Cell Biology International 2011-06-01

MMP9 mediates MICA shedding in human osteosarcomas.

Dahui Sun, Xu Wang, Haixia Zhang, Lijuan Deng, Yan Zhang

Index: Cell Biol. Int. 35 , 569-74, (2011)

Full Text: HTML

Abstract

The MICA (MHC class I chain-related molecule A) is a ligand for the activating immunoreceptor NKG2D (natural killer group 2, member D). NKG2D recognizes MICA expressing at the cell surface for cell elimination. Although MICA is overexpressed in many kinds of tumours, tumour cells can cleverly escape immunosurveillance. One underlying mechanism for immunoescape is tumour-derived MICA shedding. In this study, we report that osteosarcoma-derived MICA results from proteolytic cleavage of MICA α3 ectodomain. sMICA (soluble MICA) might be released in the early stage of disease. A MMP9 (matrix metalloproteinase 9, gelatinase B)-specific inhibitor suppressed sMICA release, indicating that MMP9 is critically involved in the osteosarcoma-associated proteolytic release of sMICA, which facilitates tumour immune escape. Using a specific MMP inhibitor might represent a double-edged sword, where it can inhibit tumour invasion and restore antitumour immune response.


Related Compounds

Related Articles:

High-internal-phase-emulsion polymeric monolith coupled with liquid chromatography-electrospray tandem mass spectrometry for enrichment and sensitive detection of trace cytokinins in plant samples.

2015-08-01

[Anal. Bioanal. Chem 407 , 6071-9, (2015)]

Constrained NBMPR analogue synthesis, pharmacophore mapping and 3D-QSAR modeling of equilibrative nucleoside transporter 1 (ENT1) inhibitory activity.

2008-04-01

[Bioorg. Med. Chem. 16 , 3848-65, (2008)]

Ribose-modified purine nucleosides as ribonucleotide reductase inhibitors. Synthesis, antitumor activity, and molecular modeling of N6-substituted 3'-C-methyladenosine derivatives.

2008-07-24

[J. Med. Chem. 51 , 4260-9, (2008)]

Identification of kinetin riboside as a repressor of CCND1 and CCND2 with preclinical antimyeloma activity.

2008-05-01

[J. Clin. Invest. 118 , 1750-1764, (2008)]

Kinetin riboside preferentially induces apoptosis by modulating Bcl-2 family proteins and caspase-3 in cancer cells.

2008-03-08

[Cancer Lett. 261 , 37-45, (2008)]

More Articles...