Kang B J, Chang D A, Mackay D D, West G H, Moreira T S, Takakura A C, Gwilt J M, Guyenet P G, Stornetta R L
Department of Anesthesiology, Dankook University College of Medicine, Chonan City, 330-714 Republic of Korea.
J Comp Neurol. 2007 Aug 10;503(5):627-41. doi: 10.1002/cne.21409.
Phox2b is required for development of the peripheral autonomic nervous system and a subset of cranial nerves and lower brainstem nuclei. Phox2b mutations in man cause diffuse autonomic dysfunction and deficits in the automatic control of breathing. Here we study the distribution of Phox2b in the adult rat hindbrain to determine whether this protein is selectively expressed by neurons involved in respiratory and autonomic control. In the medulla oblongata, Phox2b-immunoreactive nuclei were present in the dorsal vagal complex, intermediate reticular nucleus, dorsomedial spinal trigeminal nucleus, nucleus ambiguus, catecholaminergic neurons, and retrotrapezoid nucleus (RTN). Phox2b was expressed by both central excitatory relays of the sympathetic baroreflex (nucleus of the solitary tract and C1 neurons) but not by the inhibitory relay of this reflex. Phox2b was absent from the ventral respiratory column (VRC) caudal to RTN and rare within the parabrachial nuclei. In the pons, Phox2b was confined to cholinergic efferent neurons (salivary, vestibulocochlear) and noncholinergic peritrigeminal neurons. Rostral to the pons, Phox2b was detected only in the oculomotor complex. In adult rats, Phox2b is neither a comprehensive nor a selective marker of hindbrain autonomic pathways. This marker identifies a subset of hindbrain neurons that control orofacial movements (dorsomedial spinal trigeminal nucleus, pontine peritrigeminal neurons), balance and auditory function (vestibulocochlear efferents), the eyes, and both divisions of the autonomic efferent system. Phox2b is virtually absent from the respiratory rhythm and pattern generator (VRC and dorsolateral pons) but is highly expressed by neurons involved in the chemical drive and reflex regulation of this oscillator.
Phox2b对于外周自主神经系统以及一部分脑神经和低位脑干核团的发育是必需的。人类的Phox2b突变会导致弥漫性自主神经功能障碍以及呼吸自动控制方面的缺陷。在此,我们研究了成年大鼠后脑Phox2b的分布情况,以确定该蛋白是否由参与呼吸和自主控制的神经元选择性表达。在延髓中,Phox2b免疫反应阳性核团存在于迷走背侧复合体、中间网状核、脊髓三叉神经背内侧核、疑核、儿茶酚胺能神经元以及后梯形核(RTN)中。Phox2b在交感压力反射的中枢兴奋性中继(孤束核和C1神经元)中表达,但在该反射的抑制性中继中不表达。在RTN尾侧的腹侧呼吸柱(VRC)中没有Phox2b,在臂旁核中也很少见。在脑桥中,Phox2b局限于胆碱能传出神经元(唾液腺、前庭蜗神经)和非胆碱能三叉神经周神经元。在脑桥上方,仅在动眼神经复合体中检测到Phox2b。在成年大鼠中,Phox2b既不是后脑自主神经通路的全面标记物,也不是选择性标记物。该标记物可识别控制口面部运动(脊髓三叉神经背内侧核、脑桥三叉神经周神经元)、平衡和听觉功能(前庭蜗神经传出纤维)、眼睛以及自主传出系统两个分支的后脑神经元子集。呼吸节律和模式发生器(VRC和脑桥背外侧)中几乎没有Phox2b,但参与该振荡器化学驱动和反射调节的神经元中Phox2b高度表达。