首页> 外文会议>International Symposiumn on Thymosins in Health and Disease; 20070321-24; Washington,DC(US) >Neurotrophic Roles of the Beta-Thymosins in the Development and Regeneration of the Nervous System
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Neurotrophic Roles of the Beta-Thymosins in the Development and Regeneration of the Nervous System

机译:β-胸腺素在神经系统发育和再生中的神经营养作用。

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Beta-thymosins (Tβs) are polypeptides abundant in the cy-tosol, nucleus, and extracellular space of many cell types. In the nervous system, the expression of Tβs is regulated during the development of the central nervous system and following neuronal insults in cell-type and brain-region dependent manners, which may be related to the function of Tβs in the growth and regeneration of the nervous system. Supporting such a proposition, overexpression of Tβs in neurons has been shown to modify the axonal branches in vivo and neurite branches in vitro. These neurite-modifying functions have been suggested to be due to the activity of Tβs to bind actin. In addition, we recently observed that Tps suppressed the apoptotic neuronal death in chick embryos, and these functions might be mediated by the extracellularly secreted form(s) of Tβs. These results suggest that Tβs play neurotrophic roles in the neu-roprotection and neuronal growth/regeneration via their cytosolic actin-remodeling activity and extracellular antiapoptotic activity. Even though further verification is required, we also observed that Tβ15 was translocated into the injured neuronal nuclei, and this event appeared to be an eliminatory process of the injured cells. Therefore, treatment with Tβs or their related peptides appear to be beneficial for neuronal diseases by preventing neuronal death or promoting neuronal regeneration.
机译:β-胸腺素(Tβ)是在许多细胞类型的胞溶胶,细胞核和细胞外空间中丰富的多肽。在神经系统中,Tβs的表达在中枢神经系统发育过程中受到调节,并且在神经元受到细胞类型和脑区依赖性方式的侵害后可能受到调节,这可能与Tβs在其生长和再生中的功能有关。神经系统。支持这种主张,已经表明神经元中Tβ的过表达在体内修饰轴突分支而在体外修饰轴突分支。这些神经突修饰功能被认为归因于Tβ结合肌动蛋白的活性。此外,我们最近观察到Tps抑制了鸡胚凋亡神经元的死亡,而这些功能可能是由Tβ的细胞外分泌形式介导的。这些结果表明,Tβ通过其胞质肌动蛋白重塑活性和细胞外抗凋亡活性在神经保护和神经元生长/再生中发挥神经营养作用。即使需要进一步的验证,我们也观察到Tβ15易位到受损的神经元核中,该事件似乎是受损细胞的消除过程。因此,通过预防神经元死亡或促进神经元再生,用Tβs或其相关肽治疗似乎对神经元疾病有益。

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