SIMILAR PATTERN OF AMINO ACIDS MAPPED TO '1d9s'

List of Similar Pattern of Amino Acids

Hit pattern: 3D amino acid arrangements similar to known drug binding site

Query pattern: Residues from known binding site for annotated drug that match the hit pattern


(Click on the DrReposER ID to view details on interfaces and similar patterns of amino acids)
(Click on the view link on the last column to view superposed patterns of amino acids)
Filter list by:
DrReposER ID / Desc. Hit
PDBID
Hit
Macromolecule
Res.
Matches
Interface HETATM RMSD Dali
Z-score
Seq.
Identity (%)
View Dock
Potential target for repurposing, i.e. matched protein structure has less than 30% sequence identity to known drug target, and may potentially interact with the same drug molecule based on local structural similarity of binding site.
3MNE_A_DEXA784_1
(GLUCOCORTICOID
RECEPTOR)
1d9s CYCLIN-DEPENDENT
KINASE 4 INHIBITOR B

(Mus
musculus)
5 / 12 MET A  48
GLY A  17
GLN A  18
LEU A  57
THR A  87
None
1.32A 3mneA-1d9sA:
undetectable
3mneA-1d9sA:
20.23
Potential target for repurposing, i.e. matched protein structure has less than 30% sequence identity to known drug target, and may potentially interact with the same drug molecule based on local structural similarity of binding site.
3WSJ_A_MK1A201_1
(PROTEASE)
1d9s CYCLIN-DEPENDENT
KINASE 4 INHIBITOR B

(Mus
musculus)
5 / 9 LEU A  85
ALA A  79
ASP A  78
LEU A 111
ILE A 120
None
1.29A 3wsjA-1d9sA:
undetectable
3wsjA-1d9sA:
26.76
Potential target for repurposing, i.e. matched protein structure has less than 30% sequence identity to known drug target, and may potentially interact with the same drug molecule based on local structural similarity of binding site.
4AX8_A_SAMA1474_1
(WBDD)
1d9s CYCLIN-DEPENDENT
KINASE 4 INHIBITOR B

(Mus
musculus)
4 / 6 ARG A  23
ASP A  86
GLU A  82
LEU A  56
None
1.24A 4ax8A-1d9sA:
0.0
4ax8A-1d9sA:
15.32
Potential target for repurposing, i.e. matched protein structure has less than 30% sequence identity to known drug target, and may potentially interact with the same drug molecule based on local structural similarity of binding site.
4FP9_A_SAMA401_1
(METHYLTRANSFERASE
NSUN4)
1d9s CYCLIN-DEPENDENT
KINASE 4 INHIBITOR B

(Mus
musculus)
3 / 3 ASP A  78
ARG A  81
ASP A  68
None
0.75A 4fp9A-1d9sA:
undetectable
4fp9A-1d9sA:
17.43
Potential target for repurposing, i.e. matched protein structure has less than 30% sequence identity to known drug target, and may potentially interact with the same drug molecule based on local structural similarity of binding site.
4FP9_C_SAMC401_1
(METHYLTRANSFERASE
NSUN4)
1d9s CYCLIN-DEPENDENT
KINASE 4 INHIBITOR B

(Mus
musculus)
3 / 3 ASP A  78
ARG A  81
ASP A  68
None
0.75A 4fp9C-1d9sA:
undetectable
4fp9C-1d9sA:
17.43
Potential target for repurposing, i.e. matched protein structure has less than 30% sequence identity to known drug target, and may potentially interact with the same drug molecule based on local structural similarity of binding site.
4FP9_F_SAMF401_1
(METHYLTRANSFERASE
NSUN4)
1d9s CYCLIN-DEPENDENT
KINASE 4 INHIBITOR B

(Mus
musculus)
3 / 3 ASP A  78
ARG A  81
ASP A  68
None
0.75A 4fp9F-1d9sA:
undetectable
4fp9F-1d9sA:
17.43
Potential target for repurposing, i.e. matched protein structure has less than 30% sequence identity to known drug target, and may potentially interact with the same drug molecule based on local structural similarity of binding site.
5E4D_B_BEZB202_0
(HYDROXYNITRILE LYASE)
1d9s CYCLIN-DEPENDENT
KINASE 4 INHIBITOR B

(Mus
musculus)
4 / 7 VAL A  90
THR A  87
LEU A  59
MET A  46
None
0.95A 5e4dA-1d9sA:
undetectable
5e4dB-1d9sA:
undetectable
5e4dA-1d9sA:
17.92
5e4dB-1d9sA:
17.92
Potential target for repurposing, i.e. matched protein structure has less than 30% sequence identity to known drug target, and may potentially interact with the same drug molecule based on local structural similarity of binding site.
6NJ9_K_SAMK500_1
(HISTONE-LYSINE
N-METHYLTRANSFERASE,
H3 LYSINE-79
SPECIFIC)
1d9s CYCLIN-DEPENDENT
KINASE 4 INHIBITOR B

(Mus
musculus)
3 / 3 THR A  12
GLU A  63
ASN A  36
None
0.87A 6nj9K-1d9sA:
undetectable
6nj9K-1d9sA:
17.03