<HashMap><database>JPOST Repository</database><file_versions><headers><Content-Type>application/xml</Content-Type></headers><body><files><Xlsx>https://storage.jpostdb.org/JPST001509/files/Supplementary%20table%201.%20Differential%20phosphoproteomics.xlsx</Xlsx><Txt>https://storage.jpostdb.org/JPST001509/files/msmsScans.txt</Txt><Txt>https://storage.jpostdb.org/JPST001509/files/msms.txt</Txt><Txt>https://storage.jpostdb.org/JPST001509/files/proteinGroups.txt</Txt><Raw>https://storage.jpostdb.org/JPST001509/files/238_Phospho_WT-2.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_Phospho_WT-4.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_Phospho_PS19-2.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_LF_PS19-2.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_LF_WT-1.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_LF_WT-2.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_Phospho_PS19-4.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_LF_WT-4.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_LF_PS19-4.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_Phospho_PS19-3.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_Phospho_WT-3.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_Phospho_PS19-1.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_LF_PS19-1.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_LF_WT-3.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_LF_PS19-3.raw</Raw><Raw>https://storage.jpostdb.org/JPST001509/files/238_Phospho_WT-1.raw</Raw></files><type>primary</type></body><statusCode>OK</statusCode><statusCodeValue>200</statusCodeValue></file_versions><scores/><additional><omics_type>Proteomics</omics_type><submitter>Isidro Ferrer</submitter><species>Mus Musculus (mouse)</species><full_dataset_link>https://repository.jpostdb.org/entry/JPST001509</full_dataset_link><submitter_affiliation>Navarrabiomed</submitter_affiliation><sample_protocol></sample_protocol><repository>jPOST</repository><data_protocol></data_protocol><name_synonyms>Tauopathy., tauopathy, Peptidomics</name_synonyms><description_synonyms>the brain, Ten-mc., 3.4.22.-, suprasegmental structures, 5301, left hemisphere, odd(Oz), Laboratory, Mus domesticus, CASP14, mouse, CG5723, mini-ICE, CASP-14, Ten[m], Spectrum Analyses, l(3)05309, encephalon, House Mouse, Spectrum Analysis, Ten79E, Spectroscopy, Odz, DmelCG5723, MS, House, Mus, Mini-ICE, ten-m, Mass, Mus musculus domesticus, synganglion, Analysis, Mice, Mass Spectrum Analyses, Mass Spectroscopy, Mass Spectrum Analysis, Mus musculus, Mass Spectrum, odz, CT16449, l(3)rP126, Caspase-14 subunit p10, Analyses, l(3)rL201, Swiss, mice, Encephalon, Swiss Mouse, Spectrometry, ten-m/odz, House Mice, Swiss Mice, Caspase-14 subunit p19, suprasegmental levels of nervous system, MICE, ten[m], BcDNA:AT25108, l(3)rJ307, free, Laboratory Mice, domesticus, l(3)05301, label, odz/ten-m, ten(m), 2017, Mouse, Laboratory Mouse, Proteomes, l(3)00844, CG11452</description_synonyms></additional><is_claimable>false</is_claimable><name>Proteomics in a tauopathy model</name><description>Brain samples of the anterior left hemisphere from WT and P301S mice (n = 4) were subjected to phosphoproteomics. The (phospho)proteomes and the corresponding proteomes were independently analyzed by conventional label-free (montoya et al., 2011) and SWATH-MS (Sequential window acquisition of all theoretical fragment ion spectra mass spectrometry) (Collins et al., 2017), respectively. </description><dates><publication>Thu May 18 00:00:00 BST 2023</publication></dates><accession>PXD031961</accession><cross_references><TAXONOMY>10090</TAXONOMY></cross_references></HashMap>