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Listing palmitoyl-proteome studies

33 articles and 40 studies.
HC = High confidence, MC= Medium confidence, LC = Low confidence
ID Title Authors Year Organism Cell type Subcellular fraction Techniques In vitro # of hits Sites
160 Quantitative control of protein S-palmitoylation regulates meiotic entry in fission yeast. Zhang MM et al. 2013 Schizosaccharomyces pombe Whole organism Total cell lysate Labeling of substrate with 17-ODYA (17-octadecynoic acid) No 238 Show
162 Analysis of protein palmitoylation reveals a pervasive role in Plasmodium development and pathogenesis. Jones ML et al. 2012 Plasmodium falciparum (isolate 3D7) Whole organism Total cell lysate ABE (Acyl-Biotin Exchange) No HC: 100
LC: 217
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184 Insulin-Regulated Protein Palmitoylation Impacts Endothelial Cell Function. Wei X et al. 2013 Homo sapiens HUVEC Total cell lysate ABE (Acyl-Biotin Exchange) No 367
Palm decreased: 40
Palm increased: 33
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119 Tracking Brain Palmitoylation Change: Predominance of Glial Change in a Mouse Model of Huntington's Disease. Wan J et al. 2013 Mus musculus Brain Total cell lysate ABE (Acyl-Biotin Exchange) No 378 Show
14 Global analysis of protein palmitoylation in yeast. Roth AF et al. 2006 Saccharomyces cerevisiae (strain ATCC 204508 / S288c) Isogenic LRB759 Total membrane ABE (Acyl-Biotin Exchange) No HC: 48 Show
13 Neural palmitoyl-proteomics reveals dynamic synaptic palmitoylation. Kang R et al. 2008 Rattus norvegicus Cortical neuron Synaptosomal membrane ABE (Acyl-Biotin Exchange) No LC: 308
HC: 107
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6 Large-scale profiling of protein palmitoylation in mammalian cells. Martin BR et al. 2009 Homo sapiens Jurkat Total membrane Labeling of substrate with 17-ODYA (17-octadecynoic acid) No LC: 188
HC: 127
0
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2 Proteomic analysis of palmitoylated platelet proteins. Dowal L et al. 2011 Homo sapiens Platelet Total membrane ABE (Acyl-Biotin Exchange) No 214 Q86YW5 [1] Show
723 Correlated S-palmitoylation profiling of Snail-induced epithelial to mesenchymal transition. Hernandez JL et al. 2016 Homo sapiens MCF7 Total cell lysate Labeling of substrate with alk16 No 1353 Show
698 Decreased protein S-palmitoylation in dorsolateral prefrontal cortex in schizophrenia. Pinner AL et al. 2016 Homo sapiens Brain Total cell lysate ABE (Acyl-Biotin Exchange) No 216 Show
724 Identification of Palmitoylated Transitional Endoplasmic Reticulum ATPase by Proteomic Technique and Pan Antipalmitoylation Antibody. Fang C et al. 2016 Homo sapiens SW480 To be annotated Acyl RAC No 100 Show
10 Palmitoylome profiling reveals S-palmitoylation-dependent antiviral activity of IFITM3. Yount JS et al. 2010 Mus musculus Dendritic cell Total cell lysate Labeling of substrate with 17-ODYA (17-octadecynoic acid) No LC: 105
HC: 59
Q01628 [3] Show
510 A Single Protein S-acyl Transferase Acts through Diverse Substrates to Determine Cryptococcal Morphology, Stress Tolerance, and Pathogenic Outcome. Santiago-Tirado FH et al. 2015 Cryptococcus neoformans var. grubii serotype A (strain H99 / ATCC 208821 / CBS 10515 / FGSC 9487) To be annotated Total cell lysate Labeling of substrate with 17-ODYA (17-octadecynoic acid) No 354 Show
577 Proteome scale characterization of human S-acylated proteins in lipid raft-enriched and non-raft membranes. Yang W et al. 2010 Homo sapiens DU145 Non-lipid raft ABE (Acyl-Biotin Exchange) No HC: 63
LC: 147
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578 Proteome scale characterization of human S-acylated proteins in lipid raft-enriched and non-raft membranes. Yang W et al. 2010 Homo sapiens DU145 Lipid raft ABE (Acyl-Biotin Exchange) No HC: 102
LC: 73
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529 Bioorthogonal mimetics of palmitoyl-CoA and myristoyl-CoA and their subsequent isolation by click chemistry and characterization by mass spectrometry reveal novel acylated host-proteins modified by HIV-1 infection. Colquhoun DR et al. 2015 Homo sapiens 174 x CEM.T1 Total cell lysate Labeling of substrate with 15-Azidopentadecanoic Acid (Click-IT Palmitic Acid) No 113 Show
506 Quantitative analysis of the human T cell palmitome. Morrison E et al. 2015 Homo sapiens Jurkat Total cell lysate SILAC labelling with light arginine and lysine or heavy-labeled 13C6,15N4-arginine and 13C6-lysine, Labeling of substrate with 17-ODYA (17-octadecynoic acid) No 226 Show
536 Global Analysis of Palmitoylated Proteins in Toxoplasma gondii. Foe IT et al. 2015 Toxoplasma gondii To be annotated Total membrane Labeling of substrate with 17-ODYA (17-octadecynoic acid) No HC: 210
MC: 72
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619 Bifunctional fatty acid chemical reporter for analyzing S-palmitoylated membrane protein-protein interactions in mammalian cells. Peng T et al. 2015 Homo sapiens HEK293 Total cell lysate Labeling of substrate with alk16 No 354 Show
620 Bifunctional fatty acid chemical reporter for analyzing S-palmitoylated membrane protein-protein interactions in mammalian cells. Peng T et al. 2015 Homo sapiens HEK293 Total cell lysate Labeling of substrate with photo cleavable x-alk16 No 354 Show
508 Chemoproteomics reveals Toll-like receptor fatty acylation. Chesarino NM et al. 2014 Mus musculus MEF Total cell lysate Labeling of substrate with 17-ODYA (17-octadecynoic acid) No 436 Show
511 Global analysis of protein palmitoylation in African trypanosomes. Emmer BT et al. 2011 Trypanosoma brucei brucei To be annotated Total cell lysate ABE (Acyl-Biotin Exchange) No 126 Show
509 A Single Protein S-acyl Transferase Acts through Diverse Substrates to Determine Cryptococcal Morphology, Stress Tolerance, and Pathogenic Outcome. Santiago-Tirado FH et al. 2015 Cryptococcus neoformans var. grubii serotype A (strain H99 / ATCC 208821 / CBS 10515 / FGSC 9487) To be annotated Total cell lysate Labeling of substrate with 17-ODYA (17-octadecynoic acid) No 426 Show
504 Systems Analysis of Protein Fatty Acylation in Herpes Simplex Virus-Infected Cells Using Chemical Proteomics. Serwa RA et al. 2015 Homo sapiens RPE-1 Total cell lysate SILAC, Labelling of substrate with 16-HDYA (16-heptadecynoic acid) No 1348 Show
505 Quantitative analysis of the human T cell palmitome. Morrison E et al. 2015 Homo sapiens Primary CD4 + T cells Total cell lysate In gel SILAC labelling with H2(18)O and H2(16)O, ABE (Acyl-Biotin Exchange) No 274 Show
12 Global profiling of dynamic protein palmitoylation. Martin BR et al. 2012 Mus musculus BW5147-derived mouse T-cell hybridoma cell Total membrane Labeling of substrate with 17-ODYA (17-octadecynoic acid) No HC: 352
LC: 8
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580 Analysis of protein palmitoylation reveals a pervasive role in Plasmodium development and pathogenesis. Jones ML et al. 2012 Plasmodium falciparum (isolate 3D7) Whole organism Total cell lysate SILAC, Labeling of substrate with 17-ODYA (17-octadecynoic acid) No HC: 79
LC: 89
Show
507 Chemoproteomics reveals Toll-like receptor fatty acylation. Chesarino NM et al. 2014 Mus musculus DC2.4 Total cell lysate Labeling of substrate with 17-ODYA (17-octadecynoic acid) No 246 Show
540 Site-Specific Proteomic Mapping Identifies Selectively Modified Regulatory Cysteine Residues in Functionally Distinct Protein Networks. Gould NS et al. 2015 Mus musculus liver Total cell lysate Acyl phenylmercury enrichment No 780 Show
9 Proteomic analysis of protein palmitoylation in adipocytes. Ren W et al. 2013 Mus musculus 3T3-L1 and epididymal fat pads Total membrane Acyl RAC No 664 Show
15 A proteomic approach identifies many novel palmitoylated proteins in Arabidopsis. Hemsley PA et al. 2013 Arabidopsis thaliana Heyn Col-4 ecotype root cell suspension Microsomal membrane ABE (Acyl-Biotin Exchange) No HC: 122
MC: 94
LC: 366
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1 Proteome scale characterization of human S-acylated proteins in lipid raft-enriched and non-raft membranes. Yang W et al. 2010 Homo sapiens DU145 Total membrane ABE (Acyl-Biotin Exchange) No LC: 218
HC: 162
Show
3 Proteomic analysis of S-acylated proteins in human B cells reveals palmitoylation of the immune regulators CD20 and CD23. Ivaldi C et al. 2012 Homo sapiens B-cell Total membrane ABE (Acyl-Biotin Exchange) No HC: 93 P11836 [2], P06734 [2] Show
11 DHHC5 protein palmitoylates flotillin-2 and is rapidly degraded on induction of neuronal differentiation in cultured cells. Li Y et al. 2012 Mus musculus Neural stem cell Total cell lysate Labeling of substrate with 17-ODYA (17-octadecynoic acid) No HC: 254 Q14254 [3] Show
4 Endothelial cell palmitoylproteomic identifies novel lipid-modified targets and potential substrates for protein acyl transferases. Marin EP et al. 2012 Homo sapiens Umbilical vein blood To be annotated ABE (Acyl-Biotin Exchange) No 154 Show
5 Site-specific analysis of protein S-acylation by resin-assisted capture. Forrester MT et al. 2011 Homo sapiens HEK293 Total membrane Acyl RAC No 69 Show
7 Proteomic analysis of fatty-acylated proteins in mammalian cells with chemical reporters reveals S-acylation of histone H3 variants. Wilson JP et al. 2011 Homo sapiens Jurkat Total cell lysate Labeling of substrate with 17-ODYA (17-octadecynoic acid) No LC: 178
HC: 164
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8 Proteomic profiling of S-acylated macrophage proteins identifies a role for palmitoylation in mitochondrial targeting of phospholipid scramblase 3. Merrick BA et al. 2011 Mus musculus Macrophage Raw 264.7 Total membrane ABE (Acyl-Biotin Exchange) No 69 Show
829 Interactions between Melanin Enzymes and Their Atypical Recruitment to the Secretory Pathway by Palmitoylation. Upadhyay S et al. 2016 Neosartorya fumigata (strain CEA10 / CBS 144.89 / FGSC A1163) conidia To be annotated ABE (Acyl-Biotin Exchange) No Show
855 Role of S-Palmitoylation by ZDHHC13 in Mitochondrial function and Metabolism in Liver. Shen LF et al. 2017 Mus musculus liver Total membrane Acyl RAC No Show