Calisi Rebecca M, Saldanha Colin J
*Department of Biology, Barnard College, Columbia University, New York, NY 10027, USA;
Department of Biology, American University, Washington, D.C. 20016, USA.
Integr Comp Biol. 2015 Aug;55(2):264-7. doi: 10.1093/icb/icv007. Epub 2015 Apr 20.
The definition of a hormone has been in part delineated by its journey to distant receptor targets. Following activation of a receptor, a subsequent reaction facilitates the regulation of physiology and, ultimately, behavior. However, a growing number of studies report that hormones can influence these events at a previously underappreciated high speed. With the potential to act as neurotransmitters, the definition of a hormone and its mechanisms of action are evolving. In this symposium, we united scientists who use contemporary molecular, electrophysiological, and biochemical approaches to study aspects of rapid hormone action in a broad array of systems across different levels of biological organization. What emerged was an overwhelming consensus that the use of integrative and comparative approaches fuels discovery and increases our understanding of de novo hormone synthesis, local actions of neurohormones, and subsequent effects on neuroplasticity and behavior.
激素的定义部分是由其到达远处受体靶点的过程所界定的。受体激活后,随后的反应促进生理调节,最终影响行为。然而,越来越多的研究报告称,激素能够以一种此前未得到充分认识的高速影响这些事件。由于激素有充当神经递质的潜力,激素的定义及其作用机制正在不断演变。在本次研讨会上,我们汇聚了一批科学家,他们运用当代分子、电生理和生化方法,研究不同生物组织层面的广泛系统中激素快速作用的各个方面。大家形成了一个压倒性的共识,即采用综合和比较方法有助于推动发现,并增进我们对激素从头合成、神经激素的局部作用以及随后对神经可塑性和行为的影响的理解。