FOXA2-initiated transcriptional activation of INHBA induced by methylmalonic acid promotes pancreatic neuroendocrine neoplasm progression

Author:

Hu Chunhua,Ye Mujie,Bai Jianan,Liu Pengfei,Lu Feiyu,Chen Jinhao,Xu Yanling,Yan Lijun,Yu Ping,Xiao Zequan,Gu Danyang,Xu Lin,Tian Ye,Tang QiyunORCID

Abstract

AbstractPancreatic neuroendocrine neoplasms (PanNENs) are a group of highly heterogeneous neoplasms originating from the endocrine islet cells of the pancreas with characteristic neuroendocrine differentiation, more than 60% of which represent metastases when diagnosis, causing major tumor-related death. Metabolic alterations have been recognized as one of the hallmarks of tumor metastasis, providing attractive therapeutic targets. However, little is known about the molecular mechanism of metabolic changes regulating PanNEN progression. In this study, we first identified methylmalonic acid (MMA) as an oncometabolite for PanNEN progression, based on serum metabolomics of metastatic PanNEN compared with non-metastatic PanNEN patients. One of the key findings was the potentially novel mechanism of epithelial–mesenchymal transition (EMT) triggered by MMA. Inhibin βA (INHBA) was characterized as a key regulator of MMA-induced PanNEN progression according to transcriptomic analysis, which has been validated in vitro and in vivo. Mechanistically, INHBA was activated by FOXA2, a neuroendocrine (NE) specific transcription factor, which was initiated during MMA-induced progression. In addition, MMA-induced INHBA upregulation activated downstream MITF to regulate EMT-related genes in PanNEN cells. Collectively, these data suggest that activation of INHBA via FOXA2 promotes MITF-mediated EMT during MMA inducing PanNEN progression, which puts forward a novel therapeutic target for PanNENs. Graphical abstract Methylmalonic acid (MMA), a serum oncometabolite, increased the expression of inhibin βA (INHBA) by the neuroendocrine-specific transcription factor, FOXA2 to induce MITF-mediated EMT during the progression of pancreatic neuroendocrine neoplasms (PanNENs), providing an actionable therapeutic vulnerability to metabolic therapy in PanNENs.

Funder

New Clinical Treatment Technology Research Fund

Science Foundation Project of Ili & Jiangsu Joint Institute of Health

Wuxi Taihu talent plan for the excellent medical expert team

Publisher

Springer Science and Business Media LLC

Subject

Cell Biology,Cellular and Molecular Neuroscience,Pharmacology,Molecular Biology,Molecular Medicine

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