Friedman Brain Institute, Nash Family Department of Neuroscience, Icahn School of Medicine at Mount Sinai, New York, NY, USA.
Department of Bioengineering, Northeastern University, Boston, MA, USA.
Commun Biol. 2021 Jan 29;4(1):145. doi: 10.1038/s42003-021-01667-4.
Infiltrative growth is a major cause of high lethality of malignant brain tumors such as glioblastoma (GBM). We show here that GBM cells upregulate guidance receptor Plexin-B2 to gain invasiveness. Deletion of Plexin-B2 in GBM stem cells limited tumor spread and shifted invasion paths from axon fiber tracts to perivascular routes. On a cellular level, Plexin-B2 adjusts cell adhesiveness, migratory responses to different matrix stiffness, and actomyosin dynamics, thus empowering GBM cells to leave stiff tumor bulk and infiltrate softer brain parenchyma. Correspondingly, gene signatures affected by Plexin-B2 were associated with locomotor regulation, matrix interactions, and cellular biomechanics. On a molecular level, the intracellular Ras-GAP domain contributed to Plexin-B2 function, while the signaling relationship with downstream effectors Rap1/2 appeared variable between GBM stem cell lines, reflecting intertumoral heterogeneity. Our studies establish Plexin-B2 as a modulator of cell biomechanics that is usurped by GBM cells to gain invasiveness.
浸润性生长是导致胶质母细胞瘤(GBM)等恶性脑肿瘤高致死率的主要原因。我们在这里表明,GBM 细胞上调了导向受体 Plexin-B2 以获得侵袭性。在 GBM 干细胞中删除 Plexin-B2 会限制肿瘤的扩散,并将侵袭途径从轴突纤维束转移到血管周围途径。在细胞水平上,Plexin-B2 调节细胞黏附性、对不同基质硬度的迁移反应以及肌动球蛋白动力学,从而使 GBM 细胞能够离开坚硬的肿瘤实质并浸润较软的脑组织。相应地,受 Plexin-B2 影响的基因特征与运动调节、基质相互作用和细胞生物力学有关。在分子水平上,细胞内 Ras-GAP 结构域有助于 Plexin-B2 的功能,而与下游效应物 Rap1/2 的信号关系在 GBM 干细胞系之间似乎不同,反映了肿瘤间的异质性。我们的研究确立了 Plexin-B2 作为细胞生物力学的调节剂,被 GBM 细胞篡夺以获得侵袭性。