RRC ID 59899
著者 Aoki T, Nishita M, Sonoda J, Ikeda T, Kakeji Y, Minami Y.
タイトル Intraflagellar transport 20 promotes collective cancer cell invasion by regulating polarized organization of Golgi-associated microtubules.
ジャーナル Cancer Sci
Abstract Collective invasion is an important strategy of cancers of epithelial origin, including colorectal cancer (CRC), to infiltrate efficiently into local tissues as collective cell groups. Within the groups, cells at the invasive front, called leader cells, are highly polarized and motile, thereby providing the migratory traction that guides the follower cells. However, its underlying mechanisms remain unclear. We have previously shown that signaling emanating from the receptor tyrosine kinase Ror2 can promote invasion of human osteosarcoma cells and that intraflagellar transport 20 (IFT20) mediates its signaling to regulate Golgi structure and transport. Herein, we investigated the role of Ror2 and IFT20 in collective invasion of CRC cells, where Ror2 expression is either silenced or nonsilenced. We show by cell biological analyses that IFT20 promotes collective invasion of CRC cells, irrespective of expression and function of Ror2. Intraflagellar transport 20 is required for organization of Golgi-associated, stabilized microtubules, oriented toward the direction of invasion in leader cells. Our results also indicate that IFT20 promotes reorientation of the Golgi apparatus toward the front side of leader cells. Live cell imaging of the microtubule plus-end binding protein EB1 revealed that IFT20 is required for continuous polarized microtubule growth in leader cells. These results indicate that IFT20 plays an important role in collective invasion of CRC cells by regulating organization of Golgi-associated, stabilized microtubules and Golgi polarity in leader cells.
巻・号 110(4)
ページ 1306-1316
公開日 2019-4-1
DOI 10.1111/cas.13970
PMID 30742741
PMC PMC6447847
MeSH Carrier Proteins / metabolism* Cell Line, Tumor Cell Movement Gene Expression Golgi Apparatus / metabolism* Humans Microtubules / metabolism* Neoplasms / genetics Neoplasms / metabolism* Neoplasms / pathology RNA, Small Interfering / genetics Receptor Tyrosine Kinase-like Orphan Receptors / genetics Receptor Tyrosine Kinase-like Orphan Receptors / metabolism
IF 4.751
引用数 4
リソース情報
ヒト・動物細胞 HCT116(RCB2979)