首页> 美国卫生研究院文献>The Journal of Neuroscience >Ultrastructural Localization of Full-Length trkB Immunoreactivity in Rat Hippocampus Suggests Multiple Roles in Modulating Activity-Dependent Synaptic Plasticity
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Ultrastructural Localization of Full-Length trkB Immunoreactivity in Rat Hippocampus Suggests Multiple Roles in Modulating Activity-Dependent Synaptic Plasticity

机译:大鼠海马全长trkB免疫反应性的超微结构定位表明在调节活动依赖性突触可塑性中的多重作用。

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摘要

Neurotrophins acting at the trkB receptor have been shown to be important modulators of activity-dependent plasticity in the hippocampus, but the mechanisms underlying these effects are not yet well understood. To identify the cellular and subcellular targets of trkB ligands in the adult rat hippocampal formation, full-length trkB receptor immunoreactivity (trkB-IR) was localized using electron microscopy. trkB-IR was present in the glutamatergic pyramidal and granule cells. Labeling in these neurons appeared as discrete clusters and was primarily in axons, excitatory-type axon terminals, and dendritic spines and to a lesser extent in somata and dendritic shafts. trkB-IR was commonly found on the plasma membrane of dendritic spines, whereas in other subcellular regions trkB-IR was often intracellular. Labeling was strikingly dense within axon initial segments, suggesting extensive receptor trafficking. trkB-IR was not confined to pyramidal and granule cells. Dense trkB-IR was found in occasional interneuron axon initial segments, some axon terminals forming inhibitory-type synapses onto somata and dendritic shafts, and excitatory-type terminals likely to originate extrahippocampally. This suggests that trkB is contained in some GABAergic interneurons, neuromodulatory (e.g., cholinergic, dopaminergic, and noradrenergic) afferents, and/or glutamatergic afferents. These data indicate that full-length trkB receptor activation may modulate glutamatergic pathways of the trisynaptic circuit both presynaptically at axon terminals and initial segments and postsynaptically at dendritic spines and shafts. Signaling via catalytic trkB may also presynaptically affect inhibitory and modulatory neurons. A pan-trkB antibody labeled the same neuronal populations as the full-length-specific trkB antiserum, but the labels differed in density at various subcellular sites. These findings provide an ultrastructural foundation for further examining the mechanisms through which neurotrophins acting at trkB receptors contribute to synaptic plasticity.
机译:作用于trkB受体的神经营养蛋白已被证明是海马中活动依赖性可塑性的重要调节剂,但尚未充分理解这些作用的机制。为了鉴定成年大鼠海马结构中trkB配体的细胞和亚细胞靶标,使用电子显微镜对全长trkB受体免疫反应性(trkB-IR)进行了定位。 trkB-IR存在于谷氨酸能锥体细胞和颗粒细胞中。这些神经元中的标记以离散簇的形式出现,主要在轴突,兴奋型轴突末端和树突棘中,而在躯体和树突干中则较小。 trkB-IR通常在树突棘的质膜上发现,而在其他亚细胞区域,trkB-IR通常在细胞内。轴突起始段内的标记非常密集,表明广泛的受体运输。 trkB-IR不仅限于锥体细胞和颗粒细胞。在偶发的神经元轴突起始节段中发现了密集的trkB-IR,某些轴突末端在躯干和树突状轴上形成抑制型突触,兴奋性末端可能起源于海马外。这表明trkB包含在某些GABA能神经元,神经调节性(例如胆碱能,多巴胺能和去甲肾上腺素能)传入和/或谷氨酸能传入中。这些数据表明全长trkB受体激活可能既突触在轴突末端和初始节段和突触后在树突棘和轴上调节三突触回路的谷氨酸能途径。通过催化性trkB发出的信号也可能会先突触地影响抑制性和调节性神经元。 pan-trkB抗体标记与全长特异性trkB抗血清相同的神经元群体,但标记在各个亚细胞部位的密度不同。这些发现为进一步检查作用于trkB受体的神经营养蛋白促进突触可塑性的机制提供了超微结构基础。

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