Structural features of residue 119 in chain B

********************************* Electrostatic Interactions: HIS A 111 ND1 HIS B 119 ND1 0.717 INTER-CHAIN HIS A 145 ND1 HIS B 119 ND1 0.684 INTER-CHAIN HIS A 145 ND1 HIS B 119 NE2 1.563 INTER-CHAIN HIS A 145 NE2 HIS B 119 ND1 0.715 INTER-CHAIN HIS A 145 NE2 HIS B 119 NE2 1.652 INTER-CHAIN HIS B 119 ND1 HIS A 111 ND1 0.717 INTER-CHAIN HIS B 119 ND1 HIS B 145 ND1 0.685 INTRA-CHAIN HIS B 119 ND1 HIS B 145 NE2 1.568 INTRA-CHAIN HIS B 119 ND1 HIS A 145 ND1 0.684 INTER-CHAIN HIS B 119 ND1 HIS A 145 NE2 1.608 INTER-CHAIN HIS B 119 NE2 HIS B 145 ND1 0.691 INTRA-CHAIN HIS B 119 NE2 HIS B 145 NE2 1.612 INTRA-CHAIN HIS B 119 NE2 HIS A 145 ND1 0.695 INTER-CHAIN HIS B 119 NE2 HIS A 145 NE2 1.652 INTER-CHAIN HIS B 145 ND1 HIS B 119 ND1 0.685 INTRA-CHAIN HIS B 145 ND1 HIS B 119 NE2 1.556 INTRA-CHAIN HIS B 145 NE2 HIS B 119 ND1 0.697 INTRA-CHAIN HIS B 145 NE2 HIS B 119 NE2 1.612 INTRA-CHAIN ********************************* Hydrogen bonds: ---------------------------------------------------------- |Res1 type| Res1 No.| Chain1| Res2 type| Res2 No.| Chain2| ---------------------------------------------------------- | E| 116| A| H| 119| B| ---------------------------------------------------------- ********************************* Protrusion Index: HIS B 119 N 0.69 HIS B 119 CA 0.86 HIS B 119 C 1.02 HIS B 119 O 1.06 HIS B 119 CB 0.78 HIS B 119 CG 0.93 HIS B 119 ND1 0.80 HIS B 119 CD2 1.02 HIS B 119 CE1 0.93 HIS B 119 NE2 1.17 ********************************* Salt bridges: GLU B 116 HIS B 119 3.174 INTRA-CHAIN ********************************* Van der Waal's Interactions: GLU A 116 OE2 831 HIS B 119 NE2 2381 -0.112 INTER-CHAIN GLU B 116 OE2 2352 HIS B 119 NE2 2381 -0.095 INTRA-CHAIN HIS B 119 NE2 2381 GLN A 120 NE2 869 -0.024 INTER-CHAIN HIS B 119 NE2 2381 GLN B 120 NE2 2390 -0.017 INTRA-CHAIN