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Alteration of Cellular Energy Metabolism through LPAR2-Axin2 Axis in Gastric Cancer

Lysophosphatidic acid (LPA), a multifunctional endogenous phospholipid, plays a vital role in cellular homeostasis and the malignant behavior of cancer cells through G-protein-coupled receptors. However, the role of LPA in β-catenin-mediated gastric cancer is unknown. Here, we have noted the high ex...

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Autores principales: Ara, Hosne, Subedi, Utsab, Sharma, Papori, Bhattarai, Susmita, Sharma, Sudha, Manikandan, Shrivats, Yu, Xiuping, Bhuiyan, Md. Shenuarin, Sun, Hong, Miriyala, Sumitra, Panchatcharam, Manikandan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775664/
https://www.ncbi.nlm.nih.gov/pubmed/36551233
http://dx.doi.org/10.3390/biom12121805
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author Ara, Hosne
Subedi, Utsab
Sharma, Papori
Bhattarai, Susmita
Sharma, Sudha
Manikandan, Shrivats
Yu, Xiuping
Bhuiyan, Md. Shenuarin
Sun, Hong
Miriyala, Sumitra
Panchatcharam, Manikandan
author_facet Ara, Hosne
Subedi, Utsab
Sharma, Papori
Bhattarai, Susmita
Sharma, Sudha
Manikandan, Shrivats
Yu, Xiuping
Bhuiyan, Md. Shenuarin
Sun, Hong
Miriyala, Sumitra
Panchatcharam, Manikandan
author_sort Ara, Hosne
collection PubMed
description Lysophosphatidic acid (LPA), a multifunctional endogenous phospholipid, plays a vital role in cellular homeostasis and the malignant behavior of cancer cells through G-protein-coupled receptors. However, the role of LPA in β-catenin-mediated gastric cancer is unknown. Here, we have noted the high expression of LPAR2 in human gastric cancer tissues, and that LPA treatment significantly increased the proliferation, migration, and invasion of human gastric cancer cells. Results from our biochemical experiments showed that an LPA exposure increased the expression of β-catenin and its nuclear localization, increased the phosphorylation of glycogen synthase kinase 3β (GSK-3β), decreased the expression of Axin2, and increased the expression of the target genes of the β-catenin signaling pathway. The LPA2 receptor (LPAR2) antagonist significantly reduced the LPA-induced nuclear localization of β-catenin, the primary signaling event. The knockdown of LPAR2 in the gastric cancer cell lines robustly reduced the LPA-induced β-catenin activity. An LPA exposure increased the ATP production by both oxidative phosphorylation and glycolysis, and this effect was abrogated with the addition of an LPAR2 antagonist and XAV393, which stabilizes the Axin and inhibits the β-catenin signaling pathway. Based on our findings, the possibility that LPA contributes to gastric cancer initiation and progression through the β-catenin signaling pathway as well as by the dysregulation of the energy metabolism via the LPAR2 receptor and Axin2, respectively, provides a novel insight into the mechanism of and possible therapeutic targets of gastric cancer.
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spelling pubmed-97756642022-12-23 Alteration of Cellular Energy Metabolism through LPAR2-Axin2 Axis in Gastric Cancer Ara, Hosne Subedi, Utsab Sharma, Papori Bhattarai, Susmita Sharma, Sudha Manikandan, Shrivats Yu, Xiuping Bhuiyan, Md. Shenuarin Sun, Hong Miriyala, Sumitra Panchatcharam, Manikandan Biomolecules Article Lysophosphatidic acid (LPA), a multifunctional endogenous phospholipid, plays a vital role in cellular homeostasis and the malignant behavior of cancer cells through G-protein-coupled receptors. However, the role of LPA in β-catenin-mediated gastric cancer is unknown. Here, we have noted the high expression of LPAR2 in human gastric cancer tissues, and that LPA treatment significantly increased the proliferation, migration, and invasion of human gastric cancer cells. Results from our biochemical experiments showed that an LPA exposure increased the expression of β-catenin and its nuclear localization, increased the phosphorylation of glycogen synthase kinase 3β (GSK-3β), decreased the expression of Axin2, and increased the expression of the target genes of the β-catenin signaling pathway. The LPA2 receptor (LPAR2) antagonist significantly reduced the LPA-induced nuclear localization of β-catenin, the primary signaling event. The knockdown of LPAR2 in the gastric cancer cell lines robustly reduced the LPA-induced β-catenin activity. An LPA exposure increased the ATP production by both oxidative phosphorylation and glycolysis, and this effect was abrogated with the addition of an LPAR2 antagonist and XAV393, which stabilizes the Axin and inhibits the β-catenin signaling pathway. Based on our findings, the possibility that LPA contributes to gastric cancer initiation and progression through the β-catenin signaling pathway as well as by the dysregulation of the energy metabolism via the LPAR2 receptor and Axin2, respectively, provides a novel insight into the mechanism of and possible therapeutic targets of gastric cancer. MDPI 2022-12-02 /pmc/articles/PMC9775664/ /pubmed/36551233 http://dx.doi.org/10.3390/biom12121805 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Ara, Hosne
Subedi, Utsab
Sharma, Papori
Bhattarai, Susmita
Sharma, Sudha
Manikandan, Shrivats
Yu, Xiuping
Bhuiyan, Md. Shenuarin
Sun, Hong
Miriyala, Sumitra
Panchatcharam, Manikandan
Alteration of Cellular Energy Metabolism through LPAR2-Axin2 Axis in Gastric Cancer
title Alteration of Cellular Energy Metabolism through LPAR2-Axin2 Axis in Gastric Cancer
title_full Alteration of Cellular Energy Metabolism through LPAR2-Axin2 Axis in Gastric Cancer
title_fullStr Alteration of Cellular Energy Metabolism through LPAR2-Axin2 Axis in Gastric Cancer
title_full_unstemmed Alteration of Cellular Energy Metabolism through LPAR2-Axin2 Axis in Gastric Cancer
title_short Alteration of Cellular Energy Metabolism through LPAR2-Axin2 Axis in Gastric Cancer
title_sort alteration of cellular energy metabolism through lpar2-axin2 axis in gastric cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9775664/
https://www.ncbi.nlm.nih.gov/pubmed/36551233
http://dx.doi.org/10.3390/biom12121805
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