细胞蛋白蛋白水解产物对神经发生和脑血管生成的调节

E. A. Teplyashina, Y. Komleva, E. V. Lychkovskaya, A. S. Deikhina, A. Salmina
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引用次数: 1

摘要

大脑发育是一个独特的过程,其机制被定义为神经可塑性(突触发生、突触消除、神经发生和大脑血管生成)。许多神经发育障碍、脑损伤和衰老表现为异常神经可塑性引起的神经功能缺陷。大脑神经源性小生境中干细胞和祖细胞的存在负责形成能够整合到先前存在的突触组装中的新神经元。神经源性生态位内细胞的决定因素是血管支架的活性和建立最佳微环境的活性调节分子的可用性。研究发现,调节的膜内蛋白水解在控制脑神经原生态位的神经发生中起着重要作用。由特定蛋白酶活性产生的分子可以刺激或抑制神经干细胞和祖细胞的活性、它们的增殖和分化、迁移以及新形成的神经元整合到突触网络中。局部新生血管生成支持神经源性小生境中的神经发生过程,这是由跨膜蛋白形成的肽的多价作用所保证的。鉴定调节神经可塑性(神经发生和血管生成)的新分子。即酶、底物和膜内蛋白水解产物,将确保开发检测神经可塑性标志物和有效药理学调节靶点的方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulation of neurogenesis and cerebral angiogenesis by cell protein proteolysis products
Brain development is a unique process characterized by mechanisms defined as neuroplasticity (synaptogenesis, synapse elimination, neurogenesis, and cerebral angiogenesis). Numerous neurodevelopmental disorders brain damage, and aging are manifested by neurological deficits that are caused by aberrant neuroplasticity. The presence of stem and progenitor cells in neurogenic niches of the brain is responsible for the formation of new neurons capable of integrating into preexisting synaptic assemblies. The determining factors for the cells within the neurogenic niche are the activity of the vascular scaffold and the availability of active regulatory molecules that establish the optimal microenvironment. It has been found that regulated intramembrane proteolysis plays an important role in the control of neurogenesis in brain neurogenic niches. Molecules generated by the activity of specific proteases can stimulate or suppress the activity of neural stem and progenitor cells, their proliferation and differentiation, migration and integration of newly formed neurons into synaptic networks. Local neoangiogenesis supports the processes of neurogenesis in neurogenic niches, which is guaranteed by the multivalent action of peptides formed from transmembrane proteins. Identification of new molecules regulating the neuroplasticity (neurogenesis and angiogenesis). i. e. enzymes, substrates, and products of intramembrane proteolysis, will ensure the development of protocols for detecting the neuroplasticity markers and targets for efficient pharmacological modulation.
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来源期刊
CiteScore
0.50
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发文量
43
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