Literature DB >> 23108411

MUC1 enhances hypoxia-driven angiogenesis through the regulation of multiple proangiogenic factors.

S Kitamoto1, S Yokoyama, M Higashi, N Yamada, S Takao, S Yonezawa.   

Abstract

Pancreatic cancer is one of the most lethal malignancies due to its aggressive growth and rapid development of distant metastases. In this context, mucin 1 (MUC1) overexpression and hypoxia are frequently observed events. However, their functional relationship remains largely unknown. This study provides evidence that MUC1 is overexpressed by hypoxia and contributes to hypoxia-driven angiogenesis. Using the conditioned medium obtained from hypoxia-stressed AsPC1 cells treated with MUC1 siRNAs, we demonstrated that MUC1 enhanced the endothelial tube formation, proliferation and migration ability, which induced by hypoxia-conditioned medium (HCM). In addition, MUC1 was significantly induced by hypoxia, especially in the pancreatic cancer cells derived from metastatic tumors (AsPC1, HPAF2 or Capan1), and MUC1-cytoplasmic tail (MUC1-CT) accumulated in the nucleus under hypoxia. As noted in a previous report, MUC1-CT was recruited to genomic regions upstream of the connective tissue growth factor (CTGF) accompanied with β-catenin and p53, resulting in the hypoxic induction of CTGF. Moreover, hypoxia-induced MUC1 partially regulated two other hypoxia-inducible proangiogenic factors including vascular endothelial growth factor-A and platelet-derived growth factor-B. The neutralization assay revealed that endothelial tube formation induced by HCM was clearly suppressed by antibodies against these three factors, suggesting the importance of these factors in hypoxia-driven angiogenesis. In summary, this is the first report demonstrating a pivotal role of MUC1 in controlling the hypoxia-driven angiogenesis through the regulation of multiple proangiogenic factors in pancreatic cancer. Our findings provide the novel insights into the understanding of complex interactions between pancreatic cancer cells and tumor microenvironments.

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Year:  2012        PMID: 23108411     DOI: 10.1038/onc.2012.478

Source DB:  PubMed          Journal:  Oncogene        ISSN: 0950-9232            Impact factor:   9.867


  37 in total

1.  Urine proteome changes associated with autonomic regulation of heart rate in cosmonauts.

Authors:  Lyudmila H Pastushkova; Vasily B Rusanov; Anna G Goncharova; Alexander G Brzhozovskiy; Alexey S Kononikhin; Anna G Chernikova; Daria N Kashirina; Andrey M Nosovsky; Roman M Baevsky; Evgeny N Nikolaev; Irina M Larina
Journal:  BMC Syst Biol       Date:  2019-03-05

2.  Hypoxia-induced oxidative stress promotes MUC4 degradation via autophagy to enhance pancreatic cancer cells survival.

Authors:  S Joshi; S Kumar; M P Ponnusamy; S K Batra
Journal:  Oncogene       Date:  2016-04-25       Impact factor: 9.867

3.  A Screening Study of Potential Carcinogen Biomarkers After Surgical Treatment of Obesity.

Authors:  Luciana Teixeira de Siqueira; Marcela Silvestre Outtes Wanderley; Roberto Afonso da Silva; Adriana da Silva Andrade Pereira; José Luiz de Lima Filho; Álvaro Antônio Bandeira Ferraz
Journal:  Obes Surg       Date:  2018-08       Impact factor: 4.129

Review 4.  Mucins in pancreatic cancer and its microenvironment.

Authors:  Sukhwinder Kaur; Sushil Kumar; Navneet Momi; Aaron R Sasson; Surinder K Batra
Journal:  Nat Rev Gastroenterol Hepatol       Date:  2013-07-16       Impact factor: 46.802

Review 5.  Mechanisms of regulation of PFKFB expression in pancreatic and gastric cancer cells.

Authors:  Oleksandr H Minchenko; Katsuya Tsuchihara; Dmytro O Minchenko; Andreas Bikfalvi; Hiroyasu Esumi
Journal:  World J Gastroenterol       Date:  2014-10-14       Impact factor: 5.742

6.  Identification of oral squamous cell carcinoma markers MUC2 and SPRR1B downstream of TANGO.

Authors:  Tomonori Sasahira; Miyako Kurihara-Shimomura; Hiroyuki Shimomura; Anja Katrin Bosserhoff; Tadaaki Kirita
Journal:  J Cancer Res Clin Oncol       Date:  2021-02-23       Impact factor: 4.553

7.  Functional p38 MAPK identified by biomarker profiling of pancreatic cancer restrains growth through JNK inhibition and correlates with improved survival.

Authors:  Yi Zhong; Yoshiki Naito; Leslie Cope; Salvador Naranjo-Suarez; Tyler Saunders; Seung-Mo Hong; Michael G Goggins; Joseph M Herman; Christopher L Wolfgang; Christine A Iacobuzio-Donahue
Journal:  Clin Cancer Res       Date:  2014-06-24       Impact factor: 12.531

Review 8.  MUC1: a multifaceted oncoprotein with a key role in cancer progression.

Authors:  Sritama Nath; Pinku Mukherjee
Journal:  Trends Mol Med       Date:  2014-03-22       Impact factor: 11.951

9.  Mucin 1 promotes radioresistance in hepatocellular carcinoma cells through activation of JAK2/STAT3 signaling.

Authors:  Feng-Tao Yi; Qi-Ping Lu
Journal:  Oncol Lett       Date:  2017-10-03       Impact factor: 2.967

Review 10.  MUC1: Structure, Function, and Clinic Application in Epithelial Cancers.

Authors:  Wenqing Chen; Zhu Zhang; Shiqing Zhang; Peili Zhu; Joshua Ka-Shun Ko; Ken Kin-Lam Yung
Journal:  Int J Mol Sci       Date:  2021-06-18       Impact factor: 5.923

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