LILRB receptor-mediated regulation of myeloid cell maturation and function

被引:131
作者
van der Touw, William [1 ]
Chen, Hui-Ming [1 ,2 ]
Pan, Ping-Ying [1 ,2 ]
Chen, Shu-Hsia [1 ,2 ]
机构
[1] Icahn Sch Med Mt Sinai, Dept Oncol Sci, 1425 Madison Ave, New York, NY 10029 USA
[2] Houston Methodist Res Inst, Immunotherapy Res Ctr, 6670 Bertner Ave, Houston, TX 77030 USA
关键词
LILRB; LILRA; ITIM; Macrophage; SHP; Regulatory myeloid suppressor cells; IMMUNOGLOBULIN-LIKE RECEPTORS; MHC CLASS-I; T-SUPPRESSOR-CELLS; ANGIOPOIETIN-LIKE PROTEINS; HEMATOPOIETIC STEM-CELLS; HUMAN DENDRITIC CELLS; NATURAL-KILLER-CELLS; EX-VIVO EXPANSION; INHIBITORY RECEPTOR; PIR-B;
D O I
10.1007/s00262-017-2023-x
中图分类号
R73 [肿瘤学];
学科分类号
100214 [肿瘤学];
摘要
The leukocyte immunoglobulin-like receptor (LILR) family comprises a set of paired immunomodulatory receptors expressed among human myeloid and lymphocyte cell populations. While six members of LILR subfamily A (LILRA) associate with membrane adaptors to signal via immunoreceptor tyrosine-based activating motifs (ITAM), LILR subfamily B (LILRB) members signal via multiple cytoplasmic immunoreceptor tyrosine-based inhibitory motifs (ITIM). Ligand specificity of some LILR family members has been studied in detail, but new perspective into the immunoregulatory aspects of this receptor family in human myeloid cells has been limited. LILRB receptors and the murine ortholog, paired immunoglobulin-like receptor B (PIRB), have been shown to negatively regulate maturation pathways in myeloid cells including mast cells, neutrophils, dendritic cells, as well as B cells. Our laboratory further demonstrated in mouse models that PIRB regulated functional development of myeloid-derived suppressor cell and the formation of a tumor-permissive microenvironment. Based on observations from the literature and our own studies, our laboratory is focusing on how LILRs modulate immune homeostasis of human myeloid cells and how these pathways may be targeted in disease states. Integrity of this pathway in tumor microenvironments, for example, permits a myeloid phenotype that suppresses antitumor adaptive immunity. This review presents the evidence supporting a role of LILRs as myeloid cell regulators and ongoing efforts to understand the functional immunology surrounding this family.
引用
收藏
页码:1079 / 1087
页数:9
相关论文
共 84 条
[1]
Serum Soluble HLA-E in Melanoma: A New Potential Immune-Related Marker in Cancer [J].
Allard, Mathilde ;
Oger, Romain ;
Vignard, Virginie ;
Percier, Jean-Michel ;
Fregni, Giulia ;
Perier, Aurelie ;
Caignard, Anne ;
Charreau, Beatrice ;
Bernardeau, Karine ;
Khammari, Amir ;
Dreno, Brigitte ;
Gervois, Nadine .
PLOS ONE, 2011, 6 (06)
[2]
Cutting edge: Leukocyte receptor complex-encoded immunomodulatory receptors show differing specificity for alternative HLA-B27 structures [J].
Allen, RL ;
Raine, T ;
Haude, A ;
Trowsdale, J ;
Wilson, MJ .
JOURNAL OF IMMUNOLOGY, 2001, 167 (10) :5543-5547
[3]
Human NK cell education by inhibitory receptors for MHC class I [J].
Anfossi, Nicolas ;
Andre, Pascale ;
Guia, Sophie ;
Falk, Christine S. ;
Roetynck, Sophie ;
Stewart, C. Andrew ;
Breso, Violette ;
Frassati, Coralie ;
Reviron, Denis ;
Middleton, Derek ;
Romagne, Francois ;
Ugolini, Sophie ;
Vivier, Eric .
IMMUNITY, 2006, 25 (02) :331-342
[4]
S100A9 protein is a novel ligand for the CD85j receptor and its interaction is implicated in the control of HIV-1 replication by NK cells [J].
Arnold, Vincent ;
Cummings, Jean-Saville ;
Moreno-Nieves, Uriel Y. ;
Didier, Celine ;
Gilbert, Adrien ;
Barre-Sinoussi, Francoise ;
Scott-Algara, Daniel .
RETROVIROLOGY, 2013, 10
[5]
PirB is a Functional Receptor for Myelin Inhibitors of Axonal Regeneration [J].
Atwal, Jasvinder K. ;
Pinkston-Gosse, Julie ;
Syken, Josh ;
Stawicki, Scott ;
Wu, Yan ;
Shatz, Carla ;
Tessier-Lavigne, Marc .
SCIENCE, 2008, 322 (5903) :967-970
[6]
Immunoglobulin-like transcript receptors on human dermal CD14+ dendritic cells act as a CD8-antagonist to control cytotoxic T cell priming [J].
Banchereau, Jacques ;
Zurawski, Sandra ;
Thompson-Snipes, Luann ;
Blanck, Jean-Philippe ;
Clayton, Sandra ;
Munk, Adiel ;
Cao, Yanying ;
Wang, Zhiqing ;
Khandelwal, Sunaina ;
Hu, Jiancheng ;
McCoy, William H. ;
Palucka, Karolina A. ;
Reiter, Yoram ;
Fremont, Daved H. ;
Zurawski, Gerard ;
Colonna, Marco ;
Shaw, Andrey S. ;
Klechevsky, Eynav .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (46) :18885-18890
[7]
Interleukin 10 regulates cell surface and soluble LIR-2 (CD85d) expression on dendritic cells resulting in T cell hyporesponsiveness in vitro [J].
Beinhauer, BG ;
McBride, JM ;
Graf, P ;
Pursch, E ;
Bongers, M ;
Rogy, M ;
Korthauer, U ;
de Vries, JE ;
Aversa, G ;
Jung, T .
EUROPEAN JOURNAL OF IMMUNOLOGY, 2004, 34 (01) :74-80
[8]
High-Resolution Transcriptome of Human Macrophages [J].
Beyer, Marc ;
Mallmann, Michael R. ;
Xue, Jia ;
Staratschek-Jox, Andrea ;
Vorholt, Daniela ;
Krebs, Wolfgang ;
Sommer, Daniel ;
Sander, Jil ;
Mertens, Christina ;
Nino-Castro, Andrea ;
Schmidt, Susanne V. ;
Schultze, Joachim L. .
PLOS ONE, 2012, 7 (09)
[9]
The inhibitory receptor LILRB4 (ILT3) modulates antigen presenting cell phenotype and, along with LILRB2 (ILT4), is upregulated in response to Salmonella infection [J].
Brown, Damien P. ;
Jones, Des C. ;
Anderson, Katie J. ;
Lapaque, Nicolas ;
Buerki, Robin A. ;
Trowsdale, John ;
Allen, Rachel L. .
BMC IMMUNOLOGY, 2009, 10 :56
[10]
An Angiopoietin-like Protein 2 autocrine signaling promotes EMT during pancreatic ductal carcinogenesis [J].
Carbone, Carmine ;
Piro, Geny ;
Fassan, Matteo ;
Tamburrino, Anna ;
Mina, Maria Mihaela ;
Zanotto, Marco ;
Chiao, Paul J. ;
Bassi, Claudio ;
Scarpa, Aldo ;
Tortora, Giampaolo ;
Melisi, Davide .
ONCOTARGET, 2015, 6 (15) :13822-13834