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潜伏逆转剂调节 HIV 抗原加工和呈递给 CD8 T 细胞。

Latency reversal agents modulate HIV antigen processing and presentation to CD8 T cells.

机构信息

Ragon Institute of MGH, MIT and Harvard, Massachusetts General Hospital and Harvard Medical School, Cambridge, Massachusetts, United States of America.

Center for Systems Immunology, Departments of Immunology and Computational & Systems Biology, University of Pittsburgh School of Medicine, Pittsburgh, Pennsylvania, United States of America.

出版信息

PLoS Pathog. 2020 Mar 20;16(3):e1008442. doi: 10.1371/journal.ppat.1008442. eCollection 2020 Mar.

Abstract

Latency reversal agents (LRA) variably induce HIV re-expression in CD4 T cells but reservoirs are not cleared. Whether HIV epitope presentation is similar between latency reversal and initial infection of CD4 T cells is unknown yet crucial to define immune responses able to detect HIV-infected CD4 T cells after latency reversal. HIV peptides displayed by MHC comes from the intracellular degradation of proteins by proteasomes and post-proteasomal peptidases but the impact of LRAs on antigen processing is not known. Here we show that HDAC inhibitors (HDCAi) reduced cytosolic proteolytic activities while PKC agonists (PKCa) increased them to a lesser extent than that induced by TCR activation. During the cytosolic degradation of long HIV peptides in LRA-treated CD4 T cells extracts, HDACi and PKCa modulated degradation patterns of peptides and altered the production of HIV epitopes in often opposite ways. Beyond known HIV epitopes, HDACi narrowed the coverage of HIV antigenic fragments by 8-11aa degradation peptides while PKCa broadened it. LRAs altered HIV infection kinetics and modulated CD8 T cell activation in an epitope- and time-dependent manner. Interestingly the efficiency of endogenous epitope processing and presentation to CD8 T cells was increased by PKCa Ingenol at early time points despite low levels of antigens. LRA-induced modulations of antigen processing should be considered and exploited to enhance and broaden HIV peptide presentation by CD4 T cells and to improve immune recognition after latency reversal. This property of LRAs, if confirmed with other antigens, might be exploited to improve immune detection of diseased cells beyond HIV.

摘要

潜伏期逆转剂 (LRA) 可改变地诱导 CD4 T 细胞中的 HIV 重新表达,但储库并未清除。潜伏期逆转和 CD4 T 细胞初始感染之间的 HIV 表位呈递是否相似尚不清楚,但对于定义能够在潜伏期逆转后检测到 HIV 感染的 CD4 T 细胞的免疫反应至关重要。MHC 展示的 HIV 肽来自蛋白酶体和蛋白酶体后肽酶对蛋白质的细胞内降解,但 LRA 对抗原加工的影响尚不清楚。在这里,我们表明 HDAC 抑制剂 (HDCAi) 降低了细胞质蛋白水解活性,而 PKC 激动剂 (PKCa) 的作用较小,但不如 TCR 激活诱导的作用大。在 LRA 处理的 CD4 T 细胞提取物中长 HIV 肽的细胞质降解过程中,HDACi 和 PKCa 调节了肽的降解模式,并以相反的方式改变了 HIV 表位的产生。除了已知的 HIV 表位外,HDACi 通过 8-11aa 降解肽缩小了 HIV 抗原片段的覆盖范围,而 PKCa 则扩大了它。LRAs 改变了 HIV 感染动力学,并以表位和时间依赖的方式调节 CD8 T 细胞的激活。有趣的是,尽管抗原水平较低,PKCa 仍能在早期增加内源性表位加工和向 CD8 T 细胞呈递的效率。应该考虑并利用 LRA 诱导的抗原加工调节作用,以增强和扩大 CD4 T 细胞对 HIV 肽的呈递,并改善潜伏期逆转后的免疫识别。如果在其他抗原中得到证实,LRA 的这种特性可能被用来改善对 HIV 以外疾病细胞的免疫检测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b94/7112239/739a261b63a0/ppat.1008442.g001.jpg

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