Academic Thesis

Basic information

Name Tsunedomi Ryouichi
Belonging department
Occupation name
researchmap researcher code 1000361639
researchmap agency Okayama University of Science

Title

Protein phosphatase 6 promotes stemness of colorectal cancer cells.

Bibliography Type

 

Author

Nobuyuki Fujiwara
Ryouichi Tsunedomi
Yuta Kimura
Masao Nakajima
Shinobu Tomochika
Shuhei Enjoji
Takashi Ohama
Koichi Sato
Hiroaki Nagano

Summary

Colorectal cancer (CRC) remains a significant global health concern, demanding a more profound comprehension of its molecular foundations for the development of improved therapeutic strategies. This study aimed to elucidate the role of protein phosphatase 6 (PP6), a member of the type 2A protein phosphatase family, in CRC. Protein phosphatase 6 functions as a heterotrimer with a catalytic subunit (PP6c), regulatory subunits (PP6Rs; PP6R1, PP6R2, and PP6R3), and scaffold subunits (ANKRD28, ANKRD44, and ANKRD52). Elevated PP6c expression has been identified in CRC tissues compared to normal mucosa, aligning with its potential involvement in CRC pathogenesis. PP6c knockdown resulted in decreased colony-forming ability and in vivo proliferation of various CRC cell lines. Transcriptome analysis revealed that PP6c knockdown resulted in altered expression of genes associated with cancer stemness. Notably, the PP6c-PP6R3 complex is a key player in regulating cancer stem cell (CSC) markers. Additionally, increased PP6c expression was observed in CSC-like cells induced by sphere formation, implicating the role of PP6c in CSC maintenance. This study highlights the role of PP6c in CRC and suggests that it is a potential therapeutic target disrupting a pathway critical for CRC progression and stem cell maintenance.

Magazine(name)

Cancer science

Publisher

 

Volume

115

Number Of Pages

9

StartingPage

3067

EndingPage

3078

Date of Issue

2024-07-16

Referee

Exist

Invited

 

Language

English

Thesis Type

Research papers (academic journals)

ISSN

 

DOI

10.1111/cas.16271

NAID

 

PMID

 

J-GLOBAL ID

 

arXiv ID

 

ORCID Put Code

 

DBLP ID