Search bioRxiv⌕ Search

Biology subjects

Galesic, A. G.

Publications and source records attributed to Galesic, A. G..

1 recordsLinked to original sources

Alpha-Synuclein aggregates inhibit ESCRT-III through sequestration and collateral degradation

-Synuclein aggregation is a hallmark of Parkinsons disease and related synucleinopathies. Extracellular -synuclein fibrils enter naive cells via endocytosis, followed by transit into the cytoplasm to seed endogenous -synuclein aggregation. Intracellular aggregates sequester numerous proteins, including subunits of the ESCRT-III system for endolysosome membrane repair, but the toxic effects of these events remain poorly understood. Using cellular models and in vitro reconstitution, we found that -synuclein fibrils interact with an -helix common to ESCRT-III proteins. This interaction results in sequestration of ESCRT-III subunits and triggers their proteasomal destruction in a process of "collateral degradation." These twin mechanisms deplete the available ESCRT-III pool, initiating a toxic feedback loop. The ensuing loss of ESCRT function compromises endolysosome membranes, thereby facilitating escape of aggregate seeds into the cytoplasm, which in turn increases aggregation and ESCRT-III sequestration. We suggest that collateral degradation and triggering of self-perpetuating systems could be general mechanisms of sequestration-induced proteotoxicity. HIGHLIGHTSO_LI-Synuclein fibrils bind and sequester ESCRT-III endolysosome repair proteins C_LIO_LIAn -helical segment common to ESCRT-III mediates fibril-selective interaction C_LIO_LIFibril-bound ESCRT-III subunits undergo "collateral degradation" via the proteasome C_LIO_LIESCRT-III depletion damages endolysosomes and worsens -synuclein aggregation C_LI

biochemistry↗