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狒狒 CD8 T 细胞通过依赖接触的方式产生 MIP-1α、MIP-1β 和 RANTES 抑制 CD4 T 细胞中的 SIVmac 感染。

Baboon CD8 T cells suppress SIVmac infection in CD4 T cells through contact-dependent production of MIP-1α, MIP-1β, and RANTES.

机构信息

Department of Microbiology, Immunology, and Molecular Genetics, University of Texas Health, Long School of Medicine, 7703 Floyd Curl Drive, San Antonio, TX 78229, USA; Department of Virology and Immunology, Texas Biomedical Research Institute, 7620 NW Loop 410, San Antonio, TX 78227, USA.

Department of Virology and Immunology, Texas Biomedical Research Institute, 7620 NW Loop 410, San Antonio, TX 78227, USA; Southwest National Primate Research Center, Texas Biomedical Research Institute, 7620 NW Loop 410, San Antonio, TX 78227, USA.

出版信息

Cytokine. 2018 Nov;111:408-419. doi: 10.1016/j.cyto.2018.05.022. Epub 2018 May 26.

Abstract

Simian immunodeficiency virus (SIV) infection in rhesus macaques is often characterized by high viremia and CD4 T cell depletion. By contrast, SIV infection in African nonhuman primate natural hosts is typically nonpathogenic despite active viral replication. Baboons are abundant in Africa and have a geographical distribution that overlaps with natural hosts, but they do not harbor SIVs. Previous work has demonstrated baboons are resistant to chronic SIV infection and/or disease in vivo but the underlying mechanisms remain unknown. Using in vitro SIVmac infections, we sought to identify SIV restriction factors in baboons by comparing observations to the pathogenic rhesus macaque model. SIVmac replicated in baboon PBMC but had delayed kinetics compared to rhesus PBMC. However, SIVmac replication in baboon and rhesus isolated CD4 cells were similar to the kinetics seen for rhesus PBMC, demonstrating intracellular restriction factors do not play a strong role in baboon inhibition of SIVmac replication. Here, we show CD8 T cells contribute to the innate SIV-suppressive activity seen in naïve baboon PBMC. As one mechanism of restriction, we identified higher production of MIP-1α, MIP-1β, and RANTES by baboon PBMC. Contact between CD4 and CD8 T cells resulted in maximum production of these chemokines and suppression of viral replication, whereas neutralization of CCR5-binding chemokines in baboon PBMC increased viral loads. Our studies indicate baboon natural restriction of SIVmac replication is largely dependent on CD4-extrinsinc mechanisms mediated, in part, by CD8 T cells.

摘要

猿猴免疫缺陷病毒(SIV)感染恒河猴通常表现为高病毒血症和 CD4 T 细胞耗竭。相比之下,尽管存在病毒复制,SIV 在非洲非人灵长类动物的自然宿主中感染通常是无致病性的。狒狒在非洲很丰富,其地理分布与自然宿主重叠,但它们不携带 SIV。先前的工作表明,狒狒在体内对慢性 SIV 感染和/或疾病具有抗性,但潜在的机制尚不清楚。通过使用体外 SIVmac 感染,我们试图通过将观察结果与致病性恒河猴模型进行比较,来确定狒狒中的 SIV 限制因子。SIVmac 在狒狒 PBMC 中复制,但与恒河猴 PBMC 相比,复制动力学延迟。然而,SIVmac 在狒狒和恒河猴分离的 CD4 细胞中的复制与恒河猴 PBMC 中观察到的动力学相似,表明细胞内限制因子在狒狒抑制 SIVmac 复制中没有发挥重要作用。在这里,我们表明 CD8 T 细胞有助于幼稚的狒狒 PBMC 中观察到的先天 SIV 抑制活性。作为一种限制机制,我们发现狒狒 PBMC 产生更高水平的 MIP-1α、MIP-1β 和 RANTES。CD4 和 CD8 T 细胞之间的接触导致这些趋化因子的最大产生和病毒复制的抑制,而在狒狒 PBMC 中中和 CCR5 结合趋化因子会增加病毒载量。我们的研究表明,狒狒对 SIVmac 复制的天然限制在很大程度上取决于 CD4 外在机制,部分由 CD8 T 细胞介导。

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