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Neurotrophic Activity of Cultured Cell Line U87 is Up-Regulated by Proline-Rich Polypeptide Complex and Its Constituent Nonapeptide

机译:富含脯氨酸的多肽复合物及其组成的九肽上调培养的细胞系U87的神经营养活性

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摘要

Neurotrophins such as nerve growth factor (NGF) and brain-derived neurotrophic factor, as well as cytokines, for example, interleukin-6 (IL-6) play an important role in neuroprotection and in the control of the central nervous system (CNS) function. Reduced expression of neurotrophic factors can lead to dysregulation of neuron function and neuronal death. There is also evidence for mutual interactions between neurotrophins and IL-6. Therefore, the up-regulating the level of neuroprotective substances is one of the key manners to control the nervous system development and function. It can be a promising aim in the therapy of neurodegenerative disease in which the decreased level of neurotrophins is observed. In our recent studies, the role of proline-rich polypeptide complex (PRP) and its nonapeptide fragment (NP) in the regulation of neurotrophic activity in cultured astrocytes was shown. PRP and NP stimulate human astrocytoma cell line U87 to release the significant amounts of NGF to the extracellular space both in its precursor and mature form. We also provide the evidence that in NP-treated cells, the level of βNGF mRNA was increased. NP-treated cells used in this study produced also increasing amounts of IL-6. This finding indicates that PRP and its nonapeptide fragment NP up-regulate neurotrophic activity of U87 cell line by increase of NGF synthesis and its release into the extracellular space. It was also shown that NP-dependent increased production of IL-6 can enhance the NGF activity.
机译:神经营养因子,例如神经生长因子(NGF)和脑源性神经营养因子,以及细胞因子,例如白介素6(IL-6)在神经保护和控制中枢神经系统(CNS)中起重要作用功能。神经营养因子的表达减少会导致神经元功能失调和神经元死亡。也有证据表明神经营养蛋白和IL-6之间存在相互作用。因此,上调神经保护物质的含量是控制神经系统发育和功能的关键途径之一。在其中观察到神经营养蛋白水平降低的神经退行性疾病的治疗中,这可能是一个有希望的目标。在我们最近的研究中,显示了富含脯氨酸的多肽复合物(PRP)及其非肽片段(NP)在星形胶质细胞神经营养活性调节中的作用。 PRP和NP刺激人星形细胞瘤细胞系U87以其前体和成熟形式向细胞外空间释放大量NGF。我们还提供证据表明,在NP处理的细胞中,βNGFmRNA的水平增加了。这项研究中使用NP处理的细胞也产生了越来越多的IL-6。该发现表明,PRP及其非肽片段NP通过增加NGF合成并将其释放到细胞外空间而上调U87细胞系的神经营养活性。还显示出NP依赖性增加的IL-6产生可以增强NGF活性。

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