Loukas Ioannis, Skamnelou Margarita, Tsaridou Stavroula, Bournaka Spyridoula, Grigoriadis Sokratis, Taraviras Stavros, Lygerou Zoi, Arbi Marina
Laboratory of Biology, School of Medicine, University of Patras, Rio, Patras, 26504, Greece.
Laboratory of Physiology, School of Medicine, University of Patras, Rio, Patras, 26504, Greece.
Biol Rev Camb Philos Soc. 2021 Oct;96(5):2321-2332. doi: 10.1111/brv.12755. Epub 2021 Jun 15.
Cell differentiation is a process that must be precisely regulated for the maintenance of tissue homeostasis. Differentiation towards a multiciliated cell fate is characterized by well-defined stages, where a transcriptional cascade is activated leading to the formation of multiple centrioles and cilia. Centrioles migrate and dock to the apical cell surface and, acting as basal bodies, give rise to multiple motile cilia. The concerted movement of cilia ensures directional fluid flow across epithelia and defects either in their number or structure can lead to disease phenotypes. Micro-RNAs (miRNAs; miRs) are small, non-coding RNA molecules that play an important role in post-transcriptional regulation of gene expression. miR-34b/c and miR-449a/b/c specifically function throughout the differentiation of multiciliated cells, fine-tuning the expression of many different centriole- and cilia-related genes. They strictly regulate the expression levels of genes that are required both for commitment towards the multiciliated cell fate (e.g. Notch) and for the establishment and maintenance of this fate by regulating the expression of transcription factors and structural components of the pathway. Herein we review miR-34 and miR-449 spatiotemporal regulation along with their roles during the different stages of multiciliogenesis.
细胞分化是一个必须被精确调控以维持组织稳态的过程。向多纤毛细胞命运的分化具有明确的阶段特征,在此过程中,一个转录级联反应被激活,导致多个中心粒和纤毛的形成。中心粒迁移并对接至细胞顶端表面,作为基体产生多个运动性纤毛。纤毛的协同运动确保上皮细胞表面的定向液体流动,其数量或结构的缺陷均可导致疾病表型。微小RNA(miRNA;miR)是小的非编码RNA分子,在基因表达的转录后调控中发挥重要作用。miR-34b/c和miR-449a/b/c在多纤毛细胞的整个分化过程中具有特定功能,可微调许多不同的与中心粒和纤毛相关基因的表达。它们通过调节转录因子和该信号通路结构成分的表达,严格调控决定多纤毛细胞命运所需基因(如Notch)以及建立和维持该命运所需基因的表达水平。在此,我们综述miR-34和miR-449的时空调控及其在多纤毛发生不同阶段的作用。