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雌激素的合成与突触作用:“突触分泌”信号的证据。

Estradiol synthesis and action at the synapse: evidence for "synaptocrine" signaling.

机构信息

Neuroscience and Behavior Program, Center for Neuroendocrine Studies, University of Massachusetts Amherst, MA, USA.

出版信息

Front Endocrinol (Lausanne). 2011 Sep 29;2:28. doi: 10.3389/fendo.2011.00028. eCollection 2011.

Abstract

Classically, the modulation of brain function and behavior by steroid hormones was linked exclusively to secretion by peripheral endocrine glands. Subsequently, steroid actions within the brain were shown dependent upon either synthesis and secretion by peripheral organs or by production within the CNS itself using peripheral sources of precursors. Discovery of the estrogen-synthetic enzyme aromatase in brain further bolstered the latter view and served as a catalyst for expanding concepts of neurosteroidogenesis. In parallel research, several steroids, including estradiol, were found to have rapid effects on neuronal excitability, partially explained by novel actions at neuronal membranes. Recent findings from multiple levels of analysis and labs necessitate an updated view on how steroids are delivered to neural circuits. There is now considerable evidence for expression of the aromatase enzyme within synaptic boutons in the vertebrate CNS. Furthermore, additional work now directly couples rapid regulation of neuroestrogen synthesis with neurophysiological and behavioral outcomes. In this review we summarize evidence for targeted and acute synaptic estrogen synthesis and perisynaptic estrogen actions in the CNS of songbirds. We evaluate these findings in the context of criteria associated with classic neuromodulatory signaling. We term this novel form of signaling "synaptocrine," and discuss its implications.

摘要

从经典意义上讲,类固醇激素对大脑功能和行为的调节作用仅与外周内分泌腺的分泌有关。随后,研究表明,大脑内的类固醇作用依赖于外周器官的合成和分泌,或者依赖于中枢神经系统自身利用外周来源的前体进行合成。在大脑中发现雌激素合成酶芳香化酶进一步支持了后一种观点,并为扩展神经甾体生成的概念提供了动力。在平行的研究中,发现包括雌二醇在内的几种类固醇对神经元兴奋性有快速作用,这部分可以通过神经元膜的新作用来解释。来自多个分析水平和实验室的最新发现需要对类固醇如何递送到神经回路有一个更新的认识。现在有相当多的证据表明,芳香化酶酶在脊椎动物中枢神经系统的突触末梢中表达。此外,现在的其他工作直接将神经雌激素合成的快速调节与神经生理学和行为结果联系起来。在这篇综述中,我们总结了在鸣禽中枢神经系统中靶向和急性突触雌激素合成和突触周围雌激素作用的证据。我们根据与经典神经调质信号相关的标准来评估这些发现。我们将这种新形式的信号称为“突触分泌”,并讨论其意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce2e/3356004/e0b2796f9e0b/fendo-02-00028-g001.jpg

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