Proteomics

Dataset Information

0

BioID2-Synapsin proteome Soderling


ABSTRACT: To determine the proteome of presynaptic terminals based on a BioID2-synapsin probe.

INSTRUMENT(S): Orbitrap Fusion Lumos

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Brain

SUBMITTER: Erik Soderblom  

LAB HEAD: Erik Soderblom

PROVIDER: PXD019342 | Pride | 2021-07-15

REPOSITORIES: Pride

Dataset's files

Source:
Action DRS
ID37387_01_FSN20357_4991_033018.mgf Mgf
ID37387_01_FSN20357_4991_033018.raw Raw
ID37388_01_FSN20357_4991_033018.mgf Mgf
ID37388_01_FSN20357_4991_033018.raw Raw
ID37389_01_FSN20357_4991_033018.mgf Mgf
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Publications

Genetic disruption of WASHC4 drives endo-lysosomal dysfunction and cognitive-movement impairments in mice and humans.

Courtland Jamie L JL   Bradshaw Tyler Wa TW   Waitt Greg G   Soderblom Erik J EJ   Ho Tricia T   Rajab Anna A   Vancini Ricardo R   Kim Il Hwan IH   Soderling Scott H SH  

eLife 20210322


Mutation of the Wiskott-Aldrich syndrome protein and SCAR homology (WASH) complex subunit, SWIP, is implicated in human intellectual disability, but the cellular etiology of this association is unknown. We identify the neuronal WASH complex proteome, revealing a network of endosomal proteins. To uncover how dysfunction of endosomal SWIP leads to disease, we generate a mouse model of the human <i>WASHC4<sup>c.3056C>G</sup></i> mutation. Quantitative spatial proteomics analysis of SWIP<sup>P1019R<  ...[more]

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