Menin Luca, Weber Janine, Villa Stefano, Martini Emanuele, Maspero Elena, Cancila Valeria, Maiuri Paolo, Palamidessi Andrea, Frittoli Emanuela, Bianchi Fabrizio, Tripodo Claudio, Walters Kylie J, Giavazzi Fabio, Scita Giorgio, Polo Simona
bioRxiv. 2023 Jan 23:2023.01.23.524898. doi: 10.1101/2023.01.23.524898.
Tissue fluidification and collective motility are pivotal in regulating embryonic morphogenesis, wound healing and tumor metastasis. These processes frequently require that each cell constituent of a tissue coordinates its migration activity and directed motion through the oriented extension of lamellipodia cell protrusions, promoted by RAC1 activity. While the upstream RAC1 regulators in individual migratory cells or leader cells during invasion or wound healing are well characterized, how RAC1 is controlled in follower cells remains unknown. Here, we identify a novel MYO6-DOCK7 axis that is critical for spatially restriction of RAC1 activity in a planar polarized fashion in model tissue monolayers. The MYO6-DOCK7 axis specifically controls the extension of cryptic lamellipodia required to drive tissue fluidification and cooperative mode motion in otherwise solid and static carcinoma cell collectives.
Collective motion of jammed epithelia requires myosin VI activityThe MYO6-DOCK7 axis is critical to restrict the activity of RAC1 in a planar polarized fashionMYO6-DOCK7-RAC1 activation ensures long-range coordination of movements by promoting orientation and persistence of cryptic lamellipodiaMyosin VI overexpression is exploited by infiltrating breast cancer cells.
组织液化和集体运动在调节胚胎形态发生、伤口愈合和肿瘤转移中起关键作用。这些过程通常要求组织中的每个细胞成分通过由RAC1活性促进的片状伪足细胞突起的定向延伸来协调其迁移活动和定向运动。虽然在侵袭或伤口愈合过程中单个迁移细胞或引导细胞中的上游RAC1调节因子已得到充分表征,但RAC1在跟随细胞中如何被控制仍不清楚。在这里,我们鉴定了一个新的MYO6-DOCK7轴,该轴对于在模型组织单层中以平面极化方式在空间上限制RAC1活性至关重要。MYO6-DOCK7轴特异性地控制在原本固态和静态的癌细胞聚集体中驱动组织液化和协同模式运动所需的隐蔽片状伪足的延伸。
拥挤上皮细胞的集体运动需要肌球蛋白VI活性
MYO6-DOCK7轴对于以平面极化方式限制RAC1活性至关重要
MYO6-DOCK7-RAC1激活通过促进隐蔽片状伪足的定向和持续性来确保运动的长距离协调
浸润性乳腺癌细胞利用肌球蛋白VI的过表达。