Morphologic changes in human immunodeficiency virus type 1 virions secondary to intravirion reverse transcription: evidence indicating that reverse transcription may not take place within the intact viral core.

Journal of human virology Pub Date : 2000-05-01
H Zhang, G Dornadula, J Orenstein, R J Pomerantz
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Abstract

Introduction: In the past, retroviral endogenous reverse transcription (ERT) was considered an artificial process, secondary to permeabilization of the viral envelope by detergents or amphipathic peptides. However, recently we have demonstrated that ERT may occur in a variety of lentiviruses without detergent treatment and may lead to increased infectivity of lentivirions in initially quiescent T lymphocytes and nonproliferating cells, such as macrophages. As full-length reverse transcripts could be synthesized within lentiviral particles, it is worth evaluating the potential alterations in lentiviral morphology due to the stimulation of intravirion reverse transcription.

Methods: Using quantitative DNA-polymerase chain reaction (PCR) and transmission electron microscopy (TEM), we characterized critical alterations in human immunodeficiency virus type 1 (HIV-1) virions after stimulation of intravirion reverse transcription.

Results: Intravirion reverse transcription in HIV-1 virions was stimulated using deoxyribonucleoside triphosphates (dNTPs) and physiologic polyamines. Our studies indicated that HIV-1 virions, in which intravirion reverse transcription was stimulated, showed dissolution of the p24-shelled viral core and absence of the core-envelope linkage (CEL) region by TEM. These changes in the structure of the core correlate with the in vitro alterations in virion infectivity on primary cells.

Conclusions: Stimulation of intravirion HIV-1 reverse transcription leads to morphologic changes in the viral particles that suggest changes in the compact viral core, which is consistent with active reverse transcription before infection of target cells. Further, via this unique approach, we suggest that intravirion or intracellular reverse transcription of HIV-1 is unlikely to take place within intact viral cores made up of p24-containing outer shells. As such, these results suggest a new approach to further dissect the intravirion or intracellular reverse transcription machinery of lentiviruses.

人类免疫缺陷病毒1型病毒粒子继发于病毒粒子内逆转录的形态变化:证据表明逆转录可能不会在完整的病毒核心内发生。
过去,逆转录病毒内源性逆转录(ERT)被认为是一个人工过程,次于洗涤剂或两性肽对病毒包膜的渗透作用。然而,最近我们已经证明,ERT可能发生在多种慢病毒中,而不需要洗涤剂处理,并可能导致慢病毒粒子在初始静止的T淋巴细胞和非增殖细胞(如巨噬细胞)中的感染性增加。由于全长逆转录本可以在慢病毒颗粒内合成,因此有必要评估病毒颗粒内逆转录刺激对慢病毒形态的潜在改变。方法:利用定量dna聚合酶链反应(PCR)和透射电镜(TEM)技术,研究了病毒内逆转录刺激后人类免疫缺陷病毒1型(HIV-1)病毒粒子的关键变化。结果:三磷酸脱氧核糖核苷(dNTPs)和生理性多胺可刺激HIV-1病毒粒子的病毒内逆转录。我们的研究表明,激发病毒内逆转录的HIV-1病毒粒子通过透射电镜显示p24壳病毒核的溶解和核包膜连锁(CEL)区域的缺失。这些核心结构的变化与体外病毒粒子对原代细胞的感染性变化有关。结论:刺激病毒内HIV-1逆转录导致病毒颗粒的形态变化,提示致密病毒核心发生变化,这与感染靶细胞前的活性逆转录一致。此外,通过这种独特的方法,我们认为HIV-1的病毒内或细胞内逆转录不太可能发生在由含有p24的外壳组成的完整病毒核内。因此,这些结果为进一步剖析慢病毒的病毒内或细胞内逆转录机制提供了一种新的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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