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Neuronal Plasticity: How Memes Control Genes

机译:神经元可塑性:模因控制基因。

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This paper gives a outline of the operational steps by which perceived patterns of behavior are transduced from peripheral sensors to the central nervous system, and then to synaptic and intra-neuronal mechanisms called Signal Transduction Pathways (STPs). STPs control cyclic AMP molecules that activate transcription factors leading to differential desinhibition of genes. One of the consequences of the expression of such genes, besides the production of proteins present in the previously activated STPs, is the activation of neural trophic factors (NTFs) that control dendritic growth, and therefore contribute to shape the morphology and patterns of neural connectivity in the brain. As this morphology and dynamical connections influence the behavior of the individual in the social context, a dynamic rapport between cultural patterns ("memes") and his/her genetic system can be established in epigenesis.
机译:本文概述了操作步骤,通过这些操作步骤,可将感知到的行为模式从外围传感器转换为中枢神经系统,然后转换为称为信号转导通路(STP)的突触和神经内机制。 STP控制激活转录因子的环状AMP分子,从而导致基因的差异去抑制。除了先前激活的STP中存在的蛋白质的产生外,此类基因表达的后果之一是神经营养因子(NTF)的激活,这些营养因子控制树突状细胞的生长,因此有助于塑造神经连接的形态和模式在大脑中。由于这种形态和动态联系会影响个体在社会环境中的行为,因此可以在表观遗传学中建立文化模式(“模因”)与其遗传系统之间的动态融洽关系。

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