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VGLUT1 mRNA and protein expression in the visual system of prosimian galagos (Otolemur garnetti)

机译:VGLUT1 mRNA和蛋白质在Prosimian galagos(Otolemur garnetti)视觉系统中的表达

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摘要

The presynaptic storage and release of glutamate, an excitatory neurotransmitter, is modulated by a family of transport proteins known as vesicular glutamate transporters. Vesicular glutamate transporter 1 (VGLUT1) is widely distributed in the central nervous system of most mammalian and nonmammalian species, and regulates the uptake of glutamate into synaptic vesicles as well as the transport of filled glutamatergic vesicles to the terminal membrane during excitatory transmission. In rodents, VGLUT1 mRNA is primarily found in the neocortex, cerebellum, and hippocampus, and the VGLUT1 transport protein is involved in intercortical and corticothalamic projections that remain distinct from projections involving other VGLUT isoforms. With the exception of a few thalamic sensory nuclei, VGLUT1 mRNA is absent from subcortical areas and does not colocalize with other VGLUT mRNAs. VGLUT1 is similarly restricted to a few thalamic association nuclei and does not colocalize with other VGLUT proteins. However, recent work in primates has shown that VGLUT1 mRNA is also found in several subcortical nuclei as well as cortical areas, and that VGLUT1 may overlap with other VGLUT isoforms in glutamatergic projections. In order to expand current knowledge of VGLUT1 distributions in primates and gain insight on glutamatergic transmission in the visual system of primate species, we examined VGLUT1 mRNA and protein distributions in the lateral geniculate nucleus, pulvinar complex, superior colliculus, V1, V2, and the middle temporal area (MT) of prosimian galagos. We found that, similar to other studies in primates, VGLUT1 mRNA and protein are widely distributed in both subcortical and cortical areas. However, glutamatergic projections involving VGLUT1 are largely limited to intrinsic connections within subcortical and cortical areas, as well as the expected intercortical and corticothalamic projections. Additionally, VGLUT1 expression in galagos allowed us to identify laminar subdivisions of the superior colliculus, V1, V2, and MT.
机译:谷氨酸(一种兴奋性神经递质)在突触前的储存和释放受到一系列称为泡状谷氨酸转运蛋白的转运蛋白的调节。囊状谷氨酸转运蛋白1(VGLUT1)广泛分布于大多数哺乳动物和非哺乳动物物种的中枢神经系统中,并在兴奋性传输过程中调节谷氨酸向突触小泡的吸收以及填充的谷氨酸能小泡向终膜的运输。在啮齿动物中,VGLUT1 mRNA主要存在于新皮层,小脑和海马体中,并且VGLUT1转运蛋白与皮层间和皮层丘脑的投射有关,而与其他VGLUT异构体的投射截然不同。除少数丘脑感觉核外,皮层下区域不存在VGLUT1 mRNA,并且不与其他VGLUT mRNA共定位。 VGLUT1类似地限于少数丘脑缔合核,并且不与其他VGLUT蛋白共定位。但是,最近在灵长类动物中的研究表明,在多个皮层下核和皮层区域也发现了VGLUT1 mRNA,并且在谷氨酸能投射中VGLUT1可能与其他VGLUT亚型重叠。为了扩展目前关于灵长类动物VGLUT1分布的知识并深入了解灵长类动物视觉系统中的谷氨酸能传递,我们研究了侧舌状核,睑缘复合体,上丘,V1,V2和VGLUT1 mRNA和蛋白质分布。 prosimian galagos中颞区(MT)。我们发现,与其他关于灵长类动物的研究相似,VGLUT1 mRNA和蛋白质广泛分布在皮下和皮层区域。但是,涉及VGLUT1的谷氨酸能投影在很大程度上限于皮层下和皮层区域内的内在联系,以及预期的皮层间和皮层丘脑投影。此外,在加拉各斯的VGLUT1表达使我们能够识别上丘,V1,V2和MT的层状细分。

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