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首页> 外文期刊>Trends in Neurosciences >Mitochondrial synapses: intracellular communication and signal integration
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Mitochondrial synapses: intracellular communication and signal integration

机译:线粒体突触:细胞内通讯和信号整合

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Communication is a central theme in biology. Consequently, specialized structures have evolved to permit rapid communication among cells, tissues, organs, and physiological systems, thus enhancing the overall function and adaptation of the organism. A prime example is the neuronal synapse. In the brain, synaptic communication establishes neuronal networks with the capacity to integrate, process, and store information, giving rise to complex output signals capable of orchestrating functions across the organism. At the intracellular level, discoveries now reveal the existence of 'mitochondrial synapses' establishing mitochondrial networks, with defined chromatin-modifying mitochondrial output signals capable of orchestrating gene expression across the genome. These discoveries raise the possibility that in addition to their role as powerhouses and neuromodulators, mitochondria behave as intracellular signal-processing networks.
机译:交流是生物学的中心主题。因此,已经进化出专门的结构以允许细胞,组织,器官和生理系统之间的快速通讯,从而增强了生物的整体功能和适应性。一个主要的例子是神经元突触。在大脑中,突触通讯建立了具有整合,处理和存储信息能力的神经元网络,从而产生了能够协调整个生物体功能的复杂输出信号。在细胞内水平上,发现现在揭示了建立线粒体网络的“线粒体突触”的存在,具有确定的染色质修饰线粒体输出信号,能够协调整个基因组中的基因表达。这些发现增加了线粒体除了充当动力和神经调节剂的作用外还充当细胞内信号处理网络的可能性。

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