Literature DB >> 22351759

Runx2 protein stabilizes hypoxia-inducible factor-1α through competition with von Hippel-Lindau protein (pVHL) and stimulates angiogenesis in growth plate hypertrophic chondrocytes.

Sun-Hee Lee1, Xiangguo Che, Jae-Hwan Jeong, Je-Yong Choi, Young-Joo Lee, Yong-Hee Lee, Suk-Chul Bae, You-Mie Lee.   

Abstract

The regulation of hypoxia-inducible factor-1α (HIF-1α) during endochondral bone formation is not fully understood. Here, we investigated the cross-talk between HIF-1α and Runt-related transcription factor 2 (Runx2) in the growth plate. Runx2 caused the accumulation of HIF-1α protein in ATDC5 chondrocytes and HEK293 cells under normoxic conditions. Runx2 also increased the nuclear translocation of HIF-1α when coexpressed in HEK293 cells and interacted with HIF-1α at the oxygen-dependent degradation domain (ODDD). In addition, Runx2 competed with von Hippel-Lindau tumor suppressor protein by directly binding to ODDD-HIF-1α and significantly inhibited the ubiquitination of HIF-1α, even though Runx2 did not change the hydroxylation status of HIF-1α. Furthermore, overexpression of Runx2 resulted in the significant enhancement of vascular endothelial growth factor (VEGF) promoter reporter activity and protein secretion. Runx2 significantly increased angiogenic activity in human umbilical vein endothelial cells in vitro. In wild-type mice, HIF-1α and Runx2 were colocalized in hypertrophic chondrocytes in which the cluster of differentiation 31 (CD31) protein was expressed at embryonic day 15.5 (E15.5). In contrast, the expression of HIF-1α was markedly reduced in areas of CD31 expression in Runx2(-/-) mice. These results suggest that Runx2 stabilizes HIF-1α by binding to ODDD to block the interaction between von Hippel-Lindau protein and HIF-1α. In conclusion, Runx2, HIF-1α, and VEGF may regulate vascular angiogenesis spatially and temporally in the hypertrophic zone of the growth plate during endochondral bone formation.

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Year:  2012        PMID: 22351759      PMCID: PMC3340285          DOI: 10.1074/jbc.M112.340232

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  42 in total

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  41 in total

Review 1.  Molecular responses to hypoxia-inducible factor 1α and beyond.

Authors:  Jason Brocato; Yana Chervona; Max Costa
Journal:  Mol Pharmacol       Date:  2014-02-25       Impact factor: 4.436

2.  A compendium of proteins that interact with HIF-1α.

Authors:  Gregg L Semenza
Journal:  Exp Cell Res       Date:  2017-03-20       Impact factor: 3.905

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Journal:  Hum Mol Genet       Date:  2014-11-28       Impact factor: 6.150

Review 4.  The RUNX family: developmental regulators in cancer.

Authors:  Yoshiaki Ito; Suk-Chul Bae; Linda Shyue Huey Chuang
Journal:  Nat Rev Cancer       Date:  2015-01-16       Impact factor: 60.716

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6.  RUNX2 is overexpressed in melanoma cells and mediates their migration and invasion.

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Journal:  Cancer Lett       Date:  2014-03-18       Impact factor: 8.679

7.  MicroRNA-218 regulates cisplatin (DPP) chemosensitivity in non-small cell lung cancer by targeting RUNX2.

Authors:  Jing Xie; Fei Yu; Dan Li; Xuchao Zhu; Xiaoping Zhang; Zhongwei Lv
Journal:  Tumour Biol       Date:  2015-08-18

8.  Clinical significance of RUNX2 expression in patients with nonsmall cell lung cancer: a 5-year follow-up study.

Authors:  Hong Li; Ren-Jie Zhou; Guo-Qiang Zhang; Jian-Ping Xu
Journal:  Tumour Biol       Date:  2013-03-08

Review 9.  Vascular remodeling process in pulmonary arterial hypertension, with focus on miR-204 and miR-126 (2013 Grover Conference series).

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Authors:  J Nathan; A Ruscitto; S Pylawka; A Sohraby; C J Shawber; M C Embree
Journal:  J Dent Res       Date:  2017-10-11       Impact factor: 6.116

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