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本文引用的文献

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Transcriptional regulation and transformation by Myc proteins.Myc蛋白的转录调控与转化
Nat Rev Mol Cell Biol. 2005 Aug;6(8):635-45. doi: 10.1038/nrm1703.
2
Myc stimulates nuclearly encoded mitochondrial genes and mitochondrial biogenesis.Myc刺激核编码的线粒体基因和线粒体生物合成。
Mol Cell Biol. 2005 Jul;25(14):6225-34. doi: 10.1128/MCB.25.14.6225-6234.2005.
3
Inactivation of Myc in murine two-hit B lymphomas causes dormancy with elevated levels of interleukin 10 receptor and CD20: implications for adjuvant therapies.在小鼠双打击B淋巴瘤中Myc的失活导致休眠,伴有白细胞介素10受体和CD20水平升高:对辅助治疗的启示。
Cancer Res. 2005 Jun 15;65(12):5454-61. doi: 10.1158/0008-5472.CAN-04-4197.
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c-Myc-regulated microRNAs modulate E2F1 expression.c-Myc调控的微小RNA调节E2F1表达。
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5
Targeting c-Myc-activated genes with a correlation method: detection of global changes in large gene expression network dynamics.用相关方法靶向c-Myc激活基因:检测大基因表达网络动力学中的全局变化。
Proc Natl Acad Sci U S A. 2005 May 10;102(19):6902-6. doi: 10.1073/pnas.0502081102. Epub 2005 May 2.
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Activated oncogenes promote and cooperate with chromosomal instability for neoplastic transformation.激活的癌基因促进肿瘤转化并与染色体不稳定性协同作用。
Genes Dev. 2004 Jun 1;18(11):1317-30. doi: 10.1101/gad.1165204.
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Myc: a weapon of mass destruction.Myc:一种大规模杀伤性武器。
Cell. 2004 Apr 16;117(2):153-6. doi: 10.1016/s0092-8674(04)00336-8.
8
ONCOMINE: a cancer microarray database and integrated data-mining platform.ONCOMINE:一个癌症微阵列数据库和综合数据挖掘平台。
Neoplasia. 2004 Jan-Feb;6(1):1-6. doi: 10.1016/s1476-5586(04)80047-2.
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Structure of the human transferrin receptor-transferrin complex.人转铁蛋白受体-转铁蛋白复合物的结构。
Cell. 2004 Feb 20;116(4):565-76. doi: 10.1016/s0092-8674(04)00130-8.
10
A neutralizing monoclonal antibody (mAb A24) directed against the transferrin receptor induces apoptosis of tumor T lymphocytes from ATL patients.一种针对转铁蛋白受体的中和性单克隆抗体(单克隆抗体A24)可诱导成人T细胞白血病患者的肿瘤性T淋巴细胞凋亡。
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c-Myc对转铁蛋白受体1的激活增强了细胞增殖和肿瘤发生。

Activation of transferrin receptor 1 by c-Myc enhances cellular proliferation and tumorigenesis.

作者信息

O'Donnell Kathryn A, Yu Duonan, Zeller Karen I, Kim Jung-Whan, Racke Frederick, Thomas-Tikhonenko Andrei, Dang Chi V

机构信息

Program in Human Genetics and Molecular Biology, The Johns Hopkins School of Medicine, Baltimore, MD 21205, USA.

出版信息

Mol Cell Biol. 2006 Mar;26(6):2373-86. doi: 10.1128/MCB.26.6.2373-2386.2006.

DOI:10.1128/MCB.26.6.2373-2386.2006
PMID:16508012
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1430295/
Abstract

Overexpression of transferrin receptor 1 (TFRC1), a major mediator of iron uptake in mammalian cells, is a common feature of human malignancies. Therapeutic strategies designed to interfere with tumor iron metabolism have targeted TFRC1. The c-Myc oncogenic transcription factor stimulates proliferation and growth by activating thousands of target genes. Here we demonstrate that TFRC1 is a critical downstream target of c-Myc. Using in vitro and in vivo models of B-cell lymphoma, we show that TFRC1 expression is activated by c-Myc. Chromatin immunoprecipitation experiments reveal that c-Myc directly binds a conserved region of TFRC1. In light of these findings, we sought to determine whether TFRC1 is required for c-Myc-mediated cellular proliferation and cell size control. TFRC1 inhibition decreases cellular proliferation and results in G1 arrest without affecting cell size. Consistent with these findings, expression profiling reveals that TFRC1 depletion alters expression of genes that regulate the cell cycle. Furthermore, enforced TFRC1 expression confers a growth advantage to cells and significantly enhances the rate of c-Myc-mediated tumor formation in vivo. These findings provide a molecular basis for increased TFRC1 expression in human tumors, illuminate the role of TFRC1 in the c-Myc target gene network, and support strategies that target TFRC1 for cancer therapy.

摘要

转铁蛋白受体1(TFRC1)是哺乳动物细胞中铁摄取的主要调节因子,其过表达是人类恶性肿瘤的一个共同特征。旨在干扰肿瘤铁代谢的治疗策略已将TFRC1作为靶点。c-Myc致癌转录因子通过激活数千个靶基因来刺激细胞增殖和生长。在此,我们证明TFRC1是c-Myc的关键下游靶点。利用B细胞淋巴瘤的体外和体内模型,我们发现TFRC1的表达由c-Myc激活。染色质免疫沉淀实验表明,c-Myc直接结合TFRC1的一个保守区域。鉴于这些发现,我们试图确定TFRC1是否是c-Myc介导的细胞增殖和细胞大小控制所必需的。抑制TFRC1可降低细胞增殖并导致G1期阻滞,而不影响细胞大小。与这些发现一致,表达谱分析显示,TFRC1的缺失会改变调节细胞周期的基因的表达。此外,强制表达TFRC1赋予细胞生长优势,并显著提高c-Myc介导的体内肿瘤形成率。这些发现为人类肿瘤中TFRC1表达增加提供了分子基础,阐明了TFRC1在c-Myc靶基因网络中的作用,并支持将TFRC1作为癌症治疗靶点的策略。