| Literature DB >> 28845754 |
Alessandra Zingoni1, Elisabetta Vulpis1, Ilaria Nardone1, Alessandra Soriani1, Cinzia Fionda1, Marco Cippitelli1, Angela Santoni2.
Abstract
Natural killer (NK) cells are critical immune effector cells capable of mediating antitumor responses. These cytotoxic lymphocytes recognize transformed cells through a mechanism mainly dependent on the engagement of several activating receptors. However, many tumors have developed strategies to evade immunosurveillance and detection by NK cells. A relevant immune escape mechanism is the down regulation of NK cell activating ligands on the surface of tumor cells by proteolytic shedding mediated by different members of metalloproteinase families. Here, we consider two important NK activating receptors, namely NKG2D and NKp30, the ligands (i.e., MICA/B, ULBPs, and B7-H6) of which can be released by cancer cells through proteolytic cleavage. Modulation of ligand shedding in response to cancer therapy is also examined, and we discuss how metalloproteinases implicated in the ligand cleavage could be targeted in novel therapeutic schemes to counteract tumor escape from stress-elicited immune responses.Entities:
Year: 2016 PMID: 28845754 DOI: 10.1615/CritRevImmunol.2017020166
Source DB: PubMed Journal: Crit Rev Immunol ISSN: 1040-8401 Impact factor: 2.214