Literature DB >> 28404645

IRP2 as a potential modulator of cell proliferation, apoptosis and prognosis in nonsmall cell lung cancer.

Heena Khiroya1,2, Jasbir S Moore3,2, Nabeel Ahmad4, Jamie Kay5, Kerry Woolnough6, Gerald Langman6, Iyad Ismail6, Babu Naidu3,6, Chris Tselepis3, Alice M Turner3,6.   

Abstract

IREB2 is a gene that produces iron regulatory protein 2 (IRP2), which is critical to intracellular iron homeostasis and which relates to the rate of cellular proliferation. IREB2 lies in a lung cancer susceptibility locus. The aims were to assess 1) the relationship between iron loading, cell proliferation and IRP2 expression in lung cancer; 2) the potential of iron related pathways as therapeutic targets; and 3) the relevance of IRP2 in operated lung cancer patients.Cells of two nonsmall cell cancer (NSCLC) lines and primary bronchial epithelial cells (PBECs) were cultured with and without iron; and proliferation, apoptosis and migration were assessed. Reverse transcriptase PCR and Western blot were used to assess expression of iron homeostasis genes/proteins. Iron chelation and knockdown of IREB2 were used in vitro to explore therapeutics. A cohort of operated NSCLC patients was studied for markers of systemic iron status, tumour IRP2 staining and survival.Iron loading caused cell proliferation in cancer cell lines, which were less able to regulate IREB2 expression than PBECs. Iron chelation resulted in a return of proliferation rates to baseline levels; knockdown of IREB2 had a similar effect. IRP2-positive tumours were larger (p=0.045) and higher percentage staining related to poorer survival (p=0.079).Loss of iron regulation represents a poor prognostic marker in lung cancer.
Copyright ©ERS 2017.

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Year:  2017        PMID: 28404645     DOI: 10.1183/13993003.00711-2016

Source DB:  PubMed          Journal:  Eur Respir J        ISSN: 0903-1936            Impact factor:   16.671


  11 in total

1.  Mdm2 is a target and mediator of IRP2 in cell growth control.

Authors:  Jin Zhang; Xiangmudong Kong; Yanhong Zhang; Wenqiang Sun; Enshun Xu; Xinbin Chen
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Authors:  Jin Zhang; Xiangmudong Kong; Yanhong Zhang; Wenqiang Sun; Jian Wang; Mingyi Chen; Xinbin Chen
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3.  Genome-wide analysis of genetic predisposition to common polygenic cancers.

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Journal:  J Appl Genet       Date:  2022-01-03       Impact factor: 3.240

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Journal:  Neoplasia       Date:  2018-05-03       Impact factor: 5.715

Review 5.  Alterations in Cellular Iron Metabolism Provide More Therapeutic Opportunities for Cancer.

Authors:  Liangfu Zhou; Bin Zhao; Lixiu Zhang; Shenghang Wang; Dandan Dong; Huanhuan Lv; Peng Shang
Journal:  Int J Mol Sci       Date:  2018-05-22       Impact factor: 5.923

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Review 7.  Iron Metabolism in Prostate Cancer; From Basic Science to New Therapeutic Strategies.

Authors:  Driton Vela
Journal:  Front Oncol       Date:  2018-11-27       Impact factor: 6.244

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Authors:  Wei Liang; Napoleone Ferrara
Journal:  Front Immunol       Date:  2021-02-12       Impact factor: 7.561

9.  Exploration of Lung Cancer-Related Genetic Factors via Mendelian Randomization Method Based on Genomic and Transcriptomic Summarized Data.

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10.  Oncogene inference optimization using constraint-based modelling incorporated with protein expression in normal and tumour tissues.

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Journal:  R Soc Open Sci       Date:  2020-03-18       Impact factor: 2.963

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