1,661
Views
40
CrossRef citations to date
0
Altmetric
Autophagic Punctum

CAV1/caveolin 1 enhances aerobic glycolysis in colon cancer cells via activation of SLC2A3/GLUT3 transcription

&
Pages 1684-1685 | Received 06 Jul 2012, Accepted 13 Jul 2012, Published online: 09 Aug 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Gang Wang, Yang Yu, Yu-Zhu Wang, Pei-Hao Yin, Ke Xu & Heng Zhang. (2020) The effects and mechanisms of isoliquiritigenin loaded nanoliposomes regulated AMPK/mTOR mediated glycolysis in colorectal cancer. Artificial Cells, Nanomedicine, and Biotechnology 48:1, pages 1231-1249.
Read now
Qiliang Peng, Kaisu Lin, Tao Chang, Li Zou, Pengfei Xing, Yuntian Shen & Yaqun Zhu. (2018) Identification of genomic expression differences between right-sided and left-sided colon cancer based on bioinformatics analysis. OncoTargets and Therapy 11, pages 609-618.
Read now

Articles from other publishers (38)

Logan R. Timmins, Milene Ortiz‐Silva, Bharat Joshi, Y. Lydia Li, Fiona H. Dickson, Timothy H. Wong, Kurt R. Vandevoorde & Ivan R. Nabi. (2023) Caveolin‐1 promotes mitochondrial health and limits mitochondrial ROS through ROCK/AMPK regulation of basal mitophagic flux. The FASEB Journal 38:1.
Crossref
Junjie Zhao & Gang Lan. (2023) TFAP2A activates HMGA1 to promote glycolysis and lung adenocarcinoma progression. Pathology - Research and Practice 249, pages 154759.
Crossref
Zhufeng Li, Fang Yuan, Xin Liu, Jianming Wei, Tong Liu, Weidong Li & Chuan Li. (2023) Establishment and validation of a ferroptosis-related signature predicting prognosis and immunotherapy effect in colon cancer. Frontiers in Oncology 13.
Crossref
Yuejun Fang & Xiaoan Zhan. (2023) Identification of Biomarkers Associated with the Prognoses of Colorectal Cancer Patients. Digestion 104:2, pages 148-162.
Crossref
Hamed Hatami, Atefe Sajedi, Seyed Mostafa Mir & Mohammad Yousef Memar. (2022) Importance of lactate dehydrogenase (LDH) and monocarboxylate transporters (MCTs) in cancer cells. Health Science Reports 6:1.
Crossref
Jiacheng Li, Yugang Fu, Kehui Zhang & Yong Li. (2022) Integration of Bulk and Single-Cell RNA-Seq Data to Construct a Prognostic Model of Membrane Tension-Related Genes for Colon Cancer. Vaccines 10:9, pages 1562.
Crossref
Kechen Dong, Jianping Liu, Wei Zhou & Guanglin Zhang. (2022) Exploring the Relationship Between Senescence and Colorectal Cancer in Prognosis, Immunity, and Treatment. Frontiers in Genetics 13.
Crossref
Konstantinos Kamposioras, Maria Vassilakopoulou, Alan Anthoney, Jorge Bariuoso, Davide Mauri, Was Mansoor, Vassilios Papadopoulos & Konstantinos Dimas. (2022) Prognostic significance and therapeutic implications of Caveolin-1 in gastrointestinal tract malignancies. Pharmacology & Therapeutics 233, pages 108028.
Crossref
Shilu Luo, Ming Yang, Hao Zhao, Yachun Han, Na Jiang, Jinfei Yang, Wei Chen, Chenrui Li, Yan Liu, Chanyue Zhao & Lin Sun. (2021) Caveolin-1 Regulates Cellular Metabolism: A Potential Therapeutic Target in Kidney Disease. Frontiers in Pharmacology 12.
Crossref
Annachiara Mollace, Maria Laura Coluccio, Giuseppe Donato, Vincenzo Mollace & Natalia Malara. (2021) Cross-talks in colon cancer between RAGE/AGEs axis and inflammation/immunotherapy. Oncotarget 12:13, pages 1281-1295.
Crossref
Qian Zhang, Xiangling Yang & Huanliang Liu. (2021) Extracellular Vesicles in Cancer Metabolism: Implications for Cancer Diagnosis and Treatment. Technology in Cancer Research & Treatment 20, pages 153303382110378.
Crossref
Qingyu Cheng, Yupeng Wu, Honghai Xia & Xiaoyuan Song. (2021) RGL2 as an age-dependent factor regulates colon cancer progression. Computational and Structural Biotechnology Journal 19, pages 2190-2201.
Crossref
Pradip Kumar Jaiswara, Vishal Kumar Gupta, Shiv Govind Rawat, Rajan Kumar Tiwari, Pratishtha Sonker, Rajendra Prakash Maurya & Ajay Kumar. 2021. Colon Cancer Diagnosis and Therapy. Colon Cancer Diagnosis and Therapy 225 244 .
Georg C. Ziegler, Peter Almos, Rhiannon V. McNeill, Charline Jansch & Klaus‐Peter Lesch. (2020) Cellular effects and clinical implications of SLC2A3 copy number variation . Journal of Cellular Physiology 235:12, pages 9021-9036.
Crossref
Weixing Dai, Ye Xu, Shaobo Mo, Qingguo Li, Jun Yu, Renjie Wang, Yanlei Ma, Yan Ni, Wenqiang Xiang, Lingyu Han, Long Zhang, Sanjun Cai, Jun Qin, Wen-Lian Chen, Wei Jia & Guoxiang Cai. (2020) GLUT3 induced by AMPK/CREB1 axis is key for withstanding energy stress and augments the efficacy of current colorectal cancer therapies. Signal Transduction and Targeted Therapy 5:1.
Crossref
Amirah Abdul Rahman, Norfilza Mohd Mokhtar, Roslan Harun, Rahman Jamal & Wan Zurinah Wan Ngah. (2019) Transcriptome analysis reveals the molecular mechanisms of combined gamma-tocotrienol and hydroxychavicol in preventing the proliferation of 1321N1, SW1783, and LN18 glioma cancer cells. Journal of Physiology and Biochemistry 75:4, pages 499-517.
Crossref
Philemon Ubanako, Ntombikayise Xelwa & Monde Ntwasa. (2019) LPS induces inflammatory chemokines via TLR-4 signalling and enhances the Warburg Effect in THP-1 cells. PLOS ONE 14:9, pages e0222614.
Crossref
Gang Wang, Jun‐Jie Wang, Pei‐Hao Yin, Ke Xu, Yu‐Zhu Wang, Feng Shi, Jing Gao & Xing‐Li Fu. (2018) New strategies for targeting glucose metabolism–mediated acidosis for colorectal cancer therapy. Journal of Cellular Physiology 234:1, pages 348-368.
Crossref
Junliang Li, Fangqiu Fu, Xuechao Wan, Shengsong Huang, Denglong Wu & Yao Li. (2018) Up-regulated miR-29c inhibits cell proliferation and glycolysis by inhibiting SLC2A3 expression in prostate cancer. Gene 665, pages 26-34.
Crossref
Xiaoying Luo, Dan Wang, Xintao Zhu, Guozhen Wang, Yuehua You, Zuowei Ning, Yang Li, Siyi Jin, Yun Huang, Ye Hu, Tingting Chen, Ying Meng & Xu Li. (2018) Autophagic degradation of caveolin-1 promotes liver sinusoidal endothelial cells defenestration. Cell Death & Disease 9:5.
Crossref
Kuan-Hsun Wu, Chi-Tang Ho, Zhao-Feng Chen, Li-Ching Chen, Jacqueline Whang-Peng, Teng-Nan Lin & Yuan-Soon Ho. (2018) The apple polyphenol phloretin inhibits breast cancer cell migration and proliferation via inhibition of signals by type 2 glucose transporter. Journal of Food and Drug Analysis 26:1, pages 221-231.
Crossref
Marketa Svobodova, Martina Raudenska, Jaromir Gumulec, Jan Balvan, Michaela Fojtu, Monika Kratochvilova, Hana Polanska, Zuzana Horakova, Rom Kostrica, Petr Babula, Zbynek Heger & Michal Masarik. (2017) Establishment of oral squamous cell carcinoma cell line and magnetic bead-based isolation and characterization of its CD90/CD44 subpopulations. Oncotarget 8:39, pages 66254-66269.
Crossref
Adam Kassan, Uyen Pham, Quynhmy Nguyen, Melissa E. Reichelt, Eunbyul Cho, Piyush M. Patel, David M. Roth, Brian P. Head & Hemal H. Patel. (2016) Caveolin-3 plays a critical role in autophagy after ischemia-reperfusion. American Journal of Physiology-Cell Physiology 311:6, pages C854-C865.
Crossref
Sheng-Tsai Lin, Shih-Hsin Tu, Po-Sheng Yang, Sung-Po Hsu, Wei- Hwa Lee, Chi-Tang Ho, Chih-Hsiung Wu, Yu-Hsin Lai, Ming-Yao Chen & Li-Ching Chen. (2016) Apple Polyphenol Phloretin Inhibits Colorectal Cancer Cell Growth via Inhibition of the Type 2 Glucose Transporter and Activation of p53-Mediated Signaling. Journal of Agricultural and Food Chemistry 64:36, pages 6826-6837.
Crossref
Kai Shi, Lin Gao & Bingbo Wang. (2016) Systematic tracking of coordinated differential network motifs identifies novel disease-related genes by integrating multiple data. Neurocomputing 206, pages 3-12.
Crossref
Sitian Fang & Xiao Fang. (2016) Advances in glucose metabolism research in colorectal cancer (Review). Biomedical Reports.
Crossref
Li Yu, Xun Chen, Liantang Wang & Shangwu Chen. (2016) The sweet trap in tumors: aerobic glycolysis and potential targets for therapy. Oncotarget 7:25, pages 38908-38926.
Crossref
Traci L Marin, Brendan Gongol, Marcy Martin, Stephanie J King, Lemar Smith, David A Johnson, Shankar Subramaniam, Shu Chien & John Y-J Shyy. (2015) Identification of AMP-activated protein kinase targets by a consensus sequence search of the proteome. BMC Systems Biology 9:1.
Crossref
Zhiyu Wang, Neng Wang, Pengxi Liu, Fu Peng, Hailin Tang, Qianjun Chen, Rui Xu, Yan Dai, Yi Lin, Xiaoming Xie, Cheng Peng & Honglin Situ. (2015) Caveolin-1, a stress-related oncotarget, in drug resistance. Oncotarget 6:35, pages 37135-37150.
Crossref
Jun Xue, Xue-Liang Wu, Xian-Tao Huang, Fei Guo, Hong-Feng Yu, Peng-Cheng Zhang, Li-Kun Wang, Ming Qu & Li-Ming Pan. (2015) Correlation of caveolin-1 expression with microlymphatic vessel density in colorectal adenocarcinoma tissues and its correlation with prognosis. Asian Pacific Journal of Tropical Medicine 8:8, pages 655-657.
Crossref
Agnieszka Kitowska, Martyna Wesserling, Barbara Seroczynska, Andrzej Szutowicz, Anna Ronowska, Rafal Peksa & Tadeusz Pawelczyk. (2015) Differentiation of high-risk stage I and II colon tumors based on evaluation of CAV1 gene expression . Journal of Surgical Oncology 112:4, pages 408-414.
Crossref
Wenqi Wang, Zhen-Dong Xiao, Xu Li, Kathryn E. Aziz, Boyi Gan, Randy L. Johnson & Junjie Chen. (2015) AMPK modulates Hippo pathway activity to regulate energy homeostasis. Nature Cell Biology 17:4, pages 490-499.
Crossref
Ching-Ying Huang. (2015) Pathophysiological mechanisms of death resistance in colorectal carcinoma. World Journal of Gastroenterology 21:41, pages 11777.
Crossref
Elżbieta Kania, Beata Pająk & Arkadiusz Orzechowski. (2015) Calcium Homeostasis and ER Stress in Control of Autophagy in Cancer Cells. BioMed Research International 2015, pages 1-12.
Crossref
Reshu Gupta, Chirine Toufaily & Borhane Annabi. (2014) Caveolin and cavin family members: Dual roles in cancer. Biochimie 107, pages 188-202.
Crossref
RUI WANG, WENSHAN HE, ZHI LI, WEILONG CHANG, YUE XIN & TAO HUANG. (2014) Caveolin-1 functions as a key regulator of 17β-estradiol-mediated autophagy and apoptosis in BT474 breast cancer cells. International Journal of Molecular Medicine 34:3, pages 822-827.
Crossref
Dong-Wei Dai, Qiong Lu, Lai-Xing Wang, Wen-Yuan Zhao, Yi-Qun Cao, Ya-Nan Li, Guo-Sheng Han, Jian-Min Liu & Zhi-Jian Yue. (2013) Decreased miR-106a inhibits glioma cell glucose uptake and proliferation by targeting SLC2A3 in GBM. BMC Cancer 13:1.
Crossref
Alexandros Garouniatis, Adamantia Zizi-Sermpetzoglou, Spyros Rizos, Alkiviadis Kostakis, Nikolaos Nikiteas & Athanasios G. Papavassiliou. (2013) Vascular endothelial growth factor receptors 1,3 and caveolin-1 are implicated in colorectal cancer aggressiveness and prognosis—correlations with epidermal growth factor receptor, CD44v6, focal adhesion kinase, and c-Met. Tumor Biology 34:4, pages 2109-2117.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.