Non-genetic control of cell plasticity and phenotypic cell states is mediated by cytoplasmic IncRNA nucleated signalling pathways
PORTAL, M. M.; Shlyakhtina, Y.; Bloechl, B.; Moran, K. L.; Maslakova, A.; Carragher, N.; Munro, A. F.; Johnson, R. B.
Show abstract
Cell plasticity, the ability that cells display to rapidly adapt to environmental cues, is thought to be encoded in non-genetic information reservoirs. Although the notion is widely acknowledged, the molecular details underlying this phenomenon remain largely concealed. Herein, we show that clonal cell populations inherently display multiple co-existing metastable gene expression states that co-segregate with various phenotypic outputs. Moreover, we provide primer evidence suggesting that transcriptome states are inherited, dynamically interconvert and determine phenotypic output upon a variety of biological cues, not as a result of transcriptional shifts, but rather through yet unidentified post-transcriptional mechanisms. Remarkably, among phenotypically divergent clonal cell populations enriched in subsets of transcriptome states, we identified a peri-nuclear cytoplasmic structure (Signal Integration Portal - SIP) where state-specific lncRNAs, proteins harbouring intrinsically disordered regions and various active signalling pathways converge. Herein, we propose that SIP-condensates act as nucleating reservoir of non-genetic information at the crossroads of cell plasticity and non-genetic heterogeneity where they integrate intra- and extracellular inputs thereby moulding phenotypic output.
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