The modification of ferroptosis and abnormal lipometabolism through overexpression and knockdown of potential prognostic
- PDF / 9,180,717 Bytes
- 19 Pages / 595.276 x 790.866 pts Page_size
- 52 Downloads / 116 Views
ORIGINAL ARTICLE
The modification of ferroptosis and abnormal lipometabolism through overexpression and knockdown of potential prognostic biomarker perilipin2 in gastric carcinoma Xiaoying Sun1,2 · Shaojuan Yang2,3 · Xuechao Feng4 · Yaowu Zheng4,5 · Jinsong Zhou1,2 · Hai Wang1,2 · Yucheng Zhang2,6 · Hongyan Sun2,7 · Chengyan He1,2 Received: 23 June 2019 / Accepted: 2 September 2019 © The International Gastric Cancer Association and The Japanese Gastric Cancer Association 2019
Abstract Background To investigate the biological relationship, mechanism between perilipin2 and the occurrence, advancement of gastric carcinoma, and explore the mechanism of lipid metabolism disorder leading to gastric neoplasm, and propose that perilipin2 is presumably considered as a potential molecular biomarker of gastric carcinoma. Methods RNA-seq was applied to analyze perilipin2 and differentially expressed genes modulated by perilipin2 in neoplastic tissues of both perilipin2 overexpression and knockdown groups in vivo. The mechanism was discovered and confirmed by Rt-qPCR, immunoblotting, immunohistochemistry, staining and microassay, respectively. Cellular function experiments were performed by flow cytometry, CCK8, clonogenic assay, etc. Results Overexpression and knockdown of perilipin2 augmented the proliferation and apoptosis of gastric carcinoma cell lines SGC7901 and MGC803, respectively. The neoplastic cells with perilipin2-overexpression obtained more conspicuously rapid growth than knockdown group in vivo, and perilipin2 affected the proliferation and apoptosis of gastric carcinoma cells by modulating the related genes:acyl-coa synthetase long-chain family member 3, arachidonate 15-lipoxygenase, microtubule associated protein 1 light chain 3 alpha, pr/set domain 11 and importin 7 that were participated in Ferroptosis pathway. Moreover, RNA-seq indicated perilipin2 was an indispensable gene and protein in the suppression of Ferroptosis caused by abnormal lipometabolism in gastric carcinoma. Conclusion Our study expounded the facilitation of perilipin2 in regulating the proliferation and apoptosis of gastric carcinoma cells by modification in Ferroptosis pathway, and we interpreted that the mechanism of gastric neoplasm caused by obesity, we also discovered that pr/set domain 11 and importin 7 are novel transcription factors relevant to gastric carcinoma. Furthermore, perilipin2 probably serves not only as a diagnostic biomarker, but also a new therapeutic target. Keywords Perilipin2 · Gastric carcinoma · Overexpression · Knockdown · Ferroptosis pathway · Lipometabolism
Electronic supplementary material The online version of this article (https://doi.org/10.1007/s10120-019-01004-z) contains supplementary material, which is available to authorized users. * Xiaoying Sun [email protected]
4
College of Life Sciences, Northeast Normal University, Changchun 130024, China
* Chengyan He [email protected]
5
Institute of Cardiovascular Research, University of California, San Francisco, CA 94101, USA
6
Departm
Data Loading...