Accumulation of annexin A2 and S100A10 prevents apoptosis of apically delaminated, transformed epithelial cells

Author:

Ito Shoko12,Kuromiya Keisuke1ORCID,Sekai Miho12,Sako Hiroaki1ORCID,Sai Kazuhito1,Morikawa Riho12,Mukai Yohei3,Ida Yoko3,Anzai Moe3,Ishikawa Susumu4,Kozawa Kei1,Shirai Takanobu14,Tanimura Nobuyuki1,Sugie Kenta12,Ikenouchi Junichi5ORCID,Ogawa Motoyuki6ORCID,Naguro Isao6ORCID,Ichijo Hidenori6,Fujita Yasuyuki1ORCID

Affiliation:

1. Department of Molecular Oncology, Kyoto University Graduate School of Medicine, Kyoto 606-8501, Japan

2. Eisai Co., Ltd., Kobe 650-0047, Japan

3. Protein Targeting Biologics, KAN Research Institute, Kobe 650-0047, Japan

4. Division of Molecular Oncology, Institute for Genetic Medicine, Hokkaido University Graduate School of Chemical Sciences and Engineering, Sapporo 060-0815, Japan

5. Department of Biology, Faculty of Sciences, Kyushu University, Fukuoka 819-0395, Japan

6. Laboratory of Cell Signaling, Graduate School of Pharmaceutical Sciences, The University of Tokyo, Tokyo 113-0033, Japan

Abstract

In various epithelial tissues, the epithelial monolayer acts as a barrier. To fulfill its function, the structural integrity of the epithelium is tightly controlled. When normal epithelial cells detach from the basal substratum and delaminate into the apical lumen, the apically extruded cells undergo apoptosis, which is termed anoikis. In contrast, transformed cells often become resistant to anoikis and able to survive and grow in the apical luminal space, leading to the formation of multilayered structures, which can be observed at the early stage of carcinogenesis. However, the underlying molecular mechanisms still remain elusive. In this study, we first demonstrate that S100A10 and ANXA2 (Annexin A2) accumulate in apically extruded, transformed cells in both various cell culture systems and murine epithelial tissues in vivo. ANXA2 acts upstream of S100A10 accumulation. Knockdown of ANXA2 promotes apoptosis of apically extruded RasV12-transformed cells and suppresses the formation of multilayered epithelia. In addition, the intracellular reactive oxygen species (ROS) are elevated in apically extruded RasV12 cells. Treatment with ROS scavenger Trolox reduces the occurrence of apoptosis of apically extruded ANXA2-knockdown RasV12 cells and restores the formation of multilayered epithelia. Furthermore, ROS-mediated p38MAPK activation is observed in apically delaminated RasV12 cells, and ANXA2 knockdown further enhances the p38MAPK activity. Moreover, the p38MAPK inhibitor promotes the formation of multilayered epithelia of ANXA2-knockdown RasV12 cells. These results indicate that accumulated ANXA2 diminishes the ROS-mediated p38MAPK activation in apically extruded transformed cells, thereby blocking the induction of apoptosis. Hence, ANXA2 can be a potential therapeutic target to prevent multilayered, precancerous lesions.

Funder

Japan Society for the Promotion of Science London

MEXT | JST | Moonshot Research and Development Program

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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