首页> 外文期刊>Cell and Tissue Research >Expression of two different isoforms of fasciclin II during postembryonic central nervous system remodeling in Manduca sexta.
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Expression of two different isoforms of fasciclin II during postembryonic central nervous system remodeling in Manduca sexta.

机译:Faduciclin II的两种不同同工型在Manduca sexta胚后中枢神经系统重塑过程中的表达。

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摘要

Insect metamorphosis serves as a useful model to investigate postembryonic development in the central nervous system, because the transformation between larval and adult life is accompanied by a remodeling of neural circuitry. Most changes are controlled by ecdysteroids, but activity-dependent mechanisms and cell surface signals also play a role. This immunocytochemical study investigates the expression patterns of two isoforms of the neural cell adhesion molecule, fasciclin II (FasII), during postembryonic ventral nerve cord remodeling in the moth, Manduca sexta. Both the expression of the glycosyl-phosphatidylinositol (GPI)-linked isoform and the transmembrane isoform of Manduca FasII (TM-MFasII) are regulated in a stereotyped spatio-temporal pattern. TM-MFasII is expressed in a stage-specific manner in a subset of neurons. Subsets of central axons express high levels during outgrowth supporting a functional role for TM-FasII during pathfinding. Dendritic localization is not found at any stage of metamorphosis, suggesting no homophilic interactions of TM-MFasII during central synapse development. GPI-MFasII is expressed in a stage-specific manner, most likely only in glial cells. The larval and adult stages show almost no GPI-MFasII expression, whereas during pupal life, positive GPI-MFasII labeling is present around synaptotagmin-negative tracts or commissures, so that either homophilic stabilization of glial boundaries or heterophilic neuron-glial interactions possibly stabilize the axons within their tracts. GPI-MFasII expression is not co-localized with synaptotagmin-positive central terminals, rendering a role for synapse development unlikely. Neither isoform is expressed in all neurons of a specific class at any developmental stage, indicating that MFasII functions are restricted to specific subsets of neurons or to individual neurons.
机译:昆虫变态是研究中枢神经系统胚后发育的有用模型,因为幼虫和成年生活之间的转变伴随着神经回路的重塑。大多数变化是由蜕皮类固醇控制的,但活动依赖性机制和细胞表面信号也起作用。这项免疫细胞化学研究调查了蛾蛾Manduca sexta在胚胎后腹侧神经索重塑过程中神经细胞粘附分子fasciclin II(FasII)的两种同工型的表达模式。糖基磷脂酰肌醇(GPI)连接的同工型和Manduca FasII(TM-MFasII)的跨膜同工型均以定型的时空模式进行调节。 TM-MFasII以阶段特定的方式在神经元子集中表达。中央轴突的子集在生长期间表达高水平,支持寻路过程中TM-FasII的功能性作用。在变态的任何阶段均未发现树突状定位,这表明在中央突触形成过程中TM-MFasII没有同源相互作用。 GPI-MFasII以阶段特异性方式表达,最有可能仅在神经胶质细胞中表达。幼虫和成年阶段几乎没有GPI-MFasII表达,而在幼虫期,突触结合蛋白阴性道或连合周围存在阳性GPI-MFasII标记,因此,胶质边界的同系稳定作用或异质神经元-神经胶质相互作用可能使神经胶质边界稳定。束缚在他们的束缚。 GPI-MFasII表达不与突触标记素阳性中央末端共定位,因此不太可能发挥突触发展的作用。在任何发育阶段,均未在特定类别的所有神经元中表达同工型,这表明MFasII功能仅限于神经元的特定子集或单个神经元。

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