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Effect of hyperthermia on the transport of mRNA encoding the extracellular matrix glycoprotein SC1 into Bergmann glial cell processes.

机译:热疗对编码细胞外基质糖蛋白SC1的mRNA进入Bergmann胶质细胞过程的影响。

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摘要

SC1 is an extracellular matrix glycoprotein that is related to the multifunctional protein SPARC. These matricellular members play regulatory roles in modulating cellular interactions. SC1 expression is enriched in the central nervous system during embryonic and postnatal development as well as in the adult brain. In the rat cerebellum, SC1 is expressed at high levels in Bergmann glial cells and their radial fibers which project into the synaptic-rich molecular layer. At specific stages of development and in the adult, SC1 mRNA is selectively transported into cellular processes of these cells. In the present study, we have examined the effect of whole-body hyperthermia on the transport of SC1 mRNA in Bergmann glial cells of the rat cerebellum. Our results show that SC1 mRNA transport is diminished at 10 and 15 h post-hyperthermia, but returns to control levels by 24 h after heat shock. One of the characteristics of a heat shock on cells grown in tissue culture is a collapse of the cytoskeletal network. Intact components of the cytoskeleton are necessary for the transport of mRNA into peripheral processes of cells. However, in vivo hyperthermia does not appear to affect the morphology of the intermediate filament proteins GFAP, vimentin, or the beta-tubulin component of microtubules in Bergmann glial cell processes. During the hyperthermic time course, levels of vimentin protein increase, which is reflected by immunoreactivity of activated astrocytes and microvasculature in cerebellar white matter.
机译:SC1是一种细胞外基质糖蛋白,与多功能蛋白SPARC相关。这些母细胞成员在调节细胞相互作用中起调节作用。 SC1表达在胚胎和出生后发育以及成年大脑中富集于中枢神经系统。在大鼠小脑中,SC1在伯格曼神经胶质细胞及其放射状纤维中高水平表达,它们投射到富含突触的分子层中。在发育的特定阶段和成年后,SC1 mRNA选择性转运到这些细胞的细胞过程中。在本研究中,我们检查了全身热疗对大鼠小脑Bergmann胶质细胞中SC1 mRNA转运的影响。我们的结果表明,SC1 mRNA的运输在体温过高后10和15 h减少,但在热休克后24 h恢复到对照水平。对组织培养中生长的细胞进行热休克的特征之一是细胞骨架网络的崩溃。细胞骨架的完整成分是将mRNA转运到细胞外围过程中所必需的。但是,体内热疗似乎并未影响伯格曼神经胶质细胞过程中的中间丝蛋白GFAP,波形蛋白或微管的β-微管蛋白成分的形态。在高温时程中,波形蛋白蛋白水平增加,这通过小脑白质中活化的星形胶质细胞和微脉管系统的免疫反应性反映出来。

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