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Nucleic atom dist Protein atom
DG9:B.OP1/1 2.73 GLY350:A.N/1
DG9:B.OP1/1 3.22 GLY352:A.N/1
DG9:B.OP1/1 3.02 VAL353:A.N/1
DC10:B.OP1/1 2.79 GLY348:A.N/1
DC10:B.OP2/1 3.04 VAL349:A.O/1
DG11:B.OP1/1 3.11 ARG592:A.NH2/1
DT12:B.OP1/1 2.42 SER588:A.OG/1
DT12:B.OP2/1 2.57 ASN590:A.ND2/1
DC13:B.OP1/1 3.03 ARG573:A.N/1
DG1:C.OP1/1 3.37 ARG589:A.NH1/1
DG1:C.OP2/1 2.94 LYS568:A.NZ/1
DT2:C.OP1/1 2.77 LYS746:A.NZ/1
DT2:C.OP1/1 2.63 TYR749:A.OH/1
DT2:C.OP2/1 2.82 LYS744:A.NZ/1
DC3:C.OP1/1 3.07 ARG874:A.NE/1
DC3:C.OP2/1 3.07 ARG549:A.NH1/1
DG4:C.OP1/1 3.19 GLY799:A.O/1
DG5:C.OP1/1 2.98 ASP802:A.N/1
DC7:C.OP1/1 2.65 SER303:A.OG/1
DT10:D.OP1/1 2.72 ARG738:A.NE/1
DC12:D.OP1/1 2.82 ALA455:A.N/1
DC12:D.OP1/1 3.07 SER458:A.N/1
DC12:D.OP1/1 2.8 SER458:A.OG/1
DC12:D.OP2/1 3.16 GLN457:A.N/1
DG13:D.OP1/1 2.88 GLY453:A.N/1
DG13:D.N3/1 3.14 LYS770:A.NZ/1
DA14:D.O5'/1 2.88 LYS770:A.N/1
DC15:D.OP1/1 2.92 ARG768:A.N/1
DC15:D.OP2/1 3.1 ARG449:A.NH1/1
DA17:D.OP1/1 2.92 LYS795:A.N/1
DA17:D.OP1/1 2.45 TYR855:A.OH/1
DC18:D.OP1/1 2.72 SER850:A.OG/1
DC18:D.OP2/1 2.65 SER852:A.OG/1
DG19:D.OP1/1 3.05 GLN636:A.NE2/1
DG19:D.O3'/1 3.3 THR639:A.O/1
DC20:D.O2/1 2.69 ARG643:A.NH2/1
DA21:D.OP1/1 3.01 ARG643:A.N/1
DA21:D.O4'/1 3.19 ARG643:A.NH2/1
DC23:D.OP1/1 2.69 GLY416:A.N/1
DA24:D.OP1/1 2.95 THR420:A.N/1
DA24:D.OP2/1 2.81 ALA418:A.N/1
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Nucleic atom d_n2w water d_p2w Protein atom
DC10:B.OP1/1 2.67 110:B/1 2.88 LEU347:A.N/1
DC10:B.OP2/1 3.04 1160:A/1 2.7 LEU446:A.O/1
DC10:B.O2/1 2.7 1110:A/1 2.42 ARG643:A.NH1/1
DG11:B.OP1/1 2.72 112:B/1 3.06 LEU345:A.O/1
DG11:B.OP1/1 2.62 107:B/1 2.89 ARG592:A.NE/1
DG11:B.OP1/1 2.62 107:B/1 3.28 ARG592:A.NH2/1
DG11:B.N3/1 2.77 115:B/1 3.12 ARG643:A.NH1/1
DT12:B.OP1/1 2.4 102:B/1 3.46 ASN594:A.ND2/1
DC13:B.OP1/1 2.87 1250:A/1 3.23 GLN572:A.NE2/1
DC13:B.OP1/1 2.87 1250:A/1 2.77 ARG573:A.O/1
DC13:B.OP1/1 2.87 1250:A/1 2.85 ARG589:A.N/1
DC13:B.O3'/1 2.84 1122:A/1 2.49 ASP570:A.OD1/1
DC13:B.O3'/1 2.84 1122:A/1 2.77 GLY571:A.O/1
DC13:B.O3'/1 3.24 1164:A/1 2.64 GLU621:A.OE2/1
DC13:B.O2/1 2.77 116:B/1 2.88 ARG871:A.NE/1
DC13:B.O2/1 2.77 116:B/1 3.1 ARG871:A.NH2/1
DG1:C.OP2/1 2.81 215:C/1 2.96 LYS746:A.NZ/1
DC3:C.OP1/1 2.75 1167:A/1 2.78 ASP748:A.O/1
DC3:C.OP1/1 2.75 1167:A/1 3.23 ARG874:A.NE/1
DC3:C.OP1/1 2.75 1167:A/1 2.64 ARG874:A.NH2/1
DG4:C.OP1/1 3.14 1269:A/1 2.92 GLY799:A.O/1
DG4:C.N2/1 3.06 1360:A/1 2.99 LYS770:A.NZ/1
DG5:C.OP1/1 2.55 203:C/1 2.92 GLU803:A.N/1
DG5:C.O4'/1 3 1360:A/1 2.99 LYS770:A.NZ/1
DA6:C.N3/1 2.7 209:C/1 3.24 ARG305:A.NH1/1
DT10:D.OP2/1 2.69 1116:A/1 2.48 ARG557:A.NH2/1
DT10:D.OP2/1 2.89 1289:A/1 3.07 SER739:A.OG/1
DT10:D.OP2/1 2.89 1289:A/1 2.84 HIS740:A.N/1
DT10:D.OP2/1 2.89 1289:A/1 3.18 HIS740:A.ND1/1
DC11:D.OP1/1 2.43 204:D/1 2.88 GLN457:A.OE1/1
DC11:D.OP1/1 2.43 204:D/1 3 LYS504:A.NZ/1
DC11:D.OP2/1 2.85 232:D/1 3.05 SER739:A.N/1
DC11:D.OP2/1 2.85 232:D/1 3.15 SER739:A.OG/1
DC12:D.O2/1 2.75 221:D/1 2.89 LYS770:A.NZ/1
DG13:D.OP1/1 2.45 205:D/1 2.8 LEU452:A.N/1
DA14:D.OP2/1 2.65 212:D/1 2.74 ARG449:A.NH1/1
DA14:D.N3/1 2.73 219:D/1 3.15 ARG771:A.NH2/1
DA14:D.N3/1 2.73 219:D/1 2.91 GLY797:A.O/1
DC15:D.OP1/1 2.71 217:D/1 2.83 LEU766:A.O/1
DC15:D.OP2/1 2.71 1143:A/1 2.57 ARG449:A.NH2/1
DG16:D.N2/1 3.27 1262:A/1 2.79 PHE872:A.N/1
DG16:D.N3/1 2.95 1262:A/1 2.79 PHE872:A.N/1
DA17:D.O4'/1 2.84 1262:A/1 2.79 PHE872:A.N/1
DA17:D.O3'/1 3.27 1232:A/1 2.74 SER850:A.OG/1
DG19:D.OP1/1 2.77 1199:A/1 2.69 LEU851:A.O/1
DG19:D.OP1/1 2.77 1199:A/1 2.99 LYS866:A.NZ/1
DC20:D.OP1/1 2.4 203:D/1 2.75 THR640:A.O/1
DC20:D.OP1/1 2.4 203:D/1 2.78 LYS642:A.NZ/1
DA21:D.OP2/1 2.87 1145:A/1 2.58 LYS642:A.NZ/1
DA24:D.OP1/1 2.77 226:D/1 2.81 ALA421:A.N/1
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Core number Atoms Action

  Hbonds:

Hbonds service shows hydrogen bonds on the NA-protein interface. One H-bond is one line in the table, where:
 Nucleic atom is atom of nucleic acid in Jmol/RasMol format.
 Protein atom is atom of protein in Jmol/RasMol format.
 Dist is distance from nucleic atom to protein atom in angstroms (Å).

  W-Bridges:

W-Bridges service shows Water-bridges on the NA-protein interface. One Water-bridge is one line in the table, where:
 Nucleic atom is atom of nucleic acid in Jmol/RasMol format.
 Protein atom is atom of protein in Jmol/RasMol format.
 Water is water molecule.
 d_n2w is distance from nucleic atom to water molecule (Å).
 d_p2w is distance from protein atom to water molecule (Å).

  CluD:

CluD service shows hydrophobic clusters on the NA-protein interface. One Cluster is one line in the table, where:
 Core number is serial number of cluster.
 Atoms is number of detected atoms in the cluster.
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