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转录组HIV-1储存库分析揭示了线粒体功能在HIV-1潜伏中的作用。

Transcriptomic HIV-1 reservoir profiling reveals a role for mitochondrial functionality in HIV-1 latency.

作者信息

Man Shirley, Jansen Jade, Kroeze Stefanie, Geijtenbeek Teunis B H, Kootstra Neeltje A

机构信息

Department of Experimental Immunology, Amsterdam UMC Location University of Amsterdam, Amsterdam, Netherlands.

Amsterdam institute for Immunology and Infectious Diseases, Amsterdam, Netherlands.

出版信息

PLoS Pathog. 2025 Jan 10;21(1):e1012822. doi: 10.1371/journal.ppat.1012822. eCollection 2025 Jan.

Abstract

Identifying cellular and molecular mechanisms maintaining HIV-1 latency in the viral reservoir is crucial for devising effective cure strategies. Here we developed an innovative flow cytometry-fluorescent in situ hybridization (flow-FISH) approach for direct ex vivo reservoir detection without the need for reactivation using a combination of probes detecting abortive and elongated HIV-1 transcripts. Our flow-FISH assay distinguished between HIV-1-infected CD4+ T cells expressing abortive or elongated HIV-1 transcripts in PBMC from untreated and ART-treated PWH from the Amsterdam Cohort Studies. This flow-FISH method was employed to isolate CD4+ T cells expressing abortive or elongated HIV-1 transcripts from five ART-naïve PWH for transcriptomic analysis by 3' RNA sequencing. Supervised cluster analysis identified several differentially expressed mitochondrial genes in infected CD4+ T cells with abortive HIV-1 transcripts compared to cells containing elongated HIV-1 transcripts. Notably, enhancing mitochondrial function induced HIV-1 transcription in PBMC from PWH. Our data strongly suggests that cellular metabolism is involved in maintaining HIV-1 latency and show that improving mitochondrial functions induces HIV-1 transcriptional activity in PWH. These findings underline the relevance of metabolic regulation in HIV-1 infection, and support the development of strategies modulating immunometabolism to target viral latency.

摘要

确定维持病毒储存库中HIV-1潜伏状态的细胞和分子机制对于制定有效的治愈策略至关重要。在此,我们开发了一种创新的流式细胞术-荧光原位杂交(flow-FISH)方法,用于直接体外检测病毒储存库,无需使用检测流产型和延长型HIV-1转录本的探针组合进行再激活。我们的flow-FISH检测区分了来自阿姆斯特丹队列研究中未经治疗和接受抗逆转录病毒治疗的艾滋病毒感染者(PWH)外周血单个核细胞(PBMC)中表达流产型或延长型HIV-1转录本的HIV-1感染CD4+ T细胞。这种flow-FISH方法用于从五名未接受过抗逆转录病毒治疗的PWH中分离出表达流产型或延长型HIV-1转录本的CD4+ T细胞,通过3' RNA测序进行转录组分析。监督聚类分析确定,与含有延长型HIV-1转录本的细胞相比,感染了流产型HIV-1转录本的CD4+ T细胞中有几个线粒体基因差异表达。值得注意的是,增强线粒体功能可诱导PWH的PBMC中的HIV-1转录。我们的数据强烈表明,细胞代谢参与维持HIV-1潜伏状态,并表明改善线粒体功能可诱导PWH中的HIV-1转录活性。这些发现强调了代谢调节在HIV-1感染中的相关性,并支持开发调节免疫代谢以靶向病毒潜伏状态的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/401d/11723532/03472967b3ec/ppat.1012822.g001.jpg

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