Gao W Q, Hatten M E
Department of Pathology, College of Physicians and Surgeons, Columbia University, New York, NY 10032.
Science. 1993 Apr 16;260(5106):367-9. doi: 10.1126/science.8469990.
The migration of postmitotic neurons away from compact, germinal zones is a critical step in neuronal differentiation in the developing brain. To study the molecular signals necessary for cerebellar granule cell migration in situ, precursor cells from the neurological mutant mouse weaver, an animal with phenotypic defects in migration, were implanted into the external germinal layer (EGL) of wild-type cerebellar cortex. In this region, labeled weaver precursor cells of the EGL progressed through all stages of granule neuron differentiation, including the extension of parallel fibers, migration through the molecular and Purkinje cell layers, positioning in the internal granule cell layer, and extension of dendrites. Thus, the weaver gene acts nonautonomously in vivo, and local cell interactions may induce early steps in neuronal differentiation that are required for granule cell migration.
有丝分裂后神经元从致密的生发区迁移出去是发育中大脑神经元分化的关键步骤。为了原位研究小脑颗粒细胞迁移所需的分子信号,将来自神经学突变小鼠weaver(一种在迁移方面存在表型缺陷的动物)的前体细胞植入野生型小脑皮质的外生发层(EGL)。在该区域,EGL中标记的weaver前体细胞经历了颗粒神经元分化的所有阶段,包括平行纤维的延伸、穿过分子层和浦肯野细胞层的迁移、定位在内颗粒细胞层以及树突的延伸。因此,weaver基因在体内以非自主方式起作用,局部细胞间相互作用可能诱导颗粒细胞迁移所需的神经元分化早期步骤。