Metabolism of short‐chain fatty acid propionate induces surface expression of NKG2D ligands on cancer cells
Метаболизм короткоцепочечной жирной кислоты пропионата индуцирует экспрессию лигандов NKG2D на поверхности раковых клеток
2020-09-30
SCID: 54.1/ngqa7bb5
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MICA/BNKG2D ligandshistone acylationmitochondrial metabolismpropionate
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Abstract (AI)
SCFAs are primarily produced in the colon by bacterial fermentation of nondigestible carbohydrates. Besides providing energy, SCFAs can suppress development of colon cancer. The mechanism, however, remains elusive. Here, we demonstrate that the SCFA propionate upregulates surface expression of the immune stimulatory NKG2D ligands, MICA/B by imposing metabolic changes in dividing cells. Propionate-mediated MICA/B expression did not rely on GPR41/GPR43 receptors but depended on functional mitochondria. By siRNA-directed knockdown, we could further link phosphoenolpyruvate carboxykinase (PEPCK), the rate-limiting enzyme in gluconeogenesis to propionate regulation of MICA/B expression. Moreover, knockdown of Rictor and specific mTOR inhibitors implicated mTORC2 activity with metabolic changes that control MICA/B expression. SCFAs are precursors to short-chain acyl-CoAs that are used for histone acylation thereby linking the metabolic state to chromatin structure and gene expression. Propionate increased the overall acetylation and propionylation and inhibition of lysine acetyltransferases (KATs) that are responsible for adding acyl-CoAs to histones reduced propionate-mediated MICA/B expression, suggesting that propionate-induced acylation increases MICA/B expression. Notably, propionate upregulated MICA/B surface expression on colon cancer cells in an acylation-dependent manner; however, the impact of mitochondrial metabolism on MICA/B expression was different in colon cancer cells compared with Jurkat cells, suggesting that continuous exposure to propionate in the colon may provide an enhanced capacity to metabolize propionate. Together, our findings support that propionate causes metabolic changes resulting in NKG2D ligand surface expression, which holds potential as an immune activating anticancer therapy.
Key Findings
1
Knockdown of Rictor and use of mTOR inhibitors implicate mTORC2 activity in metabolic control of MICA/B expression.
2
Overall, propionate-induced metabolic and chromatin changes promote NKG2D ligand surface expression, suggesting potential for immune-activating anticancer therapy.
3
Propionate increases histone acetylation and propionylation, and inhibition of lysine acetyltransferases reduces propionate-mediated MICA/B expression.
4
Propionate upregulates MICA/B on colon cancer cells in an acylation-dependent manner, with mitochondrial metabolism effects differing between colon cancer and Jurkat cells.
5
Propionate upregulates surface expression of NKG2D ligands MICA/B on dividing cells by inducing metabolic changes.
6
Propionate-mediated MICA/B expression is independent of GPR41/GPR43 receptors but requires functional mitochondria.
7
siRNA knockdown links phosphoenolpyruvate carboxykinase (PEPCK) to propionate regulation of MICA/B expression.
Research Object
Colon cancer cells exposed to the short-chain fatty acid propionate
Research Subject
Propionate-induced metabolic changes that lead to upregulation of surface NKG2D ligands MICA/B, including roles of mitochondrial function, PEPCK, mTORC2, and histone acylation
Publication Details
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2020-09-30
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