Structural features of residue 113 in chain A

********************************* Electrostatic Interactions: ASP A 94 OD1 ASP A 113 OD1 3.119 INTRA-CHAIN ASP A 94 OD1 ASP A 113 OD2 2.800 INTRA-CHAIN ASP A 94 OD2 ASP A 113 OD1 2.746 INTRA-CHAIN ASP A 113 OD1 ASP A 94 OD1 3.119 INTRA-CHAIN ASP A 113 OD1 ASP A 94 OD2 2.746 INTRA-CHAIN ASP A 113 OD1 GLU E 130 OE1 3.146 INTER-CHAIN ASP A 113 OD2 ASP A 94 OD1 2.800 INTRA-CHAIN ASP A 113 OD2 GLU E 130 OE1 3.243 INTER-CHAIN GLU E 130 OE1 ASP A 113 OD2 3.243 INTER-CHAIN GLU E 130 OE2 ASP A 113 OD2 3.130 INTER-CHAIN HIS E 135 NE2 ASP A 113 OD1 -1.412 INTER-CHAIN ********************************* Hydrogen bonds: ---------------------------------------------------------- |Res1 type| Res1 No.| Chain1| Res2 type| Res2 No.| Chain2| ---------------------------------------------------------- | K| 124| E| D| 113| A| ---------------------------------------------------------- ********************************* Protrusion Index: ASP A 113 N 1.02 ASP A 113 CA 1.27 ASP A 113 C 1.60 ASP A 113 O 1.51 ASP A 113 CB 1.08 ASP A 113 CG 1.00 ASP A 113 OD1 1.19 ASP A 113 OD2 0.95 ********************************* Salt bridges: ASP A 113 LYS A 117 2.753 INTRA-CHAIN ASP A 113 LYS E 124 3.078 INTER-CHAIN ********************************* Short Contacts: ASP A 113 O GLY A 116 N -0.112 INTRA-CHAIN ********************************* Van der Waal's Interactions: ASP A 113 OD2 463 GLY A 114 O 467 -0.013 INTRA-CHAIN ASP A 113 OD2 463 ALA A 115 CB 472 -0.202 INTRA-CHAIN ASP A 113 OD2 463 GLY A 116 O 476 -0.015 INTRA-CHAIN ASP A 113 OD2 463 LYS A 117 NZ 485 -0.074 INTRA-CHAIN ASP A 113 OD2 463 LYS E 124 NZ 553 -0.929 INTER-CHAIN