Plasmacytoid Dendritic Cell Infection and Sensing Capacity during Pathogenic and Nonpathogenic Simian Immunodeficiency Virus Infection

Human immunodeficiency virus (HIV) in humans and simian immunodeficiency virus (SIV) in macaques (MAC) lead to chronic inflammation and AIDS. Natural hosts, such as African green monkeys (AGM) and sooty mangabeys (SM), are protected against SIV-induced chronic inflammation and AIDS. Here, we report...

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Published in:Journal of virology Vol. 89; no. 13; p. 6918
Main Authors: Jochems, Simon P, Jacquelin, Beatrice, Chauveau, Lise, Huot, Nicolas, Petitjean, Gaël, Lepelley, Alice, Liovat, Anne-Sophie, Ploquin, Mickaël J, Cartwright, Emily K, Bosinger, Steven E, Silvestri, Guido, Barré-Sinoussi, Françoise, Lebon, Pierre, Schwartz, Olivier, Müller-Trutwin, Michaela C
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Language:English
Published: United States 01.07.2015
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Abstract Human immunodeficiency virus (HIV) in humans and simian immunodeficiency virus (SIV) in macaques (MAC) lead to chronic inflammation and AIDS. Natural hosts, such as African green monkeys (AGM) and sooty mangabeys (SM), are protected against SIV-induced chronic inflammation and AIDS. Here, we report that AGM plasmacytoid dendritic cells (pDC) express extremely low levels of CD4, unlike MAC and human pDC. Despite this, AGM pDC efficiently sensed SIVagm, but not heterologous HIV/SIV isolates, indicating a virus-host adaptation. Moreover, both AGM and SM pDC were found to be, in contrast to MAC pDC, predominantly negative for CCR5. Despite such limited CD4 and CCR5 expression, lymphoid tissue pDC were infected to a degree similar to that seen with CD4(+) T cells in both MAC and AGM. Altogether, our finding of efficient pDC infection by SIV in vivo identifies pDC as a potential viral reservoir in lymphoid tissues. We discovered low expression of CD4 on AGM pDC, which did not preclude efficient sensing of host-adapted viruses. Therefore, pDC infection and efficient sensing are not prerequisites for chronic inflammation. The high level of pDC infection by SIVagm suggests that if CCR5 paucity on immune cells is important for nonpathogenesis of natural hosts, it is possibly not due to its role as a coreceptor. The ability of certain key immune cell subsets to resist infection might contribute to the asymptomatic nature of simian immunodeficiency virus (SIV) infection in its natural hosts, such as African green monkeys (AGM) and sooty mangabeys (SM). This relative resistance to infection has been correlated with reduced expression of CD4 and/or CCR5. We show that plasmacytoid dendritic cells (pDC) of natural hosts display reduced CD4 and/or CCR5 expression, unlike macaque pDC. Surprisingly, this did not protect AGM pDC, as infection levels were similar to those found in MAC pDC. Furthermore, we show that AGM pDC did not consistently produce type I interferon (IFN-I) upon heterologous SIVmac/HIV type 1 (HIV-1) encounter, while they sensed autologous SIVagm isolates. Pseudotyping SIVmac/HIV-1 overcame this deficiency, suggesting that reduced uptake of heterologous viral strains underlays this lack of sensing. The distinct IFN-I responses depending on host species and HIV/SIV isolates reveal the host/virus species specificity of pDC sensing.
AbstractList Human immunodeficiency virus (HIV) in humans and simian immunodeficiency virus (SIV) in macaques (MAC) lead to chronic inflammation and AIDS. Natural hosts, such as African green monkeys (AGM) and sooty mangabeys (SM), are protected against SIV-induced chronic inflammation and AIDS. Here, we report that AGM plasmacytoid dendritic cells (pDC) express extremely low levels of CD4, unlike MAC and human pDC. Despite this, AGM pDC efficiently sensed SIVagm, but not heterologous HIV/SIV isolates, indicating a virus-host adaptation. Moreover, both AGM and SM pDC were found to be, in contrast to MAC pDC, predominantly negative for CCR5. Despite such limited CD4 and CCR5 expression, lymphoid tissue pDC were infected to a degree similar to that seen with CD4(+) T cells in both MAC and AGM. Altogether, our finding of efficient pDC infection by SIV in vivo identifies pDC as a potential viral reservoir in lymphoid tissues. We discovered low expression of CD4 on AGM pDC, which did not preclude efficient sensing of host-adapted viruses. Therefore, pDC infection and efficient sensing are not prerequisites for chronic inflammation. The high level of pDC infection by SIVagm suggests that if CCR5 paucity on immune cells is important for nonpathogenesis of natural hosts, it is possibly not due to its role as a coreceptor. The ability of certain key immune cell subsets to resist infection might contribute to the asymptomatic nature of simian immunodeficiency virus (SIV) infection in its natural hosts, such as African green monkeys (AGM) and sooty mangabeys (SM). This relative resistance to infection has been correlated with reduced expression of CD4 and/or CCR5. We show that plasmacytoid dendritic cells (pDC) of natural hosts display reduced CD4 and/or CCR5 expression, unlike macaque pDC. Surprisingly, this did not protect AGM pDC, as infection levels were similar to those found in MAC pDC. Furthermore, we show that AGM pDC did not consistently produce type I interferon (IFN-I) upon heterologous SIVmac/HIV type 1 (HIV-1) encounter, while they sensed autologous SIVagm isolates. Pseudotyping SIVmac/HIV-1 overcame this deficiency, suggesting that reduced uptake of heterologous viral strains underlays this lack of sensing. The distinct IFN-I responses depending on host species and HIV/SIV isolates reveal the host/virus species specificity of pDC sensing.
Human immunodeficiency virus (HIV) in humans and simian immunodeficiency virus (SIV) in macaques (MAC) lead to chronic inflammation and AIDS. Natural hosts, such as African green monkeys (AGM) and sooty mangabeys (SM), are protected against SIV-induced chronic inflammation and AIDS. Here, we report that AGM plasmacytoid dendritic cells (pDC) express extremely low levels of CD4, unlike MAC and human pDC. Despite this, AGM pDC efficiently sensed SIVagm, but not heterologous HIV/SIV isolates, indicating a virus-host adaptation. Moreover, both AGM and SM pDC were found to be, in contrast to MAC pDC, predominantly negative for CCR5. Despite such limited CD4 and CCR5 expression, lymphoid tissue pDC were infected to a degree similar to that seen with CD4(+) T cells in both MAC and AGM. Altogether, our finding of efficient pDC infection by SIV in vivo identifies pDC as a potential viral reservoir in lymphoid tissues. We discovered low expression of CD4 on AGM pDC, which did not preclude efficient sensing of host-adapted viruses. Therefore, pDC infection and efficient sensing are not prerequisites for chronic inflammation. The high level of pDC infection by SIVagm suggests that if CCR5 paucity on immune cells is important for nonpathogenesis of natural hosts, it is possibly not due to its role as a coreceptor.UNLABELLEDHuman immunodeficiency virus (HIV) in humans and simian immunodeficiency virus (SIV) in macaques (MAC) lead to chronic inflammation and AIDS. Natural hosts, such as African green monkeys (AGM) and sooty mangabeys (SM), are protected against SIV-induced chronic inflammation and AIDS. Here, we report that AGM plasmacytoid dendritic cells (pDC) express extremely low levels of CD4, unlike MAC and human pDC. Despite this, AGM pDC efficiently sensed SIVagm, but not heterologous HIV/SIV isolates, indicating a virus-host adaptation. Moreover, both AGM and SM pDC were found to be, in contrast to MAC pDC, predominantly negative for CCR5. Despite such limited CD4 and CCR5 expression, lymphoid tissue pDC were infected to a degree similar to that seen with CD4(+) T cells in both MAC and AGM. Altogether, our finding of efficient pDC infection by SIV in vivo identifies pDC as a potential viral reservoir in lymphoid tissues. We discovered low expression of CD4 on AGM pDC, which did not preclude efficient sensing of host-adapted viruses. Therefore, pDC infection and efficient sensing are not prerequisites for chronic inflammation. The high level of pDC infection by SIVagm suggests that if CCR5 paucity on immune cells is important for nonpathogenesis of natural hosts, it is possibly not due to its role as a coreceptor.The ability of certain key immune cell subsets to resist infection might contribute to the asymptomatic nature of simian immunodeficiency virus (SIV) infection in its natural hosts, such as African green monkeys (AGM) and sooty mangabeys (SM). This relative resistance to infection has been correlated with reduced expression of CD4 and/or CCR5. We show that plasmacytoid dendritic cells (pDC) of natural hosts display reduced CD4 and/or CCR5 expression, unlike macaque pDC. Surprisingly, this did not protect AGM pDC, as infection levels were similar to those found in MAC pDC. Furthermore, we show that AGM pDC did not consistently produce type I interferon (IFN-I) upon heterologous SIVmac/HIV type 1 (HIV-1) encounter, while they sensed autologous SIVagm isolates. Pseudotyping SIVmac/HIV-1 overcame this deficiency, suggesting that reduced uptake of heterologous viral strains underlays this lack of sensing. The distinct IFN-I responses depending on host species and HIV/SIV isolates reveal the host/virus species specificity of pDC sensing.IMPORTANCEThe ability of certain key immune cell subsets to resist infection might contribute to the asymptomatic nature of simian immunodeficiency virus (SIV) infection in its natural hosts, such as African green monkeys (AGM) and sooty mangabeys (SM). This relative resistance to infection has been correlated with reduced expression of CD4 and/or CCR5. We show that plasmacytoid dendritic cells (pDC) of natural hosts display reduced CD4 and/or CCR5 expression, unlike macaque pDC. Surprisingly, this did not protect AGM pDC, as infection levels were similar to those found in MAC pDC. Furthermore, we show that AGM pDC did not consistently produce type I interferon (IFN-I) upon heterologous SIVmac/HIV type 1 (HIV-1) encounter, while they sensed autologous SIVagm isolates. Pseudotyping SIVmac/HIV-1 overcame this deficiency, suggesting that reduced uptake of heterologous viral strains underlays this lack of sensing. The distinct IFN-I responses depending on host species and HIV/SIV isolates reveal the host/virus species specificity of pDC sensing.
Author Ploquin, Mickaël J
Chauveau, Lise
Jacquelin, Beatrice
Müller-Trutwin, Michaela C
Lebon, Pierre
Huot, Nicolas
Lepelley, Alice
Silvestri, Guido
Petitjean, Gaël
Cartwright, Emily K
Barré-Sinoussi, Françoise
Bosinger, Steven E
Liovat, Anne-Sophie
Schwartz, Olivier
Jochems, Simon P
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References 25355871 - J Virol. 2015 Jan;89(1):751-62
23947613 - Retrovirology. 2013;10:89
25387110 - Annu Rev Anim Biosci. 2015;3:533-57
21706028 - Nat Med. 2011 Jul;17(7):830-6
9223476 - J Virol. 1997 Aug;71(8):5871-7
18987149 - J Virol. 2009 Jan;83(2):572-83
21379343 - PLoS Pathog. 2011 Feb;7(2):e1001284
17056559 - J Immunol. 2006 Nov 1;177(9):6291-300
20865163 - PLoS Pathog. 2010;6(8):e1001064
15761496 - J Clin Invest. 2005 Apr;115(4):1082-91
12351395 - Blood. 2002 Oct 15;100(8):2852-7
15061721 - J Med Primatol. 2004 Apr;33(2):83-97
19424421 - PLoS Pathog. 2009 May;5(5):e1000413
20335252 - J Virol. 2010 Jun;84(11):5476-84
19959873 - J Clin Invest. 2009 Dec;119(12):3544-55
18385229 - J Virol. 2008 Jun;82(11):5501-9
22973036 - J Virol. 2012 Dec;86(23):12472-83
2340199 - AIDS Res Hum Retroviruses. 1990 Mar;6(3):275-85
8437214 - J Virol. 1993 Mar;67(3):1227-35
19939930 - J Virol. 2010 Feb;84(4):1838-46
16224540 - J Clin Invest. 2005 Nov;115(11):3265-75
2024476 - Virology. 1991 May;182(1):397-402
18385227 - J Virol. 2008 Jun;82(11):5145-52
19525963 - Nat Med. 2009 Aug;15(8):879-85
21693759 - Blood. 2011 Sep 8;118(10):2763-73
19661993 - Nat Med. 2009 Aug;15(8):861-5
9379478 - J Med Primatol. 1997 Jun;26(3):120-8
8026477 - EMBO J. 1994 Jun 15;13(12):2935-47
12957815 - Front Biosci. 2003 Sep 1;8:d1170-85
24991927 - PLoS Pathog. 2014 Jul;10(7):e1004241
10906207 - J Virol. 2000 Aug;74(16):7538-47
12576311 - Blood. 2003 Jun 1;101(11):4505-11
References_xml – reference: 19525963 - Nat Med. 2009 Aug;15(8):879-85
– reference: 19661993 - Nat Med. 2009 Aug;15(8):861-5
– reference: 25355871 - J Virol. 2015 Jan;89(1):751-62
– reference: 2340199 - AIDS Res Hum Retroviruses. 1990 Mar;6(3):275-85
– reference: 15761496 - J Clin Invest. 2005 Apr;115(4):1082-91
– reference: 15061721 - J Med Primatol. 2004 Apr;33(2):83-97
– reference: 17056559 - J Immunol. 2006 Nov 1;177(9):6291-300
– reference: 19424421 - PLoS Pathog. 2009 May;5(5):e1000413
– reference: 12957815 - Front Biosci. 2003 Sep 1;8:d1170-85
– reference: 9223476 - J Virol. 1997 Aug;71(8):5871-7
– reference: 19939930 - J Virol. 2010 Feb;84(4):1838-46
– reference: 8026477 - EMBO J. 1994 Jun 15;13(12):2935-47
– reference: 2024476 - Virology. 1991 May;182(1):397-402
– reference: 12351395 - Blood. 2002 Oct 15;100(8):2852-7
– reference: 9379478 - J Med Primatol. 1997 Jun;26(3):120-8
– reference: 21379343 - PLoS Pathog. 2011 Feb;7(2):e1001284
– reference: 25387110 - Annu Rev Anim Biosci. 2015;3:533-57
– reference: 12576311 - Blood. 2003 Jun 1;101(11):4505-11
– reference: 22973036 - J Virol. 2012 Dec;86(23):12472-83
– reference: 18385229 - J Virol. 2008 Jun;82(11):5501-9
– reference: 18385227 - J Virol. 2008 Jun;82(11):5145-52
– reference: 23947613 - Retrovirology. 2013;10:89
– reference: 18987149 - J Virol. 2009 Jan;83(2):572-83
– reference: 10906207 - J Virol. 2000 Aug;74(16):7538-47
– reference: 16224540 - J Clin Invest. 2005 Nov;115(11):3265-75
– reference: 8437214 - J Virol. 1993 Mar;67(3):1227-35
– reference: 20335252 - J Virol. 2010 Jun;84(11):5476-84
– reference: 21706028 - Nat Med. 2011 Jul;17(7):830-6
– reference: 19959873 - J Clin Invest. 2009 Dec;119(12):3544-55
– reference: 20865163 - PLoS Pathog. 2010;6(8):e1001064
– reference: 24991927 - PLoS Pathog. 2014 Jul;10(7):e1004241
– reference: 21693759 - Blood. 2011 Sep 8;118(10):2763-73
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Snippet Human immunodeficiency virus (HIV) in humans and simian immunodeficiency virus (SIV) in macaques (MAC) lead to chronic inflammation and AIDS. Natural hosts,...
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SubjectTerms Animals
CD4 Antigens - analysis
Cercocebus atys
Cercopithecus aethiops
Dendritic Cells - chemistry
Dendritic Cells - immunology
Dendritic Cells - virology
Receptors, CCR5 - analysis
Simian Immunodeficiency Virus - immunology
Simian Immunodeficiency Virus - physiology
Virus Internalization
Title Plasmacytoid Dendritic Cell Infection and Sensing Capacity during Pathogenic and Nonpathogenic Simian Immunodeficiency Virus Infection
URI https://www.ncbi.nlm.nih.gov/pubmed/25903334
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