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Cellular and molecular mechanisms involved in the establishment of HIV-1 latency

机译:建立HIV-1潜伏期的细胞和分子机制

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摘要

Latently infected cells represent the major barrier to either a sterilizing or a functional HIV-1 cure. Multiple approaches to reactivation and depletion of the latent reservoir have been attempted clinically, but full depletion of this compartment remains a long-term goal. Compared to the mechanisms involved in the maintenance of HIV-1 latency and the pathways leading to viral reactivation, less is known about the establishment of latent infection. This review focuses on how HIV-1 latency is established at the cellular and molecular levels. We first discuss how latent infection can be established following infection of an activated CD4 T-cell that undergoes a transition to a resting memory state and also how direct infection of a resting CD4 T-cell can lead to latency. Various animal, primary cell, and cell line models also provide insights into this process and are discussed with respect to the routes of infection that result in latency. A number of molecular mechanisms that are active at both transcriptional and post-transcriptional levels have been associated with HIV-1 latency. Many, but not all of these, help to drive the establishment of latent infection, and we review the evidence in favor of or against each mechanism specifically with regard to the establishment of latency. We also discuss the role of immediate silent integration of viral DNA versus silencing of initially active infections. Finally, we discuss potential approaches aimed at limiting the establishment of latent infection.
机译:潜伏感染的细胞代表了无菌或功能性HIV-1治愈的主要障碍。临床上已经尝试了多种方法来重新激活和耗竭潜伏储层,但是完全耗尽该隔室仍然是一个长期目标。与维持HIV-1潜伏期的机制和导致病毒再激活的途径相比,关于潜伏感染的建立知之甚少。这篇综述着重于如何在细胞和分子水平上建立HIV-1潜伏期。我们首先讨论如何在激活的CD4 T细胞经历过渡到静止记忆状态的感染后建立潜在感染,以及静止CD4 T细胞的直接感染如何导致潜伏期。各种动物,原代细胞和细胞系模型也提供了对该过程的见解,并针对导致潜伏期的感染途径进行了讨论。在转录和转录后水平均具有活性的许多分子机制已与HIV-1潜伏期有关。其中许多(但不是全部)有助于推动潜伏感染的建立,并且我们回顾了支持或反对每种机制的证据,特别是关于潜伏期的建立。我们还讨论了病毒DNA立即沉默整合与沉默最初活跃感染的作用。最后,我们讨论了旨在限制潜在感染建立的潜在方法。

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