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PDB 
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Phospho-sites

Showing 9 results

Swiss-Prot Position Modification Source Evidence Singly phosphorylated
35 SER PRIDE yes
36 THR PRIDE yes
76 TYR PRIDE yes
325 SER PRIDE yes
532 SER PRIDE yes
565 THR PRIDE yes
572 SER PRIDE yes
618 SER UP, PRIDE Combined yes
682 TYR PRIDE yes

3D structure is not available

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Phosphorylated amino acids are colored red on the inner ring.

The first amino acid of the protein sequence is colored darker on each ring.

Phospho peptides

Showing 14 results

Sequence Modified position (Swiss-Prot) Peptide start Peptide end Modified position (Peptide) Number of projects
35 32 44 4 1
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD000612 1 Ultra-deep human phosphoproteome reveals different regulatory nature of Tyr and Ser/Thr-based signaling Homo sapiens (Human) PARTIAL 2014-08-06 cell culture
35 32 45 4 1
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD001060 1 Fe-IMAC column based phospho enrichment Homo sapiens (Human) PARTIAL 2015-08-19 Epithelial cell
35 33 44 3 2
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD000612 1 Ultra-deep human phosphoproteome reveals different regulatory nature of Tyr and Ser/Thr-based signaling Homo sapiens (Human) PARTIAL 2014-08-06 cell culture
PXD006482 1 Identification of Missing Proteins in the Phosphoproteome of Kidney Cancer Homo sapiens (Human) COMPLETE 2017-09-01 kidney -
35 33 45 3 2
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD001060 2 Fe-IMAC column based phospho enrichment Homo sapiens (Human) PARTIAL 2015-08-19 Epithelial cell
PXD005366 2 Robust, sensitive and automated phosphopeptide enrichment optimized for low sample amounts applied to primary hippocampal neurons Homo sapiens (Human),Rattus norvegicus (Rat) PARTIAL 2016-12-14 cell culture -
36 32 44 5 1
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD000612 2 Ultra-deep human phosphoproteome reveals different regulatory nature of Tyr and Ser/Thr-based signaling Homo sapiens (Human) PARTIAL 2014-08-06 cell culture
36 33 44 4 1
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD004252 2 Modulating the selectivity of affinity absorbents to multi-phosphopeptides by a novel competitive substitution strategy Homo sapiens (Human) PARTIAL 2016-08-03 cell culture
36 33 45 4 3
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD004252 1 Modulating the selectivity of affinity absorbents to multi-phosphopeptides by a novel competitive substitution strategy Homo sapiens (Human) PARTIAL 2016-08-03 cell culture -
PXD005366 4 Robust, sensitive and automated phosphopeptide enrichment optimized for low sample amounts applied to primary hippocampal neurons Homo sapiens (Human),Rattus norvegicus (Rat) PARTIAL 2016-12-14 cell culture
PXD000680 2 Stable isotope labeling of phosphoproteins for large-scale phosphorylation rate determination Homo sapiens (Human) COMPLETE 2014-04-15 HeLa cell,HEK-293 cell -
76 69 81 8 1
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD000612 13 Ultra-deep human phosphoproteome reveals different regulatory nature of Tyr and Ser/Thr-based signaling Homo sapiens (Human) PARTIAL 2014-08-06 cell culture
325 323 335 3 1
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD000612 4 Ultra-deep human phosphoproteome reveals different regulatory nature of Tyr and Ser/Thr-based signaling Homo sapiens (Human) PARTIAL 2014-08-06 cell culture
532 525 546 8 1
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD000612 1 Ultra-deep human phosphoproteome reveals different regulatory nature of Tyr and Ser/Thr-based signaling Homo sapiens (Human) PARTIAL 2014-08-06 cell culture
565 561 571 5 1
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD004452 1 HeLa proteome of 12,250 protein-coding genes Homo sapiens (Human) PARTIAL 2017-06-12 liver,colon
572 572 583 1 2
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD000612 6 Ultra-deep human phosphoproteome reveals different regulatory nature of Tyr and Ser/Thr-based signaling Homo sapiens (Human) PARTIAL 2014-08-06 cell culture -
PXD000680 2 Stable isotope labeling of phosphoproteins for large-scale phosphorylation rate determination Homo sapiens (Human) COMPLETE 2014-04-15 HeLa cell,HEK-293 cell
618 616 626 3 4
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD001060 1 Fe-IMAC column based phospho enrichment Homo sapiens (Human) PARTIAL 2015-08-19 Epithelial cell -
PXD000612 6 Ultra-deep human phosphoproteome reveals different regulatory nature of Tyr and Ser/Thr-based signaling Homo sapiens (Human) PARTIAL 2014-08-06 cell culture -
PXD006482 1 Identification of Missing Proteins in the Phosphoproteome of Kidney Cancer Homo sapiens (Human) COMPLETE 2017-09-01 kidney -
PXD004452 1 HeLa proteome of 12,250 protein-coding genes Homo sapiens (Human) PARTIAL 2017-06-12 liver,colon
682 675 690 8 1
ProteomeXchange accession Peptide frequency Project Title Species Submission Type Publication Date Tissues USI 
PXD000612 9 Ultra-deep human phosphoproteome reveals different regulatory nature of Tyr and Ser/Thr-based signaling Homo sapiens (Human) PARTIAL 2014-08-06 cell culture

Structures

Showing 0 results

PDB id Chain Method Resolution Stoichiometry Interfacing Molecule/Chain Complex Formation Significance Score (CSS) P-sites View Structure

Mutations

Showing 0 results

Swiss-Prot Position Amino acid (Wild type) Amino acid (Variant) Variant Type Disease