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Lester, E.

Publications and source records attributed to Lester, E..

3 recordsLinked to original sources

Cytosolic condensates enriched in polyserine repeats are preferred sites of tau fiber propagation

Tau aggregates are a hallmark of multiple neurodegenerative diseases and can contain RNAs and RNA binding proteins, including SRRM2 and PNN. How these resident nuclear proteins mislocalize and their influence on the prion-like propagation of tau fibers remains unknown. We demonstrate that polyserine repeats in SRRM2 and PNN are necessary and sufficient for recruitment to tau aggregates. Moreover, we demonstrate tau fibers preferentially grow in association with endogenous cytoplasmic assemblies - mitotic interchromatin granules and cytoplasmic speckles - which contain SRRM2 and PNN. Polyserine undergoes self-assembly in vitro and in cells, where polyserine-assemblies are sites of tau fiber propagation. Modulating the levels of polyserine containing proteins results in a corresponding change in tau aggregation. These findings define a specific protein motif, and cellular condensates, that promote tau fiber propagation. As cytoplasmic speckles form in iPSC neurons under inflammatory or hyperosmolar stress, they may promote tau fiber propagation in various neurodegenerative diseases.

neuroscience↗

RNA-BINDING PROTEINS DIRECT MYOGENIC CELL FATE DECISIONS

RNA-binding proteins (RBPs) are essential for skeletal muscle regeneration and RBP dysfunction causes muscle degeneration and neuromuscular disease. How ubiquitously expressed RBPs orchestrate complex tissue regeneration and direct cell fate decisions in skeletal muscle remains poorly understood. Single cell RNA-sequencing of regenerating skeletal muscle reveals that RBP expression, including numerous neuromuscular disease-associated RBPs, is temporally regulated in skeletal muscle stem cells and correlates to stages of myogenic differentiation. By combining machine learning with RBP engagement scoring, we discover that the neuromuscular disease associated RBP Hnrnpa2b1 is a differentiation-specifying regulator of myogenesis controlling myogenic cell fate transitions during terminal differentiation. The timing of RBP expression specifies cell fate transitions by providing a layer of post-transcriptional regulation needed to coordinate stem cell fate decisions during complex tissue regeneration.

molecular biology↗

Tau aggregates are RNA-protein assemblies that mis-localize multiple nuclear speckle components

Tau aggregates contribute to neurodegenerative diseases including frontotemporal dementia and Alzheimers disease (AD). Although RNA promotes tau aggregation in vitro, whether tau aggregates in cells contain RNA is unknown. We demonstrate in cell culture and mouse brains that both cytosolic and nuclear tau aggregates contain RNA, with enrichment for snRNAs and snoRNAs. Nuclear tau aggregates colocalize with and alter the composition, dynamics, and organization of nuclear speckles, which are membraneless organelles involved in pre-mRNA splicing. Moreover, several nuclear speckle components, including SRRM2, mislocalize to cytosolic tau aggregates in cells, mouse brains, and patient brains with AD, frontotemporal dementia (FTD), and corticobasal degeneration (CBD). Consistent with these alterations we observe the presence of tau aggregates is sufficient to alter pre-mRNA splicing. This work identifies tau alteration of nuclear speckles as a feature of tau aggregation that may contribute to the pathology of tau aggregates.

molecular biology↗