Kuang S, Goldberg J I
Department of Biological Sciences, University of Alberta, CW 405 Biological Science Building, Edmonton, Alberta, Canada T6G 2E9.
J Neurobiol. 2001 Apr;47(1):1-15. doi: 10.1002/neu.1011.
Early in embryonic development, the pond snail Helisoma trivolvis exhibits a rotational behavior that is generated by beating of cilia in the dorsolateral and pedal bands. Although previous anatomical and pharmacological studies provided indirect evidence that a pair of serotonergic neurons, Embryonic Neurons C1 (ENC1s), is involved in regulating embryonic rotation, direct evidence linking ENC1 to ciliary function is still lacking. In the present study, we used laser microbeams to perturb ENC1 in vivo while monitoring ciliary activity in identified ciliary bands. A laser treatment protocol to specifically ablate ENC1 without damaging the surrounding cells was established. Unilateral laser treatment of ENC1 caused transient increases in the activity of the pedal and ipsidorsolateral cilia, lasting 30-50 min. In contrast, activity of cilia that were not anatomically associated with ENC1 was unaffected by laser treatment. Mianserin, an effective serotonin antagonist in Helisoma ciliated cells, decreased the overall CBF of pedal and dorsolateral cilia by reducing the occurrence of spontaneous CBF surges in these cilia. Finally, the cilioexcitatory action of ENC1 laser treatment was mimicked by serotonin and reduced in the presence of mianserin. These results suggest that laser treatment provokes a release of serotonin from ENC1, resulting in a prolonged elevation of activity in the target ciliary cells. We conclude that, in addition to their previously established role in regulating neurodevelopment, ENC1s also function as serotonergic motor neurons to regulate ciliary activity, and therefore the rotational behavior of early embryos.
在胚胎发育早期,静水椎实螺表现出一种旋转行为,这种行为是由背外侧和足带中的纤毛摆动产生的。尽管先前的解剖学和药理学研究提供了间接证据,表明一对5-羟色胺能神经元,即胚胎神经元C1(ENC1s)参与调节胚胎旋转,但将ENC1与纤毛功能联系起来的直接证据仍然缺乏。在本研究中,我们使用激光微束在体内干扰ENC1,同时监测特定纤毛带中的纤毛活动。建立了一种专门消融ENC1而不损伤周围细胞的激光治疗方案。对ENC1进行单侧激光治疗会导致足和同侧背外侧纤毛的活动短暂增加,持续30-50分钟。相比之下,与ENC1在解剖学上不相关的纤毛活动不受激光治疗的影响。米安色林是一种在静水椎实螺纤毛细胞中有效的5-羟色胺拮抗剂,它通过减少这些纤毛中自发的纤毛摆动频率(CBF)激增的发生率,降低了足和背外侧纤毛的整体CBF。最后,5-羟色胺模拟了ENC1激光治疗的纤毛兴奋作用,而在米安色林存在的情况下这种作用减弱。这些结果表明,激光治疗促使ENC1释放5-羟色胺,导致目标纤毛细胞的活动长时间升高。我们得出结论,除了它们先前确定的在调节神经发育中的作用外,ENC1s还作为5-羟色胺能运动神经元发挥作用,以调节纤毛活动,从而调节早期胚胎的旋转行为。