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Class: Alpha Beta (26913)
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Architecture: 2-Layer Sandwich (8480)
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Topology: SHC Adaptor Protein (206)
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Homologous Superfamily: SHC Adaptor Protein (206)
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House mouse (Mus musculus) (17)
1AYAA:3-103; B:3-103CRYSTAL STRUCTURES OF PEPTIDE COMPLEXES OF THE AMINO-TERMINAL SH2 DOMAIN OF THE SYP TYROSINE PHOSPHATASE
1AYBA:4-103CRYSTAL STRUCTURES OF PEPTIDE COMPLEXES OF THE AMINO-TERMINAL SH2 DOMAIN OF THE SYP TYROSINE PHOSPHATASE
1AYCA:4-103CRYSTAL STRUCTURES OF PEPTIDE COMPLEXES OF THE AMINO-TERMINAL SH2 DOMAIN OF THE SYP TYROSINE PHOSPHATASE
1AYDA:3-103CRYSTAL STRUCTURES OF PEPTIDE COMPLEXES OF THE AMINO-TERMINAL SH2 DOMAIN OF THE SYP TYROSINE PHOSPHATASE
1BLJA:1-114NMR ENSEMBLE OF BLK SH2 DOMAIN, 20 STRUCTURES
1BLKA:1-114NMR ENSEMBLE OF BLK SH2 DOMAIN USING CHEMICAL SHIFT REFINEMENT, 20 STRUCTURES
1I3ZA:1-103MURINE EAT2 SH2 DOMAIN IN COMPLEX WITH SLAM PHOSPHOPEPTIDE
1LUIA:4-111NMR STRUCTURES OF ITK SH2 DOMAIN, PRO287CIS ISOFORM, ENSEMBLE OF 20 LOW ENERGY STRUCTURES
1LUKA:4-111NMR STRUCTURE OF THE ITK SH2 DOMAIN, PRO287CIS, ENERGY MINIMIZED AVERAGE STRUCTURE
1LUMA:4-111NMR STRUCTURE OF THE ITK SH2 DOMAIN, PRO287TRANS, 20 LOW ENERGY STRUCTURES
1LUNA:4-111NMR STRUCTURE OF THE ITK SH2 DOMAIN, PRO287TRANS, ENERGY MINIMIZED AVERAGE STRUCTURE
1OPKA:146-247STRUCTURAL BASIS FOR THE AUTO-INHIBITION OF C-ABL TYROSINE KINASE
1R1PB:50-149; D:55-149; C:50-149; A:55-149STRUCTURAL BASIS FOR DIFFERENTIAL RECOGNITION OF TYROSINE PHOSPHORYLATED SITES IN THE LINKER FOR ACTIVATION OF T CELLS (LAT) BY THE ADAPTOR PROTEIN GADS
1R1QB:50-149; A:53-149STRUCTURAL BASIS FOR DIFFERENTIAL RECOGNITION OF TYROSINE PHOSPHORYLATED SITES IN THE LINKER FOR ACTIVATION OF T CELLS (LAT) BY THE ADAPTOR PROTEIN GADS
1R1SG:50-149; A:54-149; C:54-149; E:51-149STRUCTURAL BASIS FOR DIFFERENTIAL RECOGNITION OF TYROSINE PHOSPHORYLATED SITES IN THE LINKER FOR ACTIVATION OF T CELLS (LAT) BY THE ADAPTOR PROTEIN GADS
2ETZA:4-111THE NMR MINIMIZED AVERAGE STRUCTURE OF THE ITK SH2 DOMAIN BOUND TO A PHOSPHOPEPTIDE
2EU0A:4-111THE NMR ENSEMBLE STRUCTURE OF THE ITK SH2 DOMAIN BOUND TO A PHOSPHOPEPTIDE