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A Functional Dissection of the mRNA and Locally Synthesized Protein Population in Neuronal Dendrites and Axons
Annual Review of Genetics ( IF 8.7 ) Pub Date : 2021-11-23 , DOI: 10.1146/annurev-genet-030321-054851
Julio D Perez 1 , Claudia M Fusco 1 , Erin M Schuman 1
Affiliation  

Neurons are characterized by a complex morphology that enables the generation of subcellular compartments with unique biochemical and biophysical properties, such as dendrites, axons, and synapses. To sustain these different compartments and carry a wide array of elaborate operations, neurons express a diverse repertoire of gene products. Extensive regulation at both the messenger RNA (mRNA) and protein levels allows for the differentiation of subcellular compartments as well as numerous forms of plasticity in response to variable stimuli. Among the multiple mechanisms that control cellular functions, mRNA translation is manipulated by neurons to regulate where and when a protein emerges. Interestingly, transcriptomic and translatomic profiles of both dendrites and axons have revealed that the mRNA population only partially predicts the local protein population and that this relation significantly varies between different gene groups. Here, we describe the space that local translation occupies within the large molecular and regulatory complexity of neurons, in contrast to other modes of regulation. We then discuss the specialized organization of mRNAs within different neuronal compartments, as revealed by profiles of the local transcriptome. Finally, we discuss the features and functional implications of both locally correlated—and anticorrelated—mRNA-protein relations both under baseline conditions and during synaptic plasticity.

中文翻译:


神经元树突和轴突中 mRNA 和局部合成蛋白群的功能解剖

神经元具有复杂的形态特征,能够产生具有独特生化和生物物理特性的亚细胞区室,例如树突、轴突和突触。为了维持这些不同的隔间并进行广泛的精细操作,神经元表达了多种基因产物。信使 RNA (mRNA) 和蛋白质水平的广泛调节允许亚细胞区室的分化以及响应可变刺激的多种形式的可塑性。在控制细胞功能的多种机制中,mRNA 翻译由神经元操纵,以调节蛋白质出现的地点和时间。有趣的是,树突和轴突的转录组学和翻译组学特征表明,mRNA 群体只能部分预测局部蛋白质群体,并且这种关系在不同基因组之间存在显着差异。在这里,我们描述了局部翻译在神经元的大分子和调节复杂性中占据的空间,与其他调节模式相比。然后,我们讨论了不同神经元隔室中 mRNA 的专门组织,正如局部转录组的概况所揭示的那样。最后,我们讨论了在基线条件和突触可塑性期间局部相关和反相关 mRNA-蛋白质关系的特征和功能含义。我们描述了局部翻译在神经元的大分子和调节复杂性中占据的空间,与其他调节模式相比。然后,我们讨论了不同神经元隔室中 mRNA 的专门组织,正如局部转录组的概况所揭示的那样。最后,我们讨论了在基线条件和突触可塑性期间局部相关和反相关 mRNA-蛋白质关系的特征和功能含义。我们描述了局部翻译在神经元的大分子和调节复杂性中占据的空间,与其他调节模式相比。然后,我们讨论了不同神经元隔室中 mRNA 的专门组织,正如局部转录组的概况所揭示的那样。最后,我们讨论了在基线条件和突触可塑性期间局部相关和反相关 mRNA-蛋白质关系的特征和功能含义。

更新日期:2021-11-24
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