Literature DB >> 31650247

Tricellular tight junction protein LSR/angulin-1 contributes to the epithelial barrier and malignancy in human pancreatic cancer cell line.

Takuro Kyuno1,2, Daisuke Kyuno1, Takayuki Kohno2, Takumi Konno2, Shin Kikuchi3, Chihiro Arimoto4, Hiroshi Yamaguchi1, Masafumi Imamura1, Yasutoshi Kimura1, Masuo Kondoh5, Ichiro Takemasa1, Takashi Kojima6.   

Abstract

Lipolysis-stimulated lipoprotein receptor (LSR)/angulin-1 is a crucial molecule of tricellular contacts in the epithelial barrier of normal cells and the malignancy of cancer cells. To investigate whether LSR/angulin-1 affects the epithelial barrier and malignancy in human pancreatic cancer, human pancreatic cancer cell line HPAC was used. Treatment with EGF or TGF-β increased the expression of LSR, but not tricellulin (TRIC), and induced the localization of LSR and TRIC to bicellular tight junctions from tricellular tight junctions. TGF-β receptor type-1 inhibitor EW-7197 prevented changes of the distribution and the barrier function of LSR by TGF-β. Knockdown of LSR increased cell migration, invasion, proliferation and EGF ligand amphiregulin expression and decreased the epithelial barrier. Treatment with amphiregulin induced cell migration and invasion and knockdown of amphiregulin prevented the increases of cell migration, invasion and proliferation caused by knockdown of LSR. Treatment with LSR ligand peptide angubindin-1 decreased the epithelial barrier and the expression of LSR, but not TRIC, and increased cell invasion. Knockdown of TRIC decreased cell migration and the epithelial barrier. In immunohistochemical analysis of human pancreatic cancer tissues, LSR and TRIC were found to be localized at the cell membranes of normal pancreatic ducts and well-differentiated pancreatic ductal adenocarcinomas (PDAC), whereas in poorly differentiated PDAC, LSR was weakly detected in the cytoplasm. Amphiregulin was highly expressed in the cytoplasm of well- and poorly differentiated PDAC. In pancreatic cancer, LSR contributes to the epithelial barrier and malignancy via growth factors and may be a potential targeting molecule in the therapy.

Entities:  

Keywords:  AREG; Growth factors; LSR; Pancreatic cancer; Tricellulin

Mesh:

Substances:

Year:  2019        PMID: 31650247     DOI: 10.1007/s00418-019-01821-4

Source DB:  PubMed          Journal:  Histochem Cell Biol        ISSN: 0948-6143            Impact factor:   4.304


  27 in total

Review 1.  Tight junction-based epithelial microenvironment and cell proliferation.

Authors:  S Tsukita; Y Yamazaki; T Katsuno; A Tamura; S Tsukita
Journal:  Oncogene       Date:  2008-11-24       Impact factor: 9.867

Review 2.  Biology of claudins.

Authors:  Susanne Angelow; Robert Ahlstrom; Alan S L Yu
Journal:  Am J Physiol Renal Physiol       Date:  2008-05-14

3.  Analysis of the 'angulin' proteins LSR, ILDR1 and ILDR2--tricellulin recruitment, epithelial barrier function and implication in deafness pathogenesis.

Authors:  Tomohito Higashi; Shinsaku Tokuda; Shin-ichiro Kitajiri; Sayuri Masuda; Hiroki Nakamura; Yukako Oda; Mikio Furuse
Journal:  J Cell Sci       Date:  2012-12-13       Impact factor: 5.285

4.  Claudin-4: a new target for pancreatic cancer treatment using Clostridium perfringens enterotoxin.

Authors:  P Michl; M Buchholz; M Rolke; S Kunsch; M Löhr; B McClane; S Tsukita; G Leder; G Adler; T M Gress
Journal:  Gastroenterology       Date:  2001-09       Impact factor: 22.682

5.  LSR defines cell corners for tricellular tight junction formation in epithelial cells.

Authors:  Sayuri Masuda; Yukako Oda; Hiroyuki Sasaki; Junichi Ikenouchi; Tomohito Higashi; Masaya Akashi; Eiichiro Nishi; Mikio Furuse
Journal:  J Cell Sci       Date:  2011-01-18       Impact factor: 5.285

Review 6.  Amphiregulin.

Authors:  Carmen Berasain; Matías A Avila
Journal:  Semin Cell Dev Biol       Date:  2014-01-23       Impact factor: 7.727

7.  Loss of LSR affects epithelial barrier integrity and tumor xenograft growth of CaCo-2 cells.

Authors:  Bernd A Czulkies; Justin Mastroianni; Lisa Lutz; Sarah Lang; Carsten Schwan; Gudula Schmidt; Silke Lassmann; Robert Zeiser; Klaus Aktories; Panagiotis Papatheodorou
Journal:  Oncotarget       Date:  2017-06-06

8.  Nuclear localization of tricellulin promotes the oncogenic property of pancreatic cancer.

Authors:  Akira Takasawa; Masaki Murata; Kumi Takasawa; Yusuke Ono; Makoto Osanai; Satoshi Tanaka; Masanori Nojima; Tsuyoshi Kono; Koichi Hirata; Takashi Kojima; Norimasa Sawada
Journal:  Sci Rep       Date:  2016-09-19       Impact factor: 4.379

Review 9.  Potential for Tight Junction Protein-Directed Drug Development Using Claudin Binders and Angubindin-1.

Authors:  Yosuke Hashimoto; Keisuke Tachibana; Susanne M Krug; Jun Kunisawa; Michael Fromm; Masuo Kondoh
Journal:  Int J Mol Sci       Date:  2019-08-17       Impact factor: 5.923

Review 10.  Molecular organization of tricellular tight junctions.

Authors:  Mikio Furuse; Yasushi Izumi; Yukako Oda; Tomohito Higashi; Noriko Iwamoto
Journal:  Tissue Barriers       Date:  2014-05-01
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  8 in total

1.  Effects of histone deacetylase inhibitors Tricostatin A and Quisinostat on tight junction proteins of human lung adenocarcinoma A549 cells and normal lung epithelial cells.

Authors:  Yuma Shindo; Wataru Arai; Takumi Konno; Takayuki Kohno; Yuki Kodera; Hirofumi Chiba; Masahiro Miyajima; Yuji Sakuma; Atsushi Watanabe; Takashi Kojima
Journal:  Histochem Cell Biol       Date:  2021-05-11       Impact factor: 4.304

2.  In focus in HCB.

Authors:  Douglas J Taatjes; Jürgen Roth
Journal:  Histochem Cell Biol       Date:  2020-01       Impact factor: 4.304

Review 3.  Dysfunction of epithelial permeability barrier induced by HMGB1 in 2.5D cultures of human epithelial cells.

Authors:  Takashi Kojima; Yuma Shindo; Takumi Konno; Yuki Kodera; Wataru Arai; Maki Miyakawa; Kizuku Ohwada; Hiroki Tanaka; Mitsuhiro Tsujiwaki; Yuji Sakuma; Shin Kikuchi; Tsuyoshi Ohkuni; Kenichi Takano; Atsushi Watanabe; Takayuki Kohno
Journal:  Tissue Barriers       Date:  2021-09-18

4.  Effects of Lipolysis-Stimulated Lipoprotein Receptor on Tight Junctions of Pancreatic Ductal Epithelial Cells in Hypertriglyceridemic Acute Pancreatitis.

Authors:  Jie Wang; Mengbin Qin; Qing Wu; Huiying Yang; Biwei Wei; Jinlian Xie; Yingying Qin; Zhihai Liang; Jiean Huang
Journal:  Biomed Res Int       Date:  2022-04-14       Impact factor: 3.246

5.  HMGB1 enhances epithelial permeability via p63/TGF-β signaling in lung and terminal bronchial epithelial cells.

Authors:  Yuki Kodera; Takayuki Kohno; Takumi Konno; Wataru Arai; Mitsuhiro Tsujiwaki; Yuma Shindo; Hirofumi Chiba; Maki Miyakawa; Hiroki Tanaka; Yuji Sakuma; Atsushi Watanabe; Hiroki Takahashi; Takashi Kojima
Journal:  Tissue Barriers       Date:  2020-08-28

6.  Increase in Epithelial Permeability and Cell Metabolism by High Mobility Group Box 1, Inflammatory Cytokines and TPEN in Caco-2 Cells as a Novel Model of Inflammatory Bowel Disease.

Authors:  Maki Miyakawa; Takumi Konno; Takayuki Kohno; Shin Kikuchi; Hiroki Tanaka; Takashi Kojima
Journal:  Int J Mol Sci       Date:  2020-11-10       Impact factor: 5.923

7.  The Role of Tricellular Junctions in the Transport of Macromolecules Across Endothelium.

Authors:  Mean Ghim; Yumnah Mohamied; Peter D Weinberg
Journal:  Cardiovasc Eng Technol       Date:  2020-08-20       Impact factor: 2.495

Review 8.  The Roles of Tricellular Tight Junction Protein Angulin-1/Lipolysis-Stimulated Lipoprotein Receptor (LSR) in Endometriosis and Endometrioid-Endometrial Carcinoma.

Authors:  Hiroshi Shimada; Takayuki Kohno; Takumi Konno; Tadahi Okada; Kimihito Saito; Yuma Shindo; Shin Kikuchi; Mitsuhiro Tsujiwaki; Marie Ogawa; Motoki Matsuura; Tsuyoshi Saito; Takashi Kojima
Journal:  Cancers (Basel)       Date:  2021-12-17       Impact factor: 6.639

  8 in total

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