Protein FDR Confidence: Combined | Accession | Description | Exp. q-value: Combined | Sum PEP Score | Coverage [%] | # Peptides | # PSMs | # Unique Peptides | # AAs | MW [kDa] | calc. pI | # Peptides (by Search Engine): A2 Sequest HT (293 IgG) | # Peptides (by Search Engine): B2 Sequest HT (293 Sel1L KO) | # Peptides (by Search Engine): C2 Sequest HT (293 WT) | # Peptides (by Search Engine): D2 Sequest HT (293 H KO) | # PSMs (by Search Engine): A2 Sequest HT (293 IgG) | # PSMs (by Search Engine): B2 Sequest HT (293 Sel1L KO) | # PSMs (by Search Engine): C2 Sequest HT (293 WT) | # PSMs (by Search Engine): D2 Sequest HT (293 H KO) | Abundance: F1: Sample, 293 IgG | Abundance: F2: Sample, 293 Sel1L KO | Abundance: F3: Sample, 293 WT | Abundance: F4: Sample, 293 H KO | Abundances Count: F1: Sample, 293 IgG | Abundances Count: F2: Sample, 293 Sel1L KO | Abundances Count: F3: Sample, 293 WT | Abundances Count: F4: Sample, 293 H KO | Modifications | Biological Process | Cellular Component | Molecular Function | Pfam IDs | Entrez Gene ID | Ensembl Gene ID | Gene Symbol | Chromosome | Reactome Pathways | KEGG Pathways | # Razor Peptides |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
High | P25705 | "ATP synthase subunit alpha, mitochondrial OS=Homo sapiens OX=9606 GN=ATP5F1A PE=1 SV=1" | 0 | 80.808 | 43 | 20 | 65 | 20 | 553 | 59.7 | 9.13 | 3 | 7 | 12 | 18 | 3 | 11 | 19 | 32 | 1645605.563 | 250147449.9 | 1547074392 | 2290578437 | 3 | 12 | 14 | 19 | cell organization and biogenesis;metabolic process;regulation of biological process;transport | membrane;mitochondrion;organelle lumen | catalytic activity;nucleotide binding;protein binding;RNA binding;transporter activity | "Pf00006, Pf00306, Pf02663, Pf02874, Pf05943" | 498 | ENSG00000152234.15 | ATP5A1 | 18 | Cristae formation; Mitochondrial protein import; Formation of ATP by chemiosmotic coupling; Metabolism of proteins | Huntington's disease; Parkinson's disease; Alzheimer's disease; Oxidative phosphorylation; Metabolic pathways | 0 |