Primary Citation PubMed: 11846567
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Mechanism of PhosphoThreonine/Serine Recognition and Specificity for Modular Domains from All-atom Molecular Dynamics.
(2011) BMC Biophys 4
PubMed: 21612598 | PubMedCentral: PMC3146460 | DOI: 10.1186/2046-1682-4-12
FHA1 Rad53 1G6G X-ray LEV (pT) EADATFAK 0.53 (12) FHA1 Rad53 1K3Q NMR SLEV (pT) EADATFVQ 0.3 (16) FHA Dun1 2JQL NMR NI (pT) QP (pT) QQST 0.3-1.2 (35) FHA Ki67 2AFF NMR KTVD (pS) QGP (pT) PVC(pT) PTFLE... RKSQVAE LNDDDKDD EIVFK QPISC 0.077 (18) BRCT BRCA1 1T2V X-ray AAYDI (pS) QVFPFA 0.4 (29) WW Pin1 1F8A X-ray Y(pS)PT (pS) PS 34 (34) Residues in the bracket are either pT or pS.
Two initial structures are from crystallographic coordinates (Protein Data Bank (PDB) code 1G6G ) [ 12 ] and NMR structure (PDB code 1K3Q ) [ 16 ].
Publication Year: 2011
Achieving peptide binding specificity and promiscuity by loops: case of the forkhead-associated domain.
(2014) PLoS One 9
PubMed: 24870410 | PubMedCentral: PMC4037201 | DOI: 10.1371/journal.pone.0098291
The protein–ligand complexes with the substrate binding peptide of Rad9 protein were obtained from the PDB codes 1G6G and 1K3Q, solved by X-ray and NMR, respectively  ,  .
Blue, red, green and orange represents Rad53-FHA1 (PDB: 1G6G), Rad53-FHA1 (PDB: 1K3Q), Dun1-FHA (PDB: 2JQL) and Ki67-FHA (PDB: 2AFF), respectively.
Publication Year: 2014
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