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Homeoprotein transduction in neurodevelopment and physiopathology

机译:内科蛋白转导在神经发育和生理病理学中

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Homeoproteins were originally identified for embryonic cell–autonomous transcription activity, but they also have non–cell-autonomous activity owing to transfer between cells. This Review discusses transfer mechanisms and focuses on some established functions, such as neurodevelopmental regulation of axon guidance, and postnatal critical periods of brain plasticity that affect sensory processing and cognition. Homeoproteins are present across all eukaryotes, and intercellular transfer occurs in plants and animals. Proposed functions have evolutionary relevance, such as morphogenetic activity and sexual exchange during the mating of unicellular eukaryotes, while others have physiopathological relevance, such as regulation of mood and cognition by influencing brain compartmentalization, connectivity, and plasticity. There are more than 250 known homeoproteins with conserved transfer domains, suggesting that this is a common mode of signal transduction but with many undiscovered functions.
机译:最初鉴定出潜水蛋白,用于胚胎细胞 - 自主转录活性,但由于细胞之间的转移,它们也具有非细胞自主活动。该审查讨论了转移机制,重点介绍了一些既定的功能,如神经发育调节的轴突引导,以及影响感官加工和认知的脑塑性的后关键期。所有真核生物存在的级蛋白蛋白存在,并且在植物和动物中发生细胞间转移。拟议的功能具有进化相关性,例如在单细胞真核生物交配期间的形态发生活性和性交换,而其他人具有生理病理学相关性,例如通过影响大脑分区,连通性和可塑性来调节情绪和认知。有超过250个具有保守转移域的寄生虫,这表明这是一种常见的信号转导模式,但具有许多未被发现的功能。

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