<HashMap><database>JPOST Repository</database><file_versions><headers><Content-Type>application/xml</Content-Type></headers><body><files><Raw>https://storage.jpostdb.org/JPST000409/files/032118-SDBXC-FT-20ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-SDBXC-FT-15ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/031118-IMAC-SDB.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-C18-FT-10ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-SDBXC-FT-5ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032418-3M-FT-10ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-C18-FT-15ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-SePAK-FT-15ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/20180301_PolyMAC_C18.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-C18-FT-20ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-SePAK-FT-20ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-SePAK-FT-10ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-C18-FT-5ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-SDBXC-FT-10ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/20180301_PolyMAC_SDB.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/20180301_PolyMAC_Gtip.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032418-3M-FT-15ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/032118-SePAK-FT-5ACN.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/031118-IMAC-C18.raw</Raw><Raw>https://storage.jpostdb.org/JPST000409/files/031118-IMAC-Graphite.raw</Raw></files><type>primary</type></body><statusCodeValue>200</statusCodeValue><statusCode>OK</statusCode></file_versions><scores/><additional><omics_type>Proteomics</omics_type><submitter>Dr. Yasushi Ishihama</submitter><species>Homo Sapiens (human)</species><species>Arabidopsis Thaliana (mouse-ear Cress)</species><full_dataset_link>https://repository.jpostdb.org/entry/JPST000409</full_dataset_link><submitter_affiliation>Purdue University</submitter_affiliation><sample_protocol></sample_protocol><repository>jPOST</repository><data_protocol></data_protocol><name_synonyms>CYH1, CG11633, cytohesin/GRP1, Phosphopeptide, Neural-specific protein-tyrosine phosphatase, GRP1/cytohesin 1, STEP, Step, CG11628, l(2)k08110, GRP1, Grp1, 3.1.3.48, PTPSTEP, l(2)SH2 0323, stepk, Striatum-enriched protein-tyrosine phosphatase, l(2)SH0323, DmelCG11628., GPH</name_synonyms><description_synonyms>Productivity, materials, Phosphopeptide.</description_synonyms></additional><is_claimable>false</is_claimable><name>Rescue hydrophilic phosphopeptides during desalting step</name><description>We compared the capture efficiency of different desalting materials for phosphopeptide identification.</description><dates><publication>Wed Mar 27 00:00:00 GMT 2019</publication></dates><accession>PXD009337</accession><cross_references><TAXONOMY>9606</TAXONOMY><TAXONOMY>3702</TAXONOMY></cross_references></HashMap>