Developmental Neurobiology Department, Instituto de Neurociencias, Consejo Superior de Investigaciones Científicas/Universidad Miguel Hernández, Alicante, Spain.
Developmental Neurobiology Department, Instituto de Neurociencias, Consejo Superior de Investigaciones Científicas/Universidad Miguel Hernández, Alicante, Spain
J Cell Biol. 2019 Apr 1;218(4):1200-1217. doi: 10.1083/jcb.201807157. Epub 2019 Feb 26.
Mitotic spindle orientation must be tightly regulated during development and adult tissue homeostasis. It determines cell-fate specification and tissue architecture during asymmetric and symmetric cell division, respectively. Here, we uncover a novel role for Ephrin-Eph intercellular signaling in controlling mitotic spindle alignment in optic lobe neuroepithelial cells through aPKC activity-dependent myosin II regulation. We show that conserved core components of the mitotic spindle orientation machinery, including Discs Large1, Mud/NuMA, and Canoe/Afadin, mislocalize in dividing mutant neuroepithelial cells and produce spindle alignment defects in these cells when they are down-regulated. In addition, the loss of Eph leads to a Rho signaling-dependent activation of the PI3K-Akt1 pathway, enhancing cell proliferation within this neuroepithelium. Hence, Eph signaling is a novel extrinsic mechanism that regulates both spindle orientation and cell proliferation in the optic lobe neuroepithelium. Similar mechanisms could operate in other and vertebrate epithelia.
有丝分裂纺锤体的定向在发育和成人组织稳态中必须受到严格调控。它分别决定了不对称和对称细胞分裂过程中的细胞命运特化和组织架构。在这里,我们通过 aPKC 活性依赖性肌球蛋白 II 调控,揭示了 Ephrin-Eph 细胞间信号在控制 视神经上皮细胞有丝分裂纺锤体定向中的新作用。我们发现,有丝分裂纺锤体定向机制的保守核心组件,包括 Discs Large1、Mud/NuMA 和 Canoe/Afadin,在分裂的 突变神经上皮细胞中定位错误,并在下调这些细胞时产生纺锤体定向缺陷。此外,Eph 的缺失导致 Rho 信号依赖性 PI3K-Akt1 途径的激活,增强了神经上皮细胞的增殖。因此,Eph 信号是一种调节 视神经上皮细胞中纺锤体定向和细胞增殖的新型外在机制。类似的机制可能在其他 和脊椎动物上皮细胞中起作用。