Transmembrane Protease TMPRSS11B Promotes Lung Cancer Growth by Enhancing Lactate Export and Glycolytic Metabolism

Barrett L. Updegraff(The University of Texas Southwestern Medical Center), Xiaorong Zhou(Nantong University), Yabin Guo(Sun Yat-sen University), Mahesh S. Padanad(The University of Texas Southwestern Medical Center), Pei-Hsuan Chen(Children's Medical Center), Chendong Yang(Children's Medical Center), Jessica Sudderth(Children's Medical Center), Carla R. Tirado(The University of Texas Southwestern Medical Center), Luc Girard(The University of Texas Southwestern Medical Center), John D. Minna(The University of Texas Southwestern Medical Center), Prashant Mishra(Children's Medical Center), Ralph J. DeBerardinis(Children's Medical Center), Kathryn A. O’Donnell(The University of Texas Southwestern Medical Center)
Cell Reports
November 1, 2018
Cited by 59Open Access
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Abstract

Pathways underlying metabolic reprogramming in cancer remain incompletely understood. We identify the transmembrane serine protease TMPRSS11B as a gene that promotes transformation of immortalized human bronchial epithelial cells (HBECs). TMPRSS11B is upregulated in human lung squamous cell carcinomas (LSCCs), and high expression is associated with poor survival of non-small cell lung cancer patients. TMPRSS11B inhibition in human LSCCs reduces transformation and tumor growth. Given that TMPRSS11B harbors an extracellular (EC) protease domain, we hypothesized that catalysis of a membrane-bound substrate modulates tumor progression. Interrogation of a set of soluble receptors revealed that TMPRSS11B promotes solubilization of Basigin, an obligate chaperone of the lactate monocarboxylate transporter MCT4. Basigin release mediated by TMPRSS11B enhances lactate export and glycolytic metabolism, thereby promoting tumorigenesis. These findings establish an oncogenic role for TMPRSS11B and provide support for the development of therapies that target this enzyme at the surface of cancer cells.


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