Bluesky Facebook Reddit Email

New study throws light on mechanisms underlying helicobacter pylori-induced gastric cancer

07.18.23 | Juntendo University Research Promotion Center

SAMSUNG T9 Portable SSD 2TB

SAMSUNG T9 Portable SSD 2TB transfers large imagery and model outputs quickly between field laptops, lab workstations, and secure archives.


Helicobacter pylori ( H. pylori ) infections are commonly associated with abdominal pain, bloating, and acidity. Clinical evidence suggests that infection with H. pylori cagA + strains dramatically increases the risk of developing gastric cancer. A specialized protein delivered by H. pylori to the host, oncoprotein “CagA,” has been shown to interact with multiple host proteins and promote gastric carcinogenesis (transformation of normal cells to cancer cells). However, the underlying mechanisms associated with its biochemical activity have not been fully determined yet.

A new study published in Science Signaling on 18 July 2023 shares insights into the additional mechanism of oncogenic CagA action. “CagA interacts with multiple host proteins within the gastric epithelial cells, thereby inducing pathways associated with oncogenesis and promoting gastric carcinogenesis. We were curious to find out which pathways were involved in this process,’ says Dr. Atsushi Takahashi-Kanemitsu, lead author of the study and Assistant Professor, Department of Biochemistry & Systems Biomedicine, Juntendo University, as he states the motivation behind pursuing this study.

In order to carry out their study, the researchers expressed oncoprotein CagA in three different models—embryos of Xenopus laevis (lab frog), adult mouse stomach, and cultured human gastric epithelial cells—and tried to understand its effect on the host cells and pathways.

The team noted that the expression of the CagA oncoprotein in X. laevis embryos led to impairment of convergent extension movements—cell movements observed during embryonic development that are involved in shaping or elongating organismal tissues and organs. This impairment further interfered with subsequent key embryonic development processes, including body axis formation.

Similarly, the team performed an experiment using adult mice. They generated genetically modified (transgenic) mice that specifically express the CagA oncoprotein in the stomach epithelial cells in response to tamoxifen treatment.

The researchers observed that CagA expression in the stomach of adult mice caused an increase in the depth of pyloric glands—secretory glands that facilitate digestion/stomach function—and also triggered abnormal/excessive cell multiplication, which is a phenomenon remarkably observed in various types of cancers. This also led to the displacement of the proteins “VANGL1/2”—members of the Van Gogh-like (VANGL) protein family, which play key roles in various biological processes—from the plasma membrane to the cytoplasm. CagA expression also resulted in fewer differentiated enteroendocrine cells, which are specialized cells in the gastrointestinal tract that aid in digestion.

Finally, the team expressed the CagA oncoprotein in cultured human gastric epithelial cells. The experiments clearly demonstrated that a small region of the CagA oncoprotein was interacting with amino acid residues from the proteins VANGL1/2, thus leading to its displacement (a phenomenon also observed in the mouse model) and resulting in disruption of the Wnt/PCP pathway—a key biological ‘relay’ that affects organismal development.

Corresponding author Masanori Hatakeyama, Laboratory Head, Institute of Microbial Chemistry, Microbial Chemistry Research Foundation, says, “Perturbation of Wnt/PCP signaling by the H. pylori CagA-VANGL interaction induces hyperplastic changes, along with impaired cell differentiation in gastric pyloric glands. This, in conjunction with other oncogenic CagA actions, may contribute to the development of gastric cancer.”

In summary, the researchers conclude that through this study, they were able to elucidate the molecular mechanisms involved in gastric carcinogenesis induced by H. pylori , gain insights into the role of the Wnt/PCP pathway in carcinogenesis, and propose it as a potential target for clinical interventions against H. pylori cagA + infections.

This research project was conducted by Atsushi Takahashi-Kanemitsu (Juntendo University), Masanori Hatakeyama (Institute of Microbial Chemistry, Hokkaido University and The University of Tokyo), and Mengxue Lu (The University of Tokyo) in collaboration with Christopher T. Knight (The University of Tokyo), Takayoshi Yamamoto (The University of Tokyo), Takuo Hayashi (Juntendo University), Yusuke Mii (National Institute for Basic Biology, ExCELLS, and JST), Masanori Taira (Chuo University), Etsuo A. Susaki (Juntendo University), Nick Barker (A*STAR Singapore, Kanazawa University, and National University of Singapore), Takuya Ooki (Institute of Microbial Chemistry), Ippei Kikuchi (Institute of Microbial Chemistry), and Akira Kikuchi (Osaka University).

Reference

Authors

Title of original paper

Journal

Atsushi Takahashi-Kanemitsu 1,2 , Mengxue Lu 1 , Christopher Takaya Knight 1 , Takayoshi Yamamoto 3,4 , Takuo Hayashi 5 , Yusuke Mii 6,7 , Takuya Ooki 1,8 , Ippei Kikuchi 1,8 , Akira Kikuchi 9,10 , Nick Barker 11,12,13 , Etsuo A. Susaki 2 , Masanori Taira 3,14 , and Masanori Hatakeyama 1,8,15

The Helicobacter Pylori CagA Oncoprotein Disrupts Wnt/PCP Signaling and Promotes Hyperproliferation of Pyloric Gland Base Cells

Science Signaling

DOI

Affiliations

10.1126/scisignal.abp9020

1 Department of Microbiology, Graduate School of Medicine, The University of Tokyo, Japan.

2 Department of Biochemistry and Systems Biomedicine, Juntendo University Graduate School of Medicine, Japan.

3 Department of Biological Sciences, Graduate School of Science, The University of Tokyo, Japan.

4 Department of Life Sciences, Graduate School of Arts and Sciences, The University of Tokyo, Japan.

5 Department of Human Pathology, Juntendo University Graduate School of Medicine, Japan.

6 National Institute for Basic Biology and Exploratory Research Center on Life and Living Systems (ExCELLS), National Institutes of Natural Sciences, Japan.

7 Japan Science and Technology Agency, PRESTO, Japan.

8 Laboratory of Microbial Carcinogenesis, Institute of Microbial Chemistry, Microbial Chemistry Research Foundation, Japan.

9 Department of Molecular Biology and Biochemistry, Graduate School of Medicine, Osaka University, Japan.

10 Center for Infectious Disease Education and Research (CiDER), Osaka University, Japan.

11 Institute of Molecular and Cell Biology (IMCB), Agency for Science, Technology and Research (A*STAR), Singapore.

12 Department of Physiology, Yong Loo Lin School of Medicine, National University of Singapore, Singapore.

13 Division of Epithelial Stem Cell Biology, Cancer Research Institute, Kanazawa University, Japan.

14 Department of Biological Sciences, Faculty of Science and Engineering, Chuo University, Japan.

15 Research Center of Microbial Carcinogenesis, Institute for Genetic Medicine, Hokkaido University, Japan.

Experimental study

Animals

The Helicobacter Pylori CagA Oncoprotein Disrupts Wnt/PCP Signaling and Promotes Hyperproliferation of Pyloric Gland Base Cells

18-Jul-2023

NONE

Keywords

Article Information

Contact Information

Yoshitaka Nakashima
Juntendo University Research Promotion Center
y.nakashima.gd@juntendo.ac.jp
Katsuhisa Yamazaki
Department of Intellectual Property and Public Relations Institute of Microbial Chemistry Microbial Chemistry Research Foundation
yamazakik@bikaken.or.jp

Source

How to Cite This Article

APA:
Juntendo University Research Promotion Center. (2023, July 18). New study throws light on mechanisms underlying helicobacter pylori-induced gastric cancer. Brightsurf News. https://www.brightsurf.com/news/LQ42PQ68/new-study-throws-light-on-mechanisms-underlying-helicobacter-pylori-induced-gastric-cancer.html
MLA:
"New study throws light on mechanisms underlying helicobacter pylori-induced gastric cancer." Brightsurf News, Jul. 18 2023, https://www.brightsurf.com/news/LQ42PQ68/new-study-throws-light-on-mechanisms-underlying-helicobacter-pylori-induced-gastric-cancer.html.