AUTHOR=García-Corzo Laura , Calatayud-Baselga Isabel , Casares-Crespo Lucía , Mora-Martínez Carlos , Julián Escribano-Saiz Juan , Hortigüela Rafael , Asenjo-Martínez Andrea , Jordán-Pla Antonio , Ercoli Stefano , Flames Nuria , López-Alonso Victoria , Vilar Marçal , Mira Helena TITLE=The transcription factor LEF1 interacts with NFIX and switches isoforms during adult hippocampal neural stem cell quiescence JOURNAL=Frontiers in Cell and Developmental Biology VOLUME=10 YEAR=2022 URL=https://www.frontiersin.org/journals/cell-and-developmental-biology/articles/10.3389/fcell.2022.912319 DOI=10.3389/fcell.2022.912319 ISSN=2296-634X ABSTRACT=
Stem cells in adult mammalian tissues are held in a reversible resting state, known as quiescence, for prolonged periods of time. Recent studies have greatly increased our understanding of the epigenetic and transcriptional landscapes that underlie stem cell quiescence. However, the transcription factor code that actively maintains the quiescence program remains poorly defined. Similarly, alternative splicing events affecting transcription factors in stem cell quiescence have been overlooked. Here we show that the transcription factor T-cell factor/lymphoid enhancer factor LEF1, a central player in canonical β-catenin-dependent Wnt signalling, undergoes alternative splicing and switches isoforms in quiescent neural stem cells. We found that active β-catenin and its partner LEF1 accumulated in quiescent hippocampal neural stem and progenitor cell (Q-NSPC) cultures. Accordingly, Q-NSPCs showed enhanced TCF/LEF1-driven transcription and a basal Wnt activity that conferred a functional advantage to the cultured cells in a Wnt-dependent assay. At a mechanistic level, we found a fine regulation of