Nef的N-末端区域和天然存在的蜂毒液髓鞘素具有非常相似的主要和三级结构,并且它们通过破坏膜而作用。 Mellitin抑制剂的化学类似物预防Nef介导的细胞死亡并抑制NEF与参与细胞凋亡的细胞蛋白的相互作用。天然存在的蜂蜂胶还含有预防Nef介导的细胞裂解的物质,并增加艾滋病毒感染培养物中CD4细胞的增殖。这些化合物和天然产物是水溶性和无毒的,因此可能是非常有用的候选药物。

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