Subcellular mislocalization and aggregation of the human FUS protein occurs in neurons of patients with subtypes of amyotrophic lateral sclerosis and frontotemporal dementia. FUS is one of several RNA-binding proteins that can functionally self-associate into distinct liquid-phase droplet structures. It is postulated that aberrant interactions within the dense phase-separated state can potentiate FUS’s transition into solid prion-like aggregates that cause disease. FUS is post-translationally modified at numerous positions, which affect both its localization and aggregation propensity. These modifications may influence FUS-linked pathology and serve as therapeutic targets
Reversible phase separation underpins the role of FUS in ribonucleoprotein granules and other membra...
Fused in sarcoma (FUS) is a DNA/RNA binding protein that is involved in RNA metabolism and DNA repai...
Liquid-liquid phase separation of RNA-binding proteins mediates the formation of numerous membranele...
Subcellular mislocalization and aggregation of the human FUS protein occurs in neurons of patients w...
Many proteins contain disordered regions of low-sequence complexity, which cause aging-associated di...
SummaryMany proteins contain disordered regions of low-sequence complexity, which cause aging-associ...
Many proteins contain disordered regions of low-sequence complexity, which cause aging-associated di...
Summary: RNA-binding protein aggregation is a pathological hallmark of several neurodegenerative dis...
FUsed in Sarcoma (FUS) is a multifunctional RNA binding protein (RBP). FUS mutations lead to its cyt...
The discovery of a causative link between dysfunction of a number of RNA-binding proteins with prion...
Fused in sarcoma (FUS) belongs to the group of RNA-binding proteins implicated as underlying factors...
SummaryThe mechanisms by which mutations in FUS and other RNA binding proteins cause ALS and FTD rem...
Fused in sarcoma (FUS) is an RNA-binding protein involved in pathogenesis of several neurodegenerati...
TDP-43 and FUS are RNA-binding proteins that form cytoplasmic inclusions in some forms of amyotrophi...
Reversible phase separation underpins the role of FUS in ribonucleoprotein granules and other membra...
Reversible phase separation underpins the role of FUS in ribonucleoprotein granules and other membra...
Fused in sarcoma (FUS) is a DNA/RNA binding protein that is involved in RNA metabolism and DNA repai...
Liquid-liquid phase separation of RNA-binding proteins mediates the formation of numerous membranele...
Subcellular mislocalization and aggregation of the human FUS protein occurs in neurons of patients w...
Many proteins contain disordered regions of low-sequence complexity, which cause aging-associated di...
SummaryMany proteins contain disordered regions of low-sequence complexity, which cause aging-associ...
Many proteins contain disordered regions of low-sequence complexity, which cause aging-associated di...
Summary: RNA-binding protein aggregation is a pathological hallmark of several neurodegenerative dis...
FUsed in Sarcoma (FUS) is a multifunctional RNA binding protein (RBP). FUS mutations lead to its cyt...
The discovery of a causative link between dysfunction of a number of RNA-binding proteins with prion...
Fused in sarcoma (FUS) belongs to the group of RNA-binding proteins implicated as underlying factors...
SummaryThe mechanisms by which mutations in FUS and other RNA binding proteins cause ALS and FTD rem...
Fused in sarcoma (FUS) is an RNA-binding protein involved in pathogenesis of several neurodegenerati...
TDP-43 and FUS are RNA-binding proteins that form cytoplasmic inclusions in some forms of amyotrophi...
Reversible phase separation underpins the role of FUS in ribonucleoprotein granules and other membra...
Reversible phase separation underpins the role of FUS in ribonucleoprotein granules and other membra...
Fused in sarcoma (FUS) is a DNA/RNA binding protein that is involved in RNA metabolism and DNA repai...
Liquid-liquid phase separation of RNA-binding proteins mediates the formation of numerous membranele...