Literature DB >> 20126612

Inhibitory NK receptor recognition of HLA-G: regulation by contact residues and by cell specific expression at the fetal-maternal interface.

Tsufit Gonen-Gross1, Debra Goldman-Wohl, Berthold Huppertz, Dikla Lankry, Caryn Greenfield, Shira Natanson-Yaron, Yaron Hamani, Ronit Gilad, Simcha Yagel, Ofer Mandelboim.   

Abstract

The non-classical HLA-G protein is distinguished from the classical MHC class I molecules by its expression pattern, low polymorphism and its ability to form complexes on the cell surface. The special role of HLA-G in the maternal-fetal interface has been attributed to its ability to interact with specific receptors found on maternal immune cells. However this interaction is restricted to a limited number of receptors. In this study we elucidate the reason for this phenomenon by comparing the specific contact residues responsible for MHC-KIR interactions. This alignment revealed a marked difference between the HLA-G molecule and other MHC class I molecules. By mutating these residues to the equivalent classical MHC residues, the HLA-G molecule regained an ability of interacting with KIR inhibitory receptors found on NK cells derived either from peripheral blood or from the decidua. Functional NK killing assays further substantiated the binding results. Furthermore, double immunofluorescent staining of placental sections revealed that while the conformed form of HLA-G was expressed in all extravillous trophoblasts, the free heavy chain form of HLA-G was expressed in more distal cells of the column, the invasion front. Overall we suggest that HLA-G protein evolved to interact with only some of the NK inhibitory receptors thus allowing a control of inhibition, while permitting appropriate NK cell cytokine and growth factor production necessary for a viable maternal fetal interface.

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Year:  2010        PMID: 20126612      PMCID: PMC2812487          DOI: 10.1371/journal.pone.0008941

Source DB:  PubMed          Journal:  PLoS One        ISSN: 1932-6203            Impact factor:   3.240


  53 in total

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  26 in total

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3.  Adrenomedullin 2/intermedin regulates HLA-G in human trophoblasts.

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Review 5.  Pregnancy and the Immune System: General Overview and the Gastroenterological Perspective.

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Review 8.  Extravillous trophoblast and decidual natural killer cells: a remodelling partnership.

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Review 10.  Engineering universal cells that evade immune detection.

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