Mitochondrial dynamics regulates migration and invasion of breast cancer cells

被引:0
作者
J Zhao
J Zhang
M Yu
Y Xie
Y Huang
D W Wolff
P W Abel
Y Tu
机构
[1] National Laboratory of Biomacromolecules,Department of Pharmacology
[2] Institute of Biophysics,undefined
[3] Chinese Academy of Sciences,undefined
[4] Creighton University School of Medicine,undefined
来源
Oncogene | 2013年 / 32卷
关键词
breast cancer; metastasis; lamellipodia; Drp1; mitochondrial dynamics; fission and fusion;
D O I
暂无
中图分类号
学科分类号
摘要
Mitochondria are highly dynamic and undergo constant fusion and fission that are essential for maintaining physiological functions of cells. Although dysfunction of mitochondria has been implicated in tumorigenesis, little is known about the roles of mitochondrial dynamics in metastasis, the major cause of cancer death. In the present study, we found a marked upregulation of mitochondrial fission protein dynamin-related protein 1 (Drp1) expression in human invasive breast carcinoma and metastases to lymph nodes. Compared with non-metastatic breast cancer cells, mitochondria also were more fragmented in metastatic breast cancer cells that express higher levels of total and active Drp1 and less mitochondrial fusion protein 1 (Mfn1). Silencing Drp1 or overexpression of Mfn1 resulted in mitochondria elongation or clusters, respectively, and significantly suppressed metastatic abilities of breast cancer cells. In contrast, silencing Mfn proteins led to mitochondrial fragmentation and enhanced metastatic abilities of breast cancer cells. Interestingly, these manipulations of mitochondrial dynamics altered the subcellular distribution of mitochondria in breast cancer cells. For example, silencing Drp1 or overexpression of Mfn1 inhibited lamellipodia formation, a key step for cancer metastasis, and suppressed chemoattractant-induced recruitment of mitochondria to lamellipodial regions. Conversely, silencing Mfn proteins resulted in more cell spreading and lamellipodia formation, causing accumulation of more mitochondria in lamellipodia regions. More importantly, treatment with a mitochondrial uncoupling agent or adenosine triphosphate synthesis inhibitor reduced lamellipodia formation and decreased breast cancer cell migration and invasion, suggesting a functional importance of mitochondria in breast cancer metastasis. Together, our findings show a new role and mechanism for regulation of cancer cell migration and invasion by mitochondrial dynamics. Thus targeting dysregulated Drp1-dependent mitochondrial fission may provide a novel strategy for suppressing breast cancer metastasis.
引用
收藏
页码:4814 / 4824
页数:10
相关论文
共 163 条
  • [11] Segall JE(2010)G-protein beta2 subunit interacts with mitofusin 1 to regulate mitochondrial fusion Nat Commun 1 101-359
  • [12] Pollard TD(2009)Bringing up the rear: defining the roles of the uropod Nat Rev Mol Cell Biol 10 353-362
  • [13] Cooper JA(2011)ER tubules mark sites of mitochondrial division Science 334 358-5419
  • [14] von Jagow G(2005)The axonal transport of mitochondria J Cell Sci 118 5411-145
  • [15] Engel WD(2004)Mitochondrial DNA mutation and depletion increase the susceptibility of human cells to apoptosis Ann N Y Acad Sci 1011 133-1590
  • [16] Szabadkai G(2008)Mitochondrial dynamics and apoptosis Genes Dev 22 1577-845
  • [17] Duchen MR(2009)Mitochondrial dynamics in mammalian health and disease Physiol Rev 89 799-56
  • [18] Westermann B(2009)Mitochondrial dynamics and cancer Semin Cancer Biol 19 50-173
  • [19] Chan DC(2008)Mitochondria in cancer cells: what is so special about them? Trends Cell Biol 18 165-2186
  • [20] Werth JL(2012)Inhibition of mitochondrial fission prevents cell cycle progression in lung cancer FASEB J 26 2175-511