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Nucleic atom dist Protein atom
DT839:G.OP2/1 2.6 ARG330:F.NH1/1
DT840:G.OP2/1 3.17 LYS291:F.NZ/1
DG841:G.OP1/1 3.05 THR248:F.N/1
DG841:G.OP2/1 2.65 THR248:F.OG1/1
DG842:G.OP1/1 3.1 ARG273:F.NH1/1
DG842:G.OP2/1 2.88 GLU246:F.N/1
DG843:G.OP2/1 2.81 GLY244:F.N/1
DT844:G.OP1/1 2.85 LYS241:F.N/1
DT844:G.OP2/1 2.9 SER242:F.OG/1
DC845:G.OP1/1 3.38 ARG238:F.NH2/1
DC845:G.OP2/1 2.91 LYS241:F.NZ/1
DT866:H.OP2/1 2.62 ARG285:F.NH1/1
DT866:H.OP2/1 2.8 ARG285:F.NH2/1
DT866:H.OP2/1 2.93 VAL303:F.N/1
DT866:H.O5'/1 3.18 ARG285:F.NH2/1
DA867:H.OP2/1 2.95 GLU301:F.N/1
DG868:H.OP2/1 2.91 THR298:F.OG1/1
DG868:H.OP2/1 3.01 THR299:F.N/1
DC871:H.OP1/1 3.2 GLY185:F.N/1
DC871:H.OP1/1 3.19 SER188:F.N/1
DC871:H.OP1/1 2.8 SER188:F.OG/1
DC871:H.OP2/1 2.85 VAL187:F.N/1
DC872:H.OP1/1 2.6 GLY183:F.N/1
DC873:H.OP1/1 2.45 LYS150:F.NZ/1
DC873:H.O3'/1 2.79 SER101:F.OG/1
DC873:H.O3'/1 3.19 ASP103:F.OD2/1
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Nucleic atom d_n2w water d_p2w Protein atom
DT840:G.OP1/1 2.82 1016:F/1 2.66 THR248:F.OG1/1
DT840:G.OP1/1 2.82 1016:F/1 2.75 LYS291:F.NZ/1
DT840:G.OP1/1 2.82 1016:F/1 3.3 ARG330:F.NH2/1
DG841:G.OP2/1 2.78 1047:F/1 2.55 GLU246:F.OE2/1
DG842:G.OP1/1 2.37 1089:G/1 3.38 ARG247:F.NH2/1
DT847:G.OP1/1 2.77 1103:G/1 2.88 PHE215:F.O/1
DT847:G.OP1/1 2.77 1103:G/1 3.27 PHE218:F.N/1
DG868:H.OP2/1 2.33 1041:H/1 3.08 THR299:F.OG1/1
DC872:H.OP1/1 2.54 1063:H/1 2.91 ALA179:F.O/1
DC872:H.OP1/1 2.54 1063:H/1 2.94 ILE181:F.O/1
DC872:H.OP1/1 2.54 1063:H/1 2.56 VAL184:F.O/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.
© NPIDB team 2003 - 2020

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