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首页> 外文期刊>The Royal Society Proceedings B: Biological Sciences >Aromatase is pre-synaptic and sexually dimorphic in the adult zebra finch brain
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Aromatase is pre-synaptic and sexually dimorphic in the adult zebra finch brain

机译:芳香化酶在成年斑马雀科的大脑中是突触前和性二态的

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Oestrogens organize and activate circuits within the vertebrate central nervous system. Oestrogen synthesis occurs via the expression of aromatase, a P-450 enzyme detected in microsomes and more recently in presynaptic boutons. Synaptic aromatase has only been described in brain regions that express aromatase in many subcellular compartments, so its function remains poorly understood. To more thoroughly study the role of oestrogen synthesis at synaptic terminals, we examined the ultrastructural compartmentalization of aromatase in the zebra finch; a species in which high aromatase activity can be measured in brain areas that do not contain somal aromatase. Here, we report the presence of aromatase in pre-synaptic boutons in the hippocampus and the high vocal centre brain areas with low and undetectable somal aromatase, respectively, in addition to areas with abundant somal aromatase such as the preoptic area and caudomedial nidopallium. At these brain areas, males had more total synapses, more aromatase presynaptic boutons and importantly, the proportion of total synaptic profiles that expressed aromatase was significantly higher in males relative to females. Aromatase-positive pre-synaptic boutons were always observed innervating aromatase-negative post-synaptic elements. We conclude that oestrogen may be provided to discrete oestrogen-sensitive targets by synaptic aromatization. Further, some targets may be exposed to more oestrogen in males. The expression of aromatase in individual synapses of projection neurons represents a unique mechanism of neuroendocrine action. Neurons with steroidogenic capability may modulate distant targets with the specificity of axonal innervation.
机译:雌激素组织和激活脊椎动物中枢神经系统内的回路。雌激素的合成通过芳香酶的表达而发生,芳香酶是一种在微粒体中和最近在突触前的boutons中检测到的P-450酶。突触芳香化酶仅在许多亚细胞区室表达芳香化酶的大脑区域中有所描述,因此其功能仍知之甚少。为了更透彻地研究雌激素在突触末端的合成作用,我们研究了斑马雀科中芳香化酶的超微结构分隔。可以在不包含体味芳香化酶的大脑区域中测量到高芳香化酶活性的物种。在这里,我们报告了在海马体和高声中枢脑区域的突触前按钮中存在芳香酶的情况,这些区域分别具有较低的和无法检测到的身体芳香化酶,以及具有丰富的身体芳香化酶的区域,例如视前区域和假内侧的中枢神经系统。在这些大脑区域,雄性具有更多的总突触,更多的芳香化酶突触前突触,而且重要的是,男性中,表达芳香化酶的总突触图谱的比例明显高于女性。总是观察到芳香化酶阳性的突触前弹键支配着芳香化酶阴性的突触后元件。我们得出结论,通过突触芳香化可以将雌激素提供给离散的雌激素敏感性靶标。此外,某些靶标可能会在男性中接触更多的雌激素。芳香酶在投射神经元的单个突触中的表达代表了神经内分泌作用的独特机制。具有类固醇生成能力的神经元可能以轴突神经支配的特异性调节远处的靶标。

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