miR-125b-5p functions as a tumor suppressor gene partially by regulating HMGA2 in esophageal squamous cell carcinoma
PLOS ONE
Authors: Mei, Li-Li; Wang, Wen-Jun; Qiu, Yun-Tan; Xie, Xiu-Feng; Bai, Jie; Shi, Zhi-Zhou
Abstract
MicroRNAs (miRNAs) play important roles in the progression of human cancer including esophageal squamous cell carcinoma (ESCC). Although previous reports showed that miR-125b-5p was down-regulated in ESCC, the roles and mechanisms of loss of function of miR-125b-5p in ESCC were still unknown. Using microRNA microarray and GEO datasets, we found and confirmed that miR-125b-5p was down-regulated in ESCC tissues. In-vitro assays showed that ectopic miR-125b-5p expression repressed cell proliferation, migration and invasion, and induced cell senescence. We also found that miR-125b-5p reduced the expressions of cell cycle regulatory genes including CCNA2, CCND1 and CCNE1, and regulated the markers of epithelial to mesenchymal transition (EMT) including E-cadherin, N-cadherin and EMT associated transcription factor Slug, and also decreased the MMPs including MMP2, MMP7 and MMP13. Furthermore, the candidate target gene HMGA2 was negatively regulated by miR-125b-5p both in mRNA and protein levels. Importantly, knockdown of HMGA2 partially phenocopied the effects of miR-125b-5p overexpression on cell cycle regulators and EMT markers. In conclusion, our results suggested that overexpression of miR-125b-5p inhibited cell proliferation, migration and invasion partially by down-regulating HMGA2 in ESCC.
Molecular correlates of platinum response in human high-grade serous ovarian cancer patient-derived xenografts
MOLECULAR ONCOLOGY
Authors: Topp, Monique D.; Hartley, Lynne; Cook, Michele; Heong, Valerie; Boehm, Emma; McShane, Lauren; Pyman, Jan; McNally, Orla; Ananda, Sumitra; Harrell, Marisol; Etemadmoghadam, Dariush; Galletta, Laura; Alsop, Kathryn; Mitchell, Gillian; Fox, Stephen B.; Kerr, Jeffrey B.; Hutt, Karla J.; Kaufmann, Scott H.; Swisher, Elizabeth M.; Bowtell, David D.; Wakefield, Matthew J.; Scott, Clare L.
Abstract
Introduction: Improvement in the ability to target underlying drivers and vulnerabilities of high-grade serous ovarian cancer (HG-SOC) requires the development of molecularly annotated pre-clinical models reflective of clinical responses. Methods: We generated patient-derived xenografts (PDXs) from consecutive, chemotherapy-naive, human HG-SOC by transplanting fresh human HG-SOC fragments into subcutaneous and intra-ovarian bursal sites of NOD/SCID IL2R gamma(null) recipient mice, completed molecular annotation and assessed platinum sensitivity. Results: The success rate of xenografting was 83%. Of ten HG-SOC PDXs, all contained mutations in TP53, two were mutated for BRCA1, three for BRCA2, and in two, BRCA1 was methylated. In vivo cisplatin response, determined as platinum sensitive (progression-free interval >= 100 d, n = 4), resistant (progression-free interval <100 d, n = 3) or refractory (n = 3), was largely consistent with patient outcome. Three of four platinum sensitive HG-SOC PDXs contained DNA repair gene mutations, and the fourth was methylated for BRCA1. In contrast, all three platinum refractory PDXs overexpressed dominant oncogenes (CCNE1, LIN28B and/or BCL2). Conclusions: Because PDX platinum response reflected clinical outcome, these annotated PDXs will provide a unique model system for preclinical testing of novel therapies for HG-SOC. (C) 2014 Federation of European Biochemical Societies. Published by Elsevier B.V. All rights reserved.