The immunology of human cytomegalovirus latency: could latent infection be cleared by novel immunotherapeutic strategies?

被引:107
作者
Wills, Mark R. [1 ]
Poole, Emma [1 ]
Lau, Betty [1 ]
Krishna, Ben [1 ]
Sinclair, John H. [1 ]
机构
[1] Univ Cambridge, Dept Med, Cambridge CB2 0QQ, England
基金
英国医学研究理事会;
关键词
Cytomegalovirus; latency; immune evasion; immunotherapeutic; VIRAL GENE-EXPRESSION; NF-KAPPA-B; ENDOGENOUS HUMAN CYTOMEGALOVIRUS; HEMATOPOIETIC PROGENITOR CELLS; HUMAN INTERLEUKIN-10; BIRTH PREVALENCE; DENDRITIC CELLS; UL144; GENE; REACTIVATION; TRANSPLANTATION;
D O I
10.1038/cmi.2014.75
中图分类号
R392 [医学免疫学]; Q939.91 [免疫学];
学科分类号
100102 ;
摘要
While the host immune response following primary human cytomegalovirus (HCMV) infection is generally effective at stopping virus replication and dissemination, virus is never cleared by the host and like all herpesviruses, persists for life. At least in part, this persistence is known to be facilitated by the ability of HCMV to establish latency in myeloid cells in which infection is essentially silent with, importantly, a total lack of new virus production. However, although the viral transcription programme during latency is much suppressed, a number of viral genes are expressed during latent infection at the protein level and many of these have been shown to have profound effects on the latent cell and its environment. Intriguingly, many of these latency-associated genes are also expressed during lytic infection. Therefore, why the same potent host immune responses generated during lytic infection to these viral gene products are not recognized during latency, thereby allowing clearance of latently infected cells, is far from clear. Reactivation from latency is also a major cause of HCMV-mediated disease, particularly in the immune compromised and immune naive, and is also likely to be a major source of virus in chronic subclinical HCMV infection which has been suggested to be associated with long-term diseases such as atherosclerosis and some neoplasias. Consequently, understanding latency and why latently infected cells appear to be immunoprivileged is crucial for an understanding of the pathogenesis of HCMV and may help to design strategies to eliminate latent virus reservoirs, at least in certain clinical settings.
引用
收藏
页码:128 / 138
页数:11
相关论文
共 97 条
[1]   Myeloblastic Cell Lines Mimic Some but Not All Aspects of Human Cytomegalovirus Experimental Latency Defined in Primary CD34+ Cell Populations [J].
Albright, Emily R. ;
Kalejta, Robert F. .
JOURNAL OF VIROLOGY, 2013, 87 (17) :9802-9812
[2]   The Tiers and Dimensions of Evasion of the Type I Interferon Response by Human Cytomegalovirus [J].
Amsler, Lisi ;
Verweij, Marieke C. ;
DeFilippis, Victor R. .
JOURNAL OF MOLECULAR BIOLOGY, 2013, 425 (24) :4857-4871
[3]  
[Anonymous], NEW J SCI
[4]   Cytomegalovirus diseases after hematopoietic stem cell transplantation: A mini-review [J].
Ariza-Heredia, Ella J. ;
Nesher, Lior ;
Chemaly, Roy F. .
CANCER LETTERS, 2014, 342 (01) :1-8
[5]   Cytomegalovirus-specific cellular immune responses and viremia in recipients of allogeneic stem cell transplants [J].
Aubert, G ;
Hassan-Walker, AF ;
Madrigal, JA ;
Emery, VC ;
Morte, C ;
Grace, S ;
Koh, MBC ;
Potter, M ;
Prentice, HG ;
Dodi, IA ;
Travers, PJ .
JOURNAL OF INFECTIOUS DISEASES, 2001, 184 (08) :955-963
[6]   Viral Interleukin-10 Expressed by Human Cytomegalovirus during the Latent Phase of Infection Modulates Latently Infected Myeloid Cell Differentiation [J].
Avdic, Selmir ;
Cao, John Z. ;
Cheung, Allen K. L. ;
Abendroth, Allison ;
Slobedman, Barry .
JOURNAL OF VIROLOGY, 2011, 85 (14) :7465-7471
[7]   Prospects for Treatment of Latent HIV [J].
Barton, K. M. ;
Burch, B. D. ;
Soriano-Sarabia, N. ;
Margolis, D. M. .
CLINICAL PHARMACOLOGY & THERAPEUTICS, 2013, 93 (01) :46-56
[8]   Characterization of an antisense transcript spanning the UL81-82 locus of human cytomegalovirus [J].
Bego, M ;
Maciejewski, J ;
Khaiboullina, S ;
Pari, G ;
St Jeor, S .
JOURNAL OF VIROLOGY, 2005, 79 (17) :11022-11034
[9]   Human cytomegalovirus chemokine receptor gene US28 is transcribed in latently infected THP-1 monocytes [J].
Beisser, PS ;
Laurent, L ;
Virelizier, JL ;
Michelson, S .
JOURNAL OF VIROLOGY, 2001, 75 (13) :5949-5957
[10]  
Benedict CA, 1999, J IMMUNOL, V162, P6967