Intracellular Compartmentalization: A Key Determinant of MicroRNA Functions.

Rohit Nalawade, Mohini Singh
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Abstract

Being an integral part of the eukaryotic transcriptome, miRNAs are regarded as vital regulators of diverse developmental and physiological processes. Clearly, miRNA activity is kept in check by various regulatory mechanisms that control their biogenesis and decay pathways. With the increasing technical depth of RNA profiling technologies, novel insights have unravelled the spatial diversity exhibited by miRNAs inside a cell. Compartmentalization of miRNAs adds complexity to the regulatory circuits of miRNA expression, thereby providing superior control over the miRNA function. This review provides a bird's eye view of miRNAs expressed in different subcellular locations, thus affecting the gene regulatory pathways therein. Occurrence of miRNAs in diverse intracellular locales also reveals various unconventional roles played by miRNAs in different cellular organelles and expands the scope of miRNA functions beyond their traditionally known repressive activities.

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细胞内分隔:微小核糖核酸功能的关键决定因素。
作为真核转录组的一个组成部分,miRNA被认为是不同发育和生理过程的重要调节因子。显然,miRNA的活性受到控制其生物发生和衰变途径的各种调节机制的控制。随着RNA图谱技术的技术深度不断增加,新的见解揭示了细胞内miRNA表现出的空间多样性。miRNA的区隔化增加了miRNA表达调控回路的复杂性,从而提供了对miRNA功能的卓越控制。这篇综述提供了miRNA在不同亚细胞位置表达的鸟瞰图,从而影响其中的基因调控途径。miRNA在不同细胞内位置的出现也揭示了miRNA在各种细胞器中发挥的各种非常规作用,并扩展了miRNA功能的范围,使其超出了传统已知的抑制活性。
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