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Bhowmick, C.

Publications and source records attributed to Bhowmick, C..

2 recordsLinked to original sources

UCA1 lncRNA represses γ-globin expression by sequestering miR-148b, a key post-transcriptional regulator of BCL11A

Fetal hemoglobin (HbF; 2{gamma}2) reactivation is a promising strategy to ameliorate {beta}-hemoglobinopathies. However, limited understanding of {gamma}-globin (HBG1/2) regulation constrains development of therapeutic interventions. BCL11A, a key transcriptional repressor of {gamma}-globin, is central to HbF silencing during adult erythropoiesis. Here, we identify a new post-transcriptional regulatory mechanism involving the lncRNA-UCA1 and miR-148b that modulates BCL11A expression. Using UCA1 knockdown and overexpression strategies, combined with in vivo crosslinking and transcriptomic analyses, we demonstrate that UCA1 functions as a competing endogenous RNA (ceRNA), sequestering miR-148b and thereby attenuating its repressive effect on BCL11A. In the present study, we have elucidated the physiological significance of this interaction in adult erythroid cells, including CD34 HSPCs and HUDEP-2 cells, in which UCA1 depletion led to robust {gamma}-globin induction, a phenotype recapitulated by miR-148b overexpression. These findings uncover a previously unrecognized lncRNA-miRNA-mRNA regulatory axis and highlight the UCA1/miR-148b axis as a potential therapeutic target for HbF reactivation in {beta}-hemoglobinopathies.

genetics↗

Debunking the "junk": Unraveling the role of lncRNA-miRNA-mRNA networks in fetal hemoglobin regulation

Fetal hemoglobin (HbF) induction is considered to be a promising therapeutic strategy to ameliorate the clinical severity of {beta}-hemoglobin disorders, and has gained a significant amount of attention in recent times. Despite the enormous efforts towards the pharmacological intervention of HbF reactivation, progress has been stymied due to limited understanding of {gamma}-globin gene regulation. In this study, we intended to investigate the implications of lncRNA-associated competing endogenous RNA (ceRNA) interactions in HbF regulation. Probe repurposing strategies for extraction of lncRNA signatures and subsequent in silico analysis on publicly available datasets (GSE13284, GSE71935 and GSE7874) enabled us to identify 46 differentially expressed lncRNAs (DElncRNAs). Further, an optimum set of 11 lncRNAs that could distinguish between high HbF and normal conditions were predicted from these DElncRNAs using supervised machine learning and a stepwise selection model. The candidate lncRNAs were then linked with differentially expressed miRNAs and mRNAs to identify lncRNA-miRNA-mRNA ceRNA networks. The network revealed that 2 lncRNAs (UCA1 and ZEB1-AS1) and 4 miRNAs (hsa-miR-19b-3p,hsa-miR-3646,hsa-miR-937 and hsa-miR-548j) sequentially mediate cross-talk among different signaling pathways which provide novel insights into the lncRNA-mediated regulatory mechanisms, and thus lay the foundation of future studies to identify lncRNA-mediated therapeutic targets for HbF reactivation.

bioinformatics↗