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Interactions between APOBEC3 and murine retroviruses: Mechanisms of restriction and drug resistance.

机译:APOBEC3和鼠逆转录病毒之间的相互作用:限制和耐药性的机制。

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摘要

APOBEC3 proteins are important for antiretroviral defense in mammals. The activity of these factors has been well characterized in vitro, identifying cytidine deamination as an active source of viral restriction leading to hypermutation of viral DNA synthesized during reverse transcription. These mutations can result in viral lethality via disruption of critical genes, but in some cases is insufficient to completely obstruct viral replication. This sublethal level of mutagenesis could aid in viral evolution. A cytidine deaminase-independent mechanism of restriction has also been identified, as catalytically inactive proteins are still able to inhibit infection in vitro. Murine retroviruses do not exhibit characteristics of hypermutation by mouse APOBEC3 in vivo. However, human APOBEC3G protein expressed in transgenic mice maintains antiviral restriction and actively deaminates viral genomes. The mechanism by which endogenous APOBEC3 proteins function is unclear.;The mouse provides a system amenable to studying the interaction of APOBEC3 and retroviral targets in vivo. Virions packaging endogenous protein were isolated from mice for analysis of APOBEC3 without a need for protein overexpression. Biochemical and molecular studies are possible using endogenous protein and viral nucleic acids. Additionally, the effect of APOBEC3-mediated viral mutagenesis and subsequent drug resistance can be modeled in this system. Human APOBEC3G transgenic mice infected with murine retroviruses and treated with an antiretroviral drug allows examination of natural levels of viral replication, APOBEC3 induced hypermutation, and potential viral escape.;Studies described herein explore mechanisms of APOBEC3-mediated restriction and drug resistance in vivo. We show that endogenous APOBEC3 protein is efficiently packaged into viral cores, and this protein maintains catalytic activity against artificial substrates. We recovered low levels of G-to-A mutations from natural reverse transcription products, although approximately five to ten fold lower than that thought to be necessary for efficient viral restriction. We show that inhibition of reverse transcription is the main mechanism of restriction in vivo, and can be targeted through virion-packaged or cell-associated protein.;Transgenically-expressed human APOBEC3G is instead able to heavily deaminate viral DNA, although frequently to sublethal levels. We assessed the effect of both murine APOBEC3 and APOBEC3G on viral replication in the presence and absence of an antiretroviral drug, and examined viruses for drug resistance mutations. APOBEC3G has a clear effect on the rate of viral mutagenesis in vivo, with the potential to induce drug resistance mutations.
机译:APOBEC3蛋白对于哺乳动物的抗逆转录病毒防御很重要。这些因子的活性已在体外得到很好的表征,将胞苷脱氨确定为病毒限制性内源性活性,可导致逆转录合成的病毒DNA超突变。这些突变可通过破坏关键基因而导致病毒致死,但在某些情况下不足以完全阻碍病毒复制。这种亚致死水平的诱变可能有助于病毒进化。还已经确定了不依赖胞苷脱氨酶的限制机制,因为非催化活性的蛋白仍然能够在体外抑制感染。鼠逆转录病毒在体内没有表现出小鼠APOBEC3的超突变特征。但是,在转基因小鼠中表达的人APOBEC3G蛋白保持了抗病毒限制并积极地使病毒基因组脱氨基。内源性APOBEC3蛋白功能的机制尚不清楚。小鼠提供了一个适合体内研究APOBEC3与逆转录病毒靶标相互作用的系统。从小鼠中分离出包装了内源性蛋白质的病毒粒子,用于分析APOBEC3,而无需蛋白质过表达。使用内源性蛋白质和病毒核酸可以进行生化和分子研究。此外,可以在该系统中模拟APOBEC3介导的病毒诱变和随后的耐药性的作用。感染鼠逆转录病毒并用抗逆转录病毒药物治疗的人APOBEC3G转基因小鼠可检查病毒复制的自然水平,APOBEC3诱导的超突变和潜在的病毒逃逸。我们显示内源性APOBEC3蛋白被有效地包装到病毒核心中,并且该蛋白保持对人工底物的催化活性。我们从天然逆转录产物中回收了低水平的G-to-A突变,尽管比有效病毒限制所必需的低约五到十倍。我们表明逆转录抑制是体内限制的主要机制,并且可以通过病毒体包装或与细胞相关的蛋白质来靶向。转基因表达的人APOBEC3G能够使病毒DNA严重脱氨,尽管经常达到亚致死水平。 。在存在和不存在抗逆转录病毒药物的情况下,我们评估了鼠APOBEC3和APOBEC3G对病毒复制的影响,并检查了病毒的耐药性突变。 APOBEC3G对体内病毒诱变的速率有明显影响,并有可能诱导耐药性突变。

著录项

  • 作者

    MacMillan, Alyssa L.;

  • 作者单位

    University of Pennsylvania.;

  • 授予单位 University of Pennsylvania.;
  • 学科 Biology Virology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 153 p.
  • 总页数 153
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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