Literature DB >> 26759259

IGF1 3'UTR functions as a ceRNA in promoting angiogenesis by sponging miR-29 family in osteosarcoma.

Shuming Gao1, Cai Cheng1, Hanwen Chen1, Min Li1, Kehun Liu1, Guangya Wang2.   

Abstract

Osteosarcoma is one of the most common malignant bone tumors in human worldwide. Angiogenesis is a pivotal process during osteosarcoma development. Insulin-like growth factor 1 (IGF1) has been reported to promote angiogenesis. However, the role of 3' untranslational region (3'UTR) of IGF1 mRNA in angiogenic activity in osteosarcomas is still unknown. In the present study, we performed gain-of-function assays to investigate the role of IGF1-3'UTR in angiogenesis. For the first time, we demonstrated that IGF1 3'UTR increased VEGF expression and promotes angiogenesis in osteosarcoma cells. In addition, RNA-immunoprecipitation and luciferase reporter assays showed that IGF1 3'UTR was a direct target of miR-29s. Our data also demonstrated that there existed a competition of miR-29s between IGF1-3'UTR and VEGF mRNA, and IGF1-3'UTR promoted angiogenesis at least in part via sponging miR-29s. Taken together, our study suggests that IGF1-3'UTR functions as a ceRNA in promoting angiogenesis by sponging miR-29s in osteosarcoma.

Entities:  

Keywords:  Angiogenesis; IGF1; Osteosarcoma; VEGF; ceRNA; miR-29a; miR-29b; miR-29c

Mesh:

Substances:

Year:  2016        PMID: 26759259     DOI: 10.1007/s10735-016-9659-2

Source DB:  PubMed          Journal:  J Mol Histol        ISSN: 1567-2379            Impact factor:   2.611


  31 in total

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Review 5.  Complexities of post-transcriptional regulation and the modeling of ceRNA crosstalk.

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6.  miR-29 Family Inhibits Resistance to Methotrexate and Promotes Cell Apoptosis by Targeting COL3A1 and MCL1 in Osteosarcoma.

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7.  Construction and analysis of a ceRNA‑ceRNA network reveals two potential prognostic modules regulated by hsa‑miR‑335‑5p in osteosarcoma.

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9.  miRNA-mediated 'tug-of-war' model reveals ceRNA propensity of genes in cancers.

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10.  MicroRNA-mRNA Co-sequencing Identifies Transcriptional and Post-transcriptional Regulatory Networks Underlying Muscle Wasting in Cancer Cachexia.

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Journal:  Front Genet       Date:  2020-05-29       Impact factor: 4.599

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