Cepeda-Nieto Ana C, Pfaff Samuel L, Varela-Echavarría Alfredo
Instituto de Neurobiología, Universidad Nacional Autónoma de México, Querétaro 76230, México.
Mol Cell Neurosci. 2005 Jan;28(1):30-41. doi: 10.1016/j.mcn.2004.06.016.
Hindbrain reticulospinal neurons are involved in complex neural functions that are mediated by spinal elements, including posture control and modulation of respiration and cardiovascular function. Recent descriptive studies with chick, mouse, and rat embryos have provided anatomical insight into the development of the different reticulospinal nuclei and the establishment of their axonal projection pathways into the spinal cord. In this study, we have addressed the molecular control of this process. Retrograde labeling of reticulospinal neurons in chick and mouse embryos combined with immunostaining for the homeodomain factors Lhx1/Lhx5, Lhx3/Lhx4, and Chx10 have defined transcriptional codes that label subsets of neurons with different axon projection patterns. Gain of function and loss of function experiments using in ovo electroporation implicate these transcription factors in the determination of reticulospinal neuron identity. Furthermore, our studies reveal novel gene interactions between the transcription factors analyzed that may determine the final patterns of reticulospinal axon projection.
后脑网状脊髓神经元参与由脊髓元件介导的复杂神经功能,包括姿势控制以及呼吸和心血管功能的调节。最近对鸡、小鼠和大鼠胚胎进行的描述性研究,为不同网状脊髓核的发育及其轴突投射到脊髓的途径的建立提供了解剖学见解。在本研究中,我们探讨了这一过程的分子控制机制。对鸡和小鼠胚胎中的网状脊髓神经元进行逆行标记,并结合对同源域因子Lhx1/Lhx5、Lhx3/Lhx4和Chx10进行免疫染色,确定了转录编码,这些编码标记了具有不同轴突投射模式的神经元亚群。利用鸡胚体内电穿孔进行的功能获得和功能丧失实验表明,这些转录因子参与了网状脊髓神经元身份的确定。此外,我们的研究揭示了所分析的转录因子之间存在新的基因相互作用,这些相互作用可能决定网状脊髓轴突投射的最终模式。