Saxena Monika, Agnihotri Nitin, Sen Jonaki
Department of Biological Sciences and Bioengineering, Indian Institute of Technology Kanpur, Kanpur-208016, Uttar Pradesh, India.
Department of Biological Sciences and Bioengineering, Indian Institute of Technology Kanpur, Kanpur-208016, Uttar Pradesh, India
Development. 2018 Jan 9;145(1):dev147157. doi: 10.1242/dev.147157.
Bone morphogenetic protein (BMP) signaling has been implicated in the regulation of patterning of the forebrain and as a regulator of neurogenesis and gliogenesis in the mammalian cortex. However, its role in other aspects of cortical development remains unexplored. We hypothesized that BMP signaling might regulate additional processes during the development of cortical neurons after observing active BMP signaling in a spatiotemporally dynamic pattern in the mouse cortex. Our investigation revealed that BMP signaling specifically regulates the migration, polarity and the dendritic morphology of upper layer cortical neurons born at E15.5. On further dissection of the role of canonical and non-canonical BMP signaling in each of these processes, we found that migration of these neurons is regulated by both pathways. Their polarity, however, appears to be affected more strongly by canonical BMP signaling, whereas dendritic branch formation appears to be somewhat more strongly affected by LIMK-mediated non-canonical BMP signaling.
骨形态发生蛋白(BMP)信号传导与前脑模式的调控有关,并且在哺乳动物皮质中作为神经发生和胶质发生的调节因子。然而,其在皮质发育其他方面的作用仍未得到探索。在观察到小鼠皮质中BMP信号以时空动态模式活跃存在后,我们推测BMP信号传导可能在皮质神经元发育过程中调节其他过程。我们的研究表明,BMP信号传导特异性地调节在E15.5出生的上层皮质神经元的迁移、极性和树突形态。在进一步剖析经典和非经典BMP信号传导在这些过程中的作用时,我们发现这些神经元的迁移受这两种途径的调节。然而,它们的极性似乎受经典BMP信号传导的影响更强,而树突分支的形成似乎受LIMK介导的非经典BMP信号传导的影响更强。