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Leukocyte Ig-Like Receptors – A Model for MHC Class I Disease Associations
by
Hudson, Laura Emily
, Allen, Rachel Louise
in
Alleles
/ Antigen-presenting cells
/ Antigens
/ Autoantigens
/ Autoimmune diseases
/ Autoimmunity
/ Binding sites
/ Cytokines
/ Cytotoxicity
/ Dendritic cells
/ Dengue fever
/ Dengue Virus
/ Haplotypes
/ HIV
/ HIV-1
/ HLA Antigens
/ Human immunodeficiency virus
/ Immune system
/ Immunoglobulins
/ Immunology
/ Inflammatory diseases
/ KIR
/ Leukocytes
/ Ligands
/ Lymphocytes
/ Lymphocytes B
/ Lymphocytes T
/ Macrophages
/ Major histocompatibility complex
/ Monocytes
/ Natural killer cells
/ Neuroimmunomodulation
/ Peptides
/ Polymorphism
/ Proteins
/ Regulation
/ T cell receptors
/ Viral infections
2016
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Leukocyte Ig-Like Receptors – A Model for MHC Class I Disease Associations
by
Hudson, Laura Emily
, Allen, Rachel Louise
in
Alleles
/ Antigen-presenting cells
/ Antigens
/ Autoantigens
/ Autoimmune diseases
/ Autoimmunity
/ Binding sites
/ Cytokines
/ Cytotoxicity
/ Dendritic cells
/ Dengue fever
/ Dengue Virus
/ Haplotypes
/ HIV
/ HIV-1
/ HLA Antigens
/ Human immunodeficiency virus
/ Immune system
/ Immunoglobulins
/ Immunology
/ Inflammatory diseases
/ KIR
/ Leukocytes
/ Ligands
/ Lymphocytes
/ Lymphocytes B
/ Lymphocytes T
/ Macrophages
/ Major histocompatibility complex
/ Monocytes
/ Natural killer cells
/ Neuroimmunomodulation
/ Peptides
/ Polymorphism
/ Proteins
/ Regulation
/ T cell receptors
/ Viral infections
2016
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Do you wish to request the book?
Leukocyte Ig-Like Receptors – A Model for MHC Class I Disease Associations
by
Hudson, Laura Emily
, Allen, Rachel Louise
in
Alleles
/ Antigen-presenting cells
/ Antigens
/ Autoantigens
/ Autoimmune diseases
/ Autoimmunity
/ Binding sites
/ Cytokines
/ Cytotoxicity
/ Dendritic cells
/ Dengue fever
/ Dengue Virus
/ Haplotypes
/ HIV
/ HIV-1
/ HLA Antigens
/ Human immunodeficiency virus
/ Immune system
/ Immunoglobulins
/ Immunology
/ Inflammatory diseases
/ KIR
/ Leukocytes
/ Ligands
/ Lymphocytes
/ Lymphocytes B
/ Lymphocytes T
/ Macrophages
/ Major histocompatibility complex
/ Monocytes
/ Natural killer cells
/ Neuroimmunomodulation
/ Peptides
/ Polymorphism
/ Proteins
/ Regulation
/ T cell receptors
/ Viral infections
2016
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Leukocyte Ig-Like Receptors – A Model for MHC Class I Disease Associations
Journal Article
Leukocyte Ig-Like Receptors – A Model for MHC Class I Disease Associations
2016
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Overview
MHC class I (MHC-I) polymorphisms are associated with the outcome of some viral infections and autoimmune diseases. MHC-I proteins present antigenic peptides and are recognized by receptors on natural killer cells and cytotoxic T lymphocytes, thus enabling the immune system to detect self-antigens and eliminate targets lacking self or expressing foreign antigens. Recognition of MHC-I, however, extends beyond receptors on cytotoxic leukocytes. Members of the leukocyte Ig-like receptor (LILR) family are expressed on monocytic cells and can recognize both classical and non-classical MHC-I alleles. Despite their relatively broad specificity when compared to the T cell receptor or killer Ig-like receptors, variations in the strength of LILR binding between different MHC-I alleles have recently been shown to correlate with control of HIV infection. We suggest that LILR recognition may mediate MHC-I disease association in a manner that does not depend on a binary discrimination of self/non-self by cytotoxic cells. Instead, the effects of LILR activity following engagement by MHC-I may represent a \"degrees of self\" model, whereby strength of binding to different alleles determines the degree of influence exerted by these receptors on immune cell functions. LILRs are expressed by myelomonocytic cells and lymphocytes, extending their influence across antigen-presenting cell subsets including dendritic cells, macrophages, and B cells. They have been identified as important players in the response to infection, inflammatory diseases, and cancer, with recent literature to indicate that MHC-I recognition by these receptors and consequent allelic effects could extend an influence beyond the immune system.
Publisher
Frontiers Media SA,Frontiers Media S.A
Subject
/ Antigens
/ HIV
/ HIV-1
/ Human immunodeficiency virus
/ KIR
/ Ligands
/ Major histocompatibility complex
/ Peptides
/ Proteins
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