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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Expression of nonclassical class I major histocompatibility genes defines a tripartite organization of the mouse vomeronasal system.
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Expression of nonclassical class I major histocompatibility genes defines a tripartite organization of the mouse vomeronasal system.

机译:非经典I类主要组织相容性基因的表达定义了小鼠犁鼻系统的三重组织。

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The epithelium of the mouse vomeronasal organ (VNO) consists of apical and basal layers of neuronal cell bodies. Vomeronasal sensory neurons (VSNs) with cell bodies in the basal layer express the G-protein subunit G alpha(o) and members of the V2R superfamily of vomeronasal receptor genes and project their axons to the posterior accessory bulb (AOB). V2R(+) VSNs also express particular patterns of a family of nine nonclassical class I major histocompatibility Mhc genes, the H2-Mv genes. The function of H2-Mv molecules remains unknown. H2-Mv molecules have been reported to be associated with V2R molecules and have been proposed to participate in pheromone detection. Here, we find that a substantial fraction of V2R(+) VSNs does not express these nine H2-Mv genes. The cell bodies of H2-Mv(+) and H2-Mv(-) VSNs reside in the lower and upper sublayers of the basal layer, respectively. This spatial segregation is maintained at the level of the AOB: H2-Mv(+) and H2-Mv(-) VSNs project their axons to the posterior and anterior subdomains of the posterior AOB, respectively. By generating a C-terminal green fluorescent protein fusion protein with M10.2 in gene-targeted mice, we observe subcellular localization of M10.2 not only in dendrites but also in axons of VSNs. Our results reveal a tripartite organization of the VNO and AOB, question the generality of the requirement of these nine H2-Mv molecules for V2R surface expression, and suggest that H2-Mvs can function in both dendrites and axons.
机译:小鼠犁鼻器器官(VNO)的上皮由神经元细胞体的顶端和基底层组成。基底层细胞体的犁鼻感觉神经元(VSN)表达G蛋白亚基G alpha(o)和犁鼻受体基因V2R超家族的成员,并将其轴突投射到后副球(AOB)。 V2R(+)VSN还表达了9个非经典I类主要组织相容性Mhc基因H2-Mv基因家族的特定模式。 H2-Mv分子的功能仍然未知。据报道,H2-Mv分子与V2R分子相关,并被提议参与信息素的检测。在这里,我们发现V2R(+)VSN的很大一部分不表达这9个H2-Mv基因。 H2-Mv(+)和H2-Mv(-)VSN的单元体分别位于基础层的上层和下层。这种空间隔离保持在AOB的水平:H2-Mv(+)和H2-Mv(-)VSN将其轴突分别投射到后AOB的后和前子域。通过在靶向基因的小鼠中产生带有M10.2的C末端绿色荧光蛋白融合蛋白,我们不仅观察到M10.2在树突中而且在VSN的轴突中的亚细胞定位。我们的结果揭示了VNO和AOB的三方组织,质疑了这9种H2-Mv分子对V2R表面表达的要求的普遍性,并暗示H2-Mvs既可以在树突中也可以在轴突中起作用。

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