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PACAP Promotes Matrix-Driven Adhesion of Cultured Adult Murine Neural Progenitors

机译:PACAP促进培养的成年鼠神经祖细胞的基质驱动粘附。

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New neurons are born throughout the life of mammals in germinal zones of the brain known as neurogenic niches: the subventricular zone of the lateral ventricles and the subgranular zone of the dentate gyrus of the hippocampus. These niches contain a subpopulation of cells known as adult neural progenitor cells (aNPCs), which self-renew and give rise to new neurons and glia. aNPCs are regulated by many factors present in the niche, including the extracellular matrix (ECM). We show that the neuropeptide PACAP (pituitary adenylate cyclase-activating polypeptide) affects subventricular zone-derived aNPCs by increasing their surface adhesion. Gene array and reconstitution assays indicate that this effect can be attributed to the regulation of ECM components and ECM-modifying enzymes in aNPCs by PACAP. Our work suggests that PACAP regulates a bidirectional interaction between the aNPCs and their niche: PACAP modifies ECM production and remodeling, in turn the ECM regulates progenitor cell adherence. We speculate that PACAP may in this manner help restrict adult neural progenitors to the stem cell niche in vivo , with potential significance for aNPC function in physiological and pathological states.
机译:新的神经元在哺乳动物的整个生命中都在称为神经源性壁ni的大脑生发区中诞生:侧脑室的脑室下区和海马齿状回的颗粒下区。这些壁ni包含称为成年神经祖细胞(aNPC)的细胞亚群,它们会自我更新并产生新的神经元和神经胶质。 aNPC受存在于利基市场中的许多因素调节,包括细胞外基质(ECM)。我们显示,神经肽PACAP(垂体腺苷酸环化酶激活多肽)通过增加其表面粘附力来影响脑室下区域衍生的aNPC。基因阵列和重组分析表明,这种作用可归因于PACAP对aNPC中ECM成分和ECM修饰酶的调节。我们的工作表明,PACAP调节aNPC及其利基之间的双向相互作用:PACAP修饰ECM的产生和重塑,进而ECM调节祖细胞的粘附。我们推测,PACAP可能以这种方式帮助在体内限制成年神经祖细胞进入干细胞生态位,对aNPC在生理和病理状态下的功能具有潜在意义。

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