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Metastasis and Immune Evasion from Extracellular cGAMP Hydrolysis.

Authors :
Li J
Duran MA
Dhanota N
Chatila WK
Bettigole SE
Kwon J
Sriram RK
Humphries MP
Salto-Tellez M
James JA
Hanna MG
Melms JC
Vallabhaneni S
Litchfield K
Usaite I
Biswas D
Bareja R
Li HW
Martin ML
Dorsaint P
Cavallo JA
Li P
Pauli C
Gottesdiener L
DiPardo BJ
Hollmann TJ
Merghoub T
Wen HY
Reis-Filho JS
Riaz N
Su SM
Kalbasi A
Vasan N
Powell SN
Wolchok JD
Elemento O
Swanton C
Shoushtari AN
Parkes EE
Izar B
Bakhoum SF
Source :
Cancer discovery [Cancer Discov] 2021 May; Vol. 11 (5), pp. 1212-1227. Date of Electronic Publication: 2020 Dec 28.
Publication Year :
2021

Abstract

Cytosolic DNA is characteristic of chromosomally unstable metastatic cancer cells, resulting in constitutive activation of the cGAS-STING innate immune pathway. How tumors co-opt inflammatory signaling while evading immune surveillance remains unknown. Here, we show that the ectonucleotidase ENPP1 promotes metastasis by selectively degrading extracellular cGAMP, an immune-stimulatory metabolite whose breakdown products include the immune suppressor adenosine. ENPP1 loss suppresses metastasis, restores tumor immune infiltration, and potentiates response to immune checkpoint blockade in a manner dependent on tumor cGAS and host STING. Conversely, overexpression of wild-type ENPP1, but not an enzymatically weakened mutant, promotes migration and metastasis, in part through the generation of extracellular adenosine, and renders otherwise sensitive tumors completely resistant to immunotherapy. In human cancers, ENPP1 expression correlates with reduced immune cell infiltration, increased metastasis, and resistance to anti-PD-1/PD-L1 treatment. Thus, cGAMP hydrolysis by ENPP1 enables chromosomally unstable tumors to transmute cGAS activation into an immune-suppressive pathway. SIGNIFICANCE: Chromosomal instability promotes metastasis by generating chronic tumor inflammation. ENPP1 facilitates metastasis and enables tumor cells to tolerate inflammation by hydrolyzing the immunotransmitter cGAMP, preventing its transfer from cancer cells to immune cells. This article is highlighted in the In This Issue feature, p. 995 .<br /> (©2020 American Association for Cancer Research.)

Details

Language :
English
ISSN :
2159-8290
Volume :
11
Issue :
5
Database :
MEDLINE
Journal :
Cancer discovery
Publication Type :
Academic Journal
Accession number :
33372007
Full Text :
https://doi.org/10.1158/2159-8290.CD-20-0387