Tarui T, Takahashi T, Nowakowski R S, Hayes N L, Bhide P G, Caviness V S
Neurology, Massachusetts General Hospital, Boston, MA 02114, USA.
Cereb Cortex. 2005 Sep;15(9):1343-55. doi: 10.1093/cercor/bhi017. Epub 2005 Jan 12.
Neocortical projection neurons arise from a pseudostratified ventricular epithelium (PVE) from embryonic day 11 (E11) to E17 in mice. The sequence of neuron origin is systematically related to mechanisms that specify neuronal class properties including laminar fate destination. Thus, the neurons to be assembled into the deeper layers are the earliest generated, while those to be assembled into superficial layers are the later generated neurons. The sequence of neuron origin also correlates with the probability of cell cycle exit (Q) and the duration of G1-phase of the cell cycle (T(G1)) in the PVE. Both Q and T(G1) increase as neuronogenesis proceeds. We test the hypothesis that mechanisms regulating specification of neuronal laminar destination, Q and T(G1) are coordinately regulated. We find that overexpression of p27(Kip1) in the PVE from E12 to E14 increases Q but not T(G1) and that the increased Q is associated with a commensurate increase in the proportion of exiting cells that is directed to superficial layers. We conclude that mechanisms that govern specification of neocortical neuronal laminar destination are coordinately regulated with mechanisms that regulate Q and are independent of mechanisms regulatory to cell cycle duration. Moreover, they operate prior to postproliferative mechanisms necessary to neocortical laminar assembly.
在小鼠中,新皮质投射神经元起源于胚胎第11天(E11)至E17的假复层室管膜上皮(PVE)。神经元起源的顺序与决定神经元类别特性(包括层状命运归宿)的机制系统相关。因此,将被组装到深层的神经元是最早产生的,而那些将被组装到浅层的神经元是较晚产生的。神经元起源的顺序也与PVE中细胞周期退出概率(Q)和细胞周期G1期持续时间(T(G1))相关。随着神经发生的进行,Q和T(G1)均增加。我们检验了调节神经元层状归宿、Q和T(G1)的机制是协同调节的这一假设。我们发现,从E12到E14在PVE中过表达p27(Kip1)会增加Q,但不会增加T(G1),并且增加的Q与定向到浅层的退出细胞比例相应增加有关。我们得出结论,控制新皮质神经元层状归宿的机制与调节Q的机制协同调节,并且独立于调节细胞周期持续时间的机制。此外,它们在新皮质层状组装所需的增殖后机制之前起作用。