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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Subcellular rearrangement of hsp90-binding immunophilins accompanies neuronal differentiation and neurite outgrowth.
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Subcellular rearrangement of hsp90-binding immunophilins accompanies neuronal differentiation and neurite outgrowth.

机译:结合hsp90的亲免素的亚细胞重排伴随神经元分化和神经突向外生长。

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摘要

FKBP51 and FKBP52 (FK506-binding protein 51 and 52) are tetratricopeptide repeat-domain immunophilins belonging to the tetratricopeptide-protein*hsp90*hsp70*p23 heterocomplex bound to steroid receptors. Immunophilins are related to receptor folding, subcellular localization, and hormone-dependent transcription. Also, they bind the immunosuppressant macrolide FK506, which shows neuroregenerative and neuroprotective actions by a still unknown mechanism. In this study, we demonstrate that in both, undifferentiated neuroblastoma cells and embryonic hippocampal neurons, the FKBP52*hsp90*p23 heterocomplex concentrates in a perinuclear structure. Upon cell stimulation with FK506, this structure disassembles and this perinuclear area becomes transcriptionally active. The acquisition of a neuronal phenotype is accompanied by increased expression of betaIII-tubulin, Map-2, Tau-1, but also hsp90, hsp70, p23, and FKBP52. During the early differentiation steps, the perinuclear heterocomplex redistributes along the cytoplasm and nascent neurites, p23 binds to intermediate filaments and microtubules acquired higher filamentary organization. While FKBP52 moves towards neurites and concentrates in arborization bodies and terminal axons, FKBP51, whose expression remains constant, replaces FKBP52 in the perinuclear structure. Importantly, neurite outgrowth is favored by FKBP52 over-expression or FKBP51 knock-down, and is impaired by FKBP52 knock-down or FKBP51 over-expression, indicating that the balance between these FK506-binding proteins plays a key role during the early mechanism of neuronal differentiation.
机译:FKBP51和FKBP52(FK506结合蛋白51和52)是属于与类固醇受体结合的四肽-蛋白质* hsp90 * hsp70 * p23异源复合物的四肽三肽重复域免疫亲和素。免疫亲和素与受体折叠,亚细胞定位和激素依赖性转录有关。此外,它们还结合了免疫抑制剂大环内酯FK506,该大环内酯FK506通过未知的机制显示出神经再生和神经保护作用。在这项研究中,我们证明了在未分化的神经母细胞瘤细胞和胚胎海马神经元中,FKBP52 * hsp90 * p23异源复合物都集中在核周结构中。在用FK506刺激细胞后,该结构解体,该核周区域变得转录活跃。神经元表型的获得伴随着βIII-微管蛋白,Map-2,Tau-1以及hsp90,hsp70,p23和FKBP52表达的增加。在早期分化步骤中,核周异质复合物沿细胞质和新生神经突重新分布,p23结合至中间丝和微管,获得更高的丝组织。当FKBP52趋向神经突并集中在乔木体和末端轴突中时,其表达保持不变的FKBP51取代了核周结构中的FKBP52。重要的是,FKBP52过度表达或FKBP51敲低有利于神经突生长,FKBP52敲低或FKBP51过度表达会损害神经突生长,表明这些FK506结合蛋白之间的平衡在早期机制中起关键作用。神经元分化。

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