乳腺癌TGF-β信号通路相关转录因子研究进展

被引:6
作者
周雨晴
金敏
祖旭宇
机构
[1] 南华大学附属第一医院
基金
湖南省自然科学基金;
关键词
乳腺癌; TGF-β信号通路; 转录因子; 侵袭转移; 综述文献;
D O I
10.16073/j.cnki.cjcpt.2016.15.014
中图分类号
R737.9 [乳腺肿瘤];
学科分类号
摘要
目的总结与转化生长因子β(transforming growth factor-β,TGF-β)信号通路相关的转录因子在乳腺癌发生发展过程中的作用,分析它们与TGF-β信号通路之间的网络调控机制。方法应用PubMed及CNKI期刊全文数据库检索系统,以"乳腺癌、转录因子和TGF-β"等为关键词,检索2011-01-01-2015-12-31的相关文献。纳入标准:(1)乳腺癌侵袭转移;(2)转录因子与TGF-β信号通路存在联系。剔除标准:(1)未阐明转录因子与TGF-β信号通路作用的具体机制;(2)实验设计不严谨。符合纳入标准的英文文献146篇,中文文献35篇,根据剔除标准剔除英文文献50篇,中文文献34篇,最后纳入分析文献88篇。结果 TGF-β信号通路是一条极为重要的细胞内信号转导途径,能调控细胞增殖、分化、迁移、粘附及凋亡等生理活动。在乳腺癌中,TGF-β信号通路起着双重作用,即在肿瘤发生的早期阶段,TGF-β信号通路起着一种预防性或肿瘤抑制的作用,但随着肿瘤的发展,TGF-β能够通过影响肿瘤微环境、增强侵袭性及抑制免疫细胞功能来促进肿瘤细胞的转移。多个转录因子c-Myc、p53、C/EBPβ、14-3-3ζ、Blimp-1、Oct-4和Nanog、Foxq1、TBX3、FOXM1、GATA3、HOXB9、Six1、Pokemon、Snail、Slug和SOX4已证实与TGF-β信号通路发生相互作用,共同参与调控乳腺癌发生发展过程。结论乳腺癌发生过程中转录因子与TGF-β信号通路形成复杂的调控网络,对乳腺癌的进程起着双向调节作用。
引用
收藏
页码:1041 / 1048
页数:8
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共 30 条
  • [1] Role of Hox genes in stem cell differentiation
    Seifert, Anne
    Werheid, David F.
    Knapp, Silvana M.
    Tobiasch, Edda
    [J]. WORLD JOURNAL OF STEM CELLS, 2015, 7 (03): : 583 - 595
  • [2] p53 mutations in colorectal cancer-molecular pathogenesis and pharmacological reactivation[J]. Xiao-Lan Li,Jianbiao Zhou,Zhi-Rong Chen,Wee-Joo Chng.World Journal of Gastroenterology. 2015(01)
  • [3] FOXM1 targets XIAP and Survivin to modulate breast cancer survival and chemoresistance
    de Moraes, Gabriela Nestal
    Delbue, Deborah
    Silva, Karina L.
    Robaina, Marcela Cristina
    Khongkow, Pasarat
    Gomes, Ana R.
    Zona, Stefania
    Crocamo, Susanne
    Mencalha, Andre Luiz
    Magalhaes, Lidia M.
    Lam, Eric W. -F.
    Maia, Raquel C.
    [J]. CELLULAR SIGNALLING, 2015, 27 (12) : 2496 - 2505
  • [4] ShcA Protects against Epithelial–Mesenchymal Transition through Compartmentalized Inhibition of TGF-β-Induced Smad Activation[J] . Baby Periyanayaki Muthusamy,Erine H. Budi,Yoko Katsuno,Matthew K. Lee,Susan M. Smith,Amer M. Mirza,Rosemary J. Akhurst,Rik Derynck.PLOS Biology . 2015 (12)
  • [5] Forkhead box transcription factors in embryonic heart development and congenital heart disease[J] . Hong Zhu.Life Sciences . 2015
  • [6] Urocortin Attenuates TGFβ1‐Induced Snail1 and Slug Expressions: Inhibitory Role of Smad7 in Smad2/3 Signaling in Breast Cancer Cells[J] . Lai Jin,Chao Zhu,Xiaofei Wang,Chuanhua Li,Chunxuan Cao,Jie Yuan,Shengnan Li.J. Cell. Biochem. . 2015 (11)
  • [7] Blimp-1 homolog Hobit identifies effector-type lymphocytes in humans
    Braga, Felipe A. Vieira
    Hertoghs, Kirsten M. L.
    Kragten, Natasja A. M.
    Doody, Gina M.
    Barnes, Nicholas A.
    Remmerswaal, Ester B. M.
    Hsiao, Cheng-Chih
    Moerland, Perry D.
    Wouters, Diana
    Derks, Ingrid A. M.
    van Stijn, Amber
    Demkes, Marc
    Hamann, Jorg
    Eldering, Eric
    Nolte, Martijn A.
    Tooze, Reuben M.
    ten Berge, Ineke J. M.
    van Gisbergen, Klaas P. J. M.
    van Lier, Rene A. W.
    [J]. EUROPEAN JOURNAL OF IMMUNOLOGY, 2015, 45 (10) : 2945 - 2958
  • [8] SRY and OCT4 Are Required for the Acquisition of Cancer Stem Cell-Like Properties and Are Potential Differentiation Therapy Targets
    Murakami, Shigekazu
    Ninomiya, Wataru
    Sakamoto, Erina
    Shibata, Tatsuhiro
    Akiyama, Hirotada
    Tashiro, Fumio
    [J]. STEM CELLS, 2015, 33 (09) : 2652 - 2663
  • [9] FBI-1 Is Overexpressed in Gestational Trophoblastic Disease and Promotes Tumor Growth and Cell Aggressiveness of Choriocarcinoma via PI3K/Akt Signaling
    Mak, Victor C. Y.
    Wong, Oscar G. W.
    Siu, Michelle K. Y.
    Wong, Esther S. Y.
    Ng, Wai-Yan
    Wong, Richard W. C.
    Chan, Ka-Kui
    Ngan, Hextan Y. S.
    Cheung, Annie N. Y.
    [J]. AMERICAN JOURNAL OF PATHOLOGY, 2015, 185 (07) : 2038 - 2048
  • [10] Retraction Notice to: Ossifying Fibroma Tumor Stem Cells Are Maintained by Epigenetic Regulation of a TSP1/TGF-β/SMAD3 Autocrine Loop[J] . Haiyan Qin,Cunye Qu,Takayoshi Yamaza,Ruili Yang,Xia Lin,Xue-Yan Duan,Kentaro Akiyama,Yi Liu,Qunzhou Zhang,Chider Chen,Yibu Chen,Hank Heng Qi,Xin-Hua Feng,Anh D. Le,Songtao Shi.Cell Stem Cell . 2015 (5)