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Biology subjects

Gallagher, E. R.

Publications and source records attributed to Gallagher, E. R..

2 recordsLinked to original sources

Determinants of Disordered Protein Co-Assembly Into Discrete Condensed Phases

Cells harbor numerous mesoscale membraneless compartments that house specific biochemical processes and perform distinct cellular functions. These protein and RNA-rich bodies are thought to form through multivalent interactions among proteins and nucleic acids resulting in demixing via liquid-liquid phase separation (LLPS). Proteins harboring intrinsically disordered regions (IDRs) predominate in membraneless organelles. However, it is not known whether IDR sequence alone can dictate the formation of distinct condensed phases. We identified a pair of IDRs capable of forming spatially distinct condensates when expressed in cells. When reconstituted in vitro, these model proteins do not co-partition, suggesting condensation specificity is encoded directly in the polypeptide sequences. Through computational modeling and mutagenesis, we identified the amino acids and chain properties governing homotypic and heterotypic interactions that direct selective condensation. These results form the basis of physicochemical principles that may direct subcellular organization of IDRs into specific condensates and reveal an IDR code that can guide construction of orthogonal membraneless compartments.

biophysics↗

The selective autophagy receptor p62 and the heat shock protein HSP27 facilitate lysophagy via the formation of phase-separated condensates

Lysosomes are membrane-bound organelles that regulate cellular proteostasis. Loss of lysosomal integrity initiates cell death pathways. Thus, cells must rely on quality control mechanisms for protection, including the selective isolation and degradation of damaged lysosomes by lysophagy. Here, we report that the selective autophagy receptor SQSTM1/p62 is an essential lysophagy receptor recruited to damaged lysosomes in both HeLa cells and neurons. p62 oligomers form liquid-like condensates that are critical in lysophagy. These condensates are regulated by the small heat shock protein HSP27, which binds p62 to prevent p62 aggregation and facilitate autophagosome formation. Mutations in p62 are implicated in Amyotrophic Lateral Sclerosis (ALS), and expression of ALS-associated mutations in p62 impair lysophagy, suggesting that deficits in this pathway may contribute to the cellular pathogenesis of ALS. Thus, p62 oligomers cooperate with HSP27 to promote lysophagy by forming a platform for autophagosome biogenesis at damaged lysosomes.

cell biology↗