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Merck
CN

Extracellular PKM2 facilitates organ-tissue fibrosis progression.

iScience (2021-10-26)
Hongwei Han, Yinwei Zhang, Guangda Peng, Liangwei Li, Jenny Yang, Yi Yuan, Yiting Xu, Zhi-Ren Liu
ABSTRACT

Persistent activation of fibroblasts and resistance of myofibroblasts to turnover play important roles in organ-tissue fibrosis development and progression. The mechanism that mediates apoptosis resistance of myofibroblasts is not understood. Here, we report that myofibroblasts express and secrete PKM2. Extracellular PKM2 (EcPKM2) facilitates progression of fibrosis by protecting myofibroblasts from apoptosis. EcPKM2 upregulates arginase-1 expression in myofibroblasts and therefore facilitates proline biosynthesis and subsequent collagen production. EcPKM2 interacts with integrin αvβ3 on myofibroblasts to activate FAK-PI3K signaling axis. Activation of FAK-PI3K by EcPKM2 activates downstream NF-κB survival pathway to prevent myofibroblasts from apoptosis. On the other hand, activation of FAK- PI3K by EcPKM2 suppresses PTEN to subsequently upregulate arginase-1 in myofibroblasts. Our studies uncover an important mechanism for organ fibrosis progression. More importantly, an antibody disrupting the interaction between PKM2 and integrin αvβ3 is effective in reversing fibrosis, suggesting a possible therapeutic strategy and target for treatment of organ fibrosis.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Fas Ligand human, recombinant, expressed in CHO cells, ≥95% (SDS-PAGE), ≥95% (HPLC), suitable for cell culture
Sigma-Aldrich
Anti-Integrin αVβ3 Antibody, clone LM609, clone LM609, Chemicon®, from mouse
Sigma-Aldrich
LY-294,002 hydrochloride, solid, ≥98% (HPLC)
Sigma-Aldrich
FAK Inhibitor 14, ≥95% (HPLC)
Sigma-Aldrich
LX-2 Human Hepatic Stellate Cell Line, a highly suitable model of human hepatic fibrosis