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Biology subjects

Jiwnani, N.

Publications and source records attributed to Jiwnani, N..

2 recordsLinked to original sources

Reprogramming mRNA localization by targeted RNA-protein interference

RNA binding proteins (RBPs) associate with RNAs in intricate ribonucleoprotein complexes and regulate various aspects of RNA life cycle and, by extension, cell functions. Despite their significance, elucidating the functional contributions of specific RNA-RBP binding events, particularly in long-term phenotypic assays, remains challenging. Here, we harness the specificity of CRISPR/dCas13 to interfere with specific RNA-RBP interactions. We apply this methodology to GA-rich mRNA localization elements which recruit the RNA-binding protein CNBP and serve as platforms for the assembly of mRNA trabicking complexes. We show that dCas13/gRNA binds to target transcripts in a highly specific manner and interferes with CNBP recruitment leading to altered target mRNA localization and cell motility, consistent with the function of the targeted mRNAs. We describe optimizations and considerations for the stable implementation of this system. We further use it to show that interfering with the localization of the GA-containing NET1 mRNA reduces cancer cell invasiveness and metastatic lung colonization. These data reveal a potential role for mRNA localization in oncogenic progression and illustrate how this CRISPR-based system can be used for longterm functional investigations of RNA-RBP interactions in vivo.

cell biology↗

Control of Epithelial Tissue Organization by mRNA Localization

mRNA localization to specific subcellular regions is common in mammalian cells but poorly understood in terms of its physiological roles1-6,7. This study demonstrates the functional importance of Net1 mRNA, which we find prominently localized at the dermal-epidermal junction (DEJ) in stratified squamous epithelia. Net1 mRNA accumulates at DEJ protrusion-like structures that interact with the basement membrane and connect to a mechanosensitive network of microfibrils. Disrupting Net1 mRNA localization in mouse epithelium alters DEJ morphology and keratinocyte-matrix connections, affecting tissue homeostasis. mRNA localization dictates Net1 protein distribution and its function as a RhoA GTPase exchange factor (GEF). Altered RhoA activity is in turn sufficient to alter the ultrastructure of the DEJ. This study provides a high-resolution in vivo view of mRNA targeting in a physiological context. It further demonstrates how the subcellular localization of a single mRNA can significantly influence mammalian epithelial tissue organization, thus revealing an unappreciated level of post-transcriptional regulation that controls tissue physiology.

cell biology↗