Literature DB >> 20371743

An evolutionarily conserved PTEN-C/EBPalpha-CTNNA1 axis controls myeloid development and transformation.

Chun-Tang Fu1, Kang-Yong Zhu, Jian-Qing Mi, Yuan-Fang Liu, Susan T Murray, Yan-Fang Fu, Chun-Guang Ren, Zhi-Wei Dong, Yi-Jie Liu, Mei Dong, Yi Jin, Yi Chen, Min Deng, Wu Zhang, Bin Chen, Peter Breslin, Sai-Juan Chen, Zhu Chen, Michael W Becker, Jiang Zhu, Ji-Wang Zhang, Ting Xi Liu.   

Abstract

Loss of function of tumor suppressor genes, such as PTEN, CEBPAlpha, and CTNNA1 (encoding the alpha-catenin protein), has been found to play an essential role in leukemogenesis. However, whether these genes genetically interact remains largely unknown. Here, we show that PTEN-mammalian target of rapamycin signaling acts upstream to dictate the ratio of wild-type p42 C/EBPalpha to its dominant-negative p30 isoform, which critically determines whether p30 C/EBPalpha (lower p42/p30 ratio) or p42 C/EBPalpha (higher p42/p30 ratio) binds to the proximal promoter of the retained CTNNA1 allele. Binding of p30 C/EBPalpha recruits the polycomb repressive complex 2 to suppress CTNNA1 transcription through repressive H3K27me3 modification, whereas binding of p42 C/EBPalpha relieves this repression and promotes CTNNA1 expression through activating H3K4me3 modification. Loss of Pten function in mice and zebrafish induces myelodysplasia with abnormal invasiveness of myeloid progenitors accompanied by significant reductions in both wild-type C/EBPalpha and alpha-catenin protein. Importantly, frame-shift mutations in either PTEN or CEBPA were detected exclusively in the primary LICs with low CTNNA1 expression. This study uncovers a novel molecular pathway, PTEN-C/EBPalpha-CTNNA1, which is evolutionarily conserved and might be therapeutically targeted to eradicate LICs with low CTNNA1 expression.

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Year:  2010        PMID: 20371743     DOI: 10.1182/blood-2009-11-255778

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  16 in total

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Journal:  Exp Hematol       Date:  2010-11-18       Impact factor: 3.084

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Review 3.  New functions for alpha-catenins in health and disease: from cancer to heart regeneration.

Authors:  Alexia Vite; Jifen Li; Glenn L Radice
Journal:  Cell Tissue Res       Date:  2015-02-12       Impact factor: 5.249

Review 4.  Emergence of zebrafish models in oncology for validating novel anticancer drug targets and nanomaterials.

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Journal:  PLoS One       Date:  2011-04-11       Impact factor: 3.240

7.  Cancer gene prioritization for targeted resequencing using FitSNP scores.

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8.  Differential effects of sumoylation on the activities of CCAAT enhancer binding protein alpha (C/EBPα) p42 versus p30 may contribute in part, to aberrant C/EBPα activity in acute leukemias.

Authors:  William Hankey; Matthew Silver; B S Hong Sun; Terry Zibello; Nancy Berliner; Arati Khanna-Gupta
Journal:  Hematol Rep       Date:  2011-05-20

Review 9.  PTEN in Regulating Hematopoiesis and Leukemogenesis.

Authors:  Yilin Wu; Haichuan Zhu; Hong Wu
Journal:  Cold Spring Harb Perspect Med       Date:  2020-10-01       Impact factor: 5.159

10.  Pten regulates homeostasis and inflammation-induced migration of myelocytes in zebrafish.

Authors:  Zhi-Wei Dong; Chun-Guang Ren; Yu Xia; Dan Su; Ting-Ting Du; Hong-Bo Fan; Hao Yuan; Lei Wang; Mei Dong; Wei-Chun Li; Yi Jin; Yi Chen; Min Deng; Ting-Xi Liu; Ai-Hua Gu; Yong Zhou
Journal:  J Hematol Oncol       Date:  2014-03-05       Impact factor: 17.388

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