Reduced eIF3d accelerates HIV disease progression by attenuating CD8+ T cell function

Abstract Background In human immunodeficiency virus (HIV) infection, 10–15% of individuals exhibit a rapid decline in CD4+ T cells and become rapid progressors (RPs). Overall, understanding the factors affecting rapid disease progression in early HIV infection (EHI) can aid in treatment initiation....

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Main Authors: Ying Pan, Zi-Ning Zhang, Lin-Bo Yin, Ya-Jing Fu, Yong-Jun Jiang, Hong Shang
Format: Article
Language:English
Published: BMC 2019-05-01
Series:Journal of Translational Medicine
Subjects:
HIV
Online Access:http://link.springer.com/article/10.1186/s12967-019-1925-0
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spelling doaj-ced185f994a14a798ed61482e2ca93382020-11-25T03:14:57ZengBMCJournal of Translational Medicine1479-58762019-05-0117111310.1186/s12967-019-1925-0Reduced eIF3d accelerates HIV disease progression by attenuating CD8+ T cell functionYing Pan0Zi-Ning Zhang1Lin-Bo Yin2Ya-Jing Fu3Yong-Jun Jiang4Hong Shang5NHC Key Laboratory of AIDS Immunology (China Medical University), Department of Laboratory Medicine, The First Affiliated Hospital of China Medical UniversityNHC Key Laboratory of AIDS Immunology (China Medical University), Department of Laboratory Medicine, The First Affiliated Hospital of China Medical UniversityNHC Key Laboratory of AIDS Immunology (China Medical University), Department of Laboratory Medicine, The First Affiliated Hospital of China Medical UniversityNHC Key Laboratory of AIDS Immunology (China Medical University), Department of Laboratory Medicine, The First Affiliated Hospital of China Medical UniversityNHC Key Laboratory of AIDS Immunology (China Medical University), Department of Laboratory Medicine, The First Affiliated Hospital of China Medical UniversityNHC Key Laboratory of AIDS Immunology (China Medical University), Department of Laboratory Medicine, The First Affiliated Hospital of China Medical UniversityAbstract Background In human immunodeficiency virus (HIV) infection, 10–15% of individuals exhibit a rapid decline in CD4+ T cells and become rapid progressors (RPs). Overall, understanding the factors affecting rapid disease progression in early HIV infection (EHI) can aid in treatment initiation. Recent studies show that eIF3s, classic scaffold proteins during the translation initiation process, can directly promote or inhibit the translation of mRNA, therefore participating in the regulation of cell function. However, to our knowledge, it has not been addressed whether eIF3s are involved in the diverse prognosis of HIV infection. Methods Expression of eIF3s in primary cells from early or chronic HIV-infected patients was detected by real-time PCR. To investigate the potential mechanisms of eIF3d in the regulation of CD8+ T cell function, complete transcriptomes of eIF3d-inhibited Jurkat T cells were sequenced by RNA sequencing (RNA-Seq). Additionally, to examine the effect of eIF3d on CD8+ T cell function, eIF3d expression was inhibited alone or in combination with SOCS-7 knockdown by siRNA in isolated CD8+ T cells. CD8+ T cell proliferation, IFN-r secretion and apoptosis were detected by flow cytometry. Moreover, the effect of eIF3d on HIV replication was evaluated in Jurkat cells, peripheral blood mononuclear cells (PBMCs) and CD4+ T cells with eIF3d knockdown using a pNL4-3 pseudotyped virus. Results At approximately 100 days of infection, only eIF3d was markedly decreased in RPs compared with chronic progressors (CPs). Expression of eIF3d correlated significantly with disease progression in EHI. Based on in vitro analyses, reduced eIF3d expression led to decreased proliferation and IFN-γ secretion and increased apoptosis in CD8+ T cells. Inhibited expression of eIF3d caused enhanced expression of SOCS-7, and inhibiting SOCS-7 expression by siRNA rescued the attenuated CD8+ T cell function caused by eIF3d. Finally, when eIF3d was inhibited in Jurkat cells, PBMCs and CD4+ T cells, pNL4-3-VSV-G virus replication was enhanced. Conclusions The current data highlight the importance of eIF3d in HIV infection by inhibiting CD8+ T cell function and promoting viral replication. Our study provides potential targets for improved immune intervention.http://link.springer.com/article/10.1186/s12967-019-1925-0HIVRapid progressorsCD8+ T cellseIF3dProliferationIFN-γ
collection DOAJ
language English
format Article
sources DOAJ
author Ying Pan
Zi-Ning Zhang
Lin-Bo Yin
Ya-Jing Fu
Yong-Jun Jiang
Hong Shang
spellingShingle Ying Pan
Zi-Ning Zhang
Lin-Bo Yin
Ya-Jing Fu
Yong-Jun Jiang
Hong Shang
Reduced eIF3d accelerates HIV disease progression by attenuating CD8+ T cell function
Journal of Translational Medicine
HIV
Rapid progressors
CD8+ T cells
eIF3d
Proliferation
IFN-γ
author_facet Ying Pan
Zi-Ning Zhang
Lin-Bo Yin
Ya-Jing Fu
Yong-Jun Jiang
Hong Shang
author_sort Ying Pan
title Reduced eIF3d accelerates HIV disease progression by attenuating CD8+ T cell function
title_short Reduced eIF3d accelerates HIV disease progression by attenuating CD8+ T cell function
title_full Reduced eIF3d accelerates HIV disease progression by attenuating CD8+ T cell function
title_fullStr Reduced eIF3d accelerates HIV disease progression by attenuating CD8+ T cell function
title_full_unstemmed Reduced eIF3d accelerates HIV disease progression by attenuating CD8+ T cell function
title_sort reduced eif3d accelerates hiv disease progression by attenuating cd8+ t cell function
publisher BMC
series Journal of Translational Medicine
issn 1479-5876
publishDate 2019-05-01
description Abstract Background In human immunodeficiency virus (HIV) infection, 10–15% of individuals exhibit a rapid decline in CD4+ T cells and become rapid progressors (RPs). Overall, understanding the factors affecting rapid disease progression in early HIV infection (EHI) can aid in treatment initiation. Recent studies show that eIF3s, classic scaffold proteins during the translation initiation process, can directly promote or inhibit the translation of mRNA, therefore participating in the regulation of cell function. However, to our knowledge, it has not been addressed whether eIF3s are involved in the diverse prognosis of HIV infection. Methods Expression of eIF3s in primary cells from early or chronic HIV-infected patients was detected by real-time PCR. To investigate the potential mechanisms of eIF3d in the regulation of CD8+ T cell function, complete transcriptomes of eIF3d-inhibited Jurkat T cells were sequenced by RNA sequencing (RNA-Seq). Additionally, to examine the effect of eIF3d on CD8+ T cell function, eIF3d expression was inhibited alone or in combination with SOCS-7 knockdown by siRNA in isolated CD8+ T cells. CD8+ T cell proliferation, IFN-r secretion and apoptosis were detected by flow cytometry. Moreover, the effect of eIF3d on HIV replication was evaluated in Jurkat cells, peripheral blood mononuclear cells (PBMCs) and CD4+ T cells with eIF3d knockdown using a pNL4-3 pseudotyped virus. Results At approximately 100 days of infection, only eIF3d was markedly decreased in RPs compared with chronic progressors (CPs). Expression of eIF3d correlated significantly with disease progression in EHI. Based on in vitro analyses, reduced eIF3d expression led to decreased proliferation and IFN-γ secretion and increased apoptosis in CD8+ T cells. Inhibited expression of eIF3d caused enhanced expression of SOCS-7, and inhibiting SOCS-7 expression by siRNA rescued the attenuated CD8+ T cell function caused by eIF3d. Finally, when eIF3d was inhibited in Jurkat cells, PBMCs and CD4+ T cells, pNL4-3-VSV-G virus replication was enhanced. Conclusions The current data highlight the importance of eIF3d in HIV infection by inhibiting CD8+ T cell function and promoting viral replication. Our study provides potential targets for improved immune intervention.
topic HIV
Rapid progressors
CD8+ T cells
eIF3d
Proliferation
IFN-γ
url http://link.springer.com/article/10.1186/s12967-019-1925-0
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