Structural features of residue 40 in chain B

********************************* Electrostatic Interactions: HIS B 14 ND1 HIS B 40 ND1 0.895 INTRA-CHAIN HIS B 14 ND1 HIS B 40 NE2 2.164 INTRA-CHAIN HIS B 14 NE2 HIS B 40 ND1 0.793 INTRA-CHAIN HIS B 14 NE2 HIS B 40 NE2 1.920 INTRA-CHAIN ASP B 27 OD2 HIS B 40 ND1 -1.433 INTRA-CHAIN HIS B 40 ND1 HIS B 14 ND1 0.895 INTRA-CHAIN HIS B 40 ND1 HIS B 14 NE2 1.783 INTRA-CHAIN HIS B 40 ND1 ARG B 124 NH1 2.426 INTRA-CHAIN HIS B 40 NE2 HIS B 14 ND1 0.962 INTRA-CHAIN HIS B 40 NE2 HIS B 14 NE2 1.920 INTRA-CHAIN HIS B 40 NE2 ARG B 124 NH1 2.796 INTRA-CHAIN ARG B 124 NH1 HIS B 40 NE2 2.796 INTRA-CHAIN ARG B 124 NH2 HIS B 40 NE2 3.208 INTRA-CHAIN ********************************* Hydrogen bonds: ---------------------------------------------------------- |Res1 type| Res1 No.| Chain1| Res2 type| Res2 No.| Chain2| ---------------------------------------------------------- | H| 40| B| T| 84| A| ---------------------------------------------------------- ********************************* Protrusion Index: HIS B 40 N 0.08 HIS B 40 CA 0.05 HIS B 40 C -0.04 HIS B 40 O -0.07 HIS B 40 CB 0.17 HIS B 40 CG 0.29 HIS B 40 ND1 0.42 HIS B 40 CD2 0.38 HIS B 40 CE1 0.59 HIS B 40 NE2 0.64 ********************************* Salt bridges: GLU B 29 HIS B 40 2.765 INTRA-CHAIN ********************************* Van der Waal's Interactions: GLU B 29 OE2 1201 HIS B 40 NE2 1286 -0.014 INTRA-CHAIN LYS B 33 NZ 1236 HIS B 40 NE2 1286 -0.009 INTRA-CHAIN GLY B 38 O 1272 HIS B 40 NE2 1286 -0.152 INTRA-CHAIN GLY B 39 O 1276 HIS B 40 NE2 1286 -0.376 INTRA-CHAIN