Structural features of residue 126 in chain A
********************************* Electrostatic Interactions: HIS A 125 ND1 ARG A 126 NH1 3.347 INTRA-CHAIN HIS A 125 NE2 ARG A 126 NH1 2.879 INTRA-CHAIN ARG A 126 NH1 HIS A 125 NE2 2.879 INTRA-CHAIN ARG A 126 NH1 ARG A 158 NH1 3.145 INTRA-CHAIN ARG A 126 NH1 ARG A 158 NH2 3.477 INTRA-CHAIN ARG A 126 NH2 ARG B 36 NH2 2.969 INTER-CHAIN ARG A 126 NH2 HIS A 125 NE2 2.489 INTRA-CHAIN ARG A 126 NH2 ARG A 158 NH2 3.292 INTRA-CHAIN ARG A 158 NH1 ARG A 126 NH1 3.145 INTRA-CHAIN ARG A 158 NH2 ARG A 126 NH1 3.477 INTRA-CHAIN ARG A 158 NH2 ARG A 126 NH2 3.292 INTRA-CHAIN ARG B 36 NH2 ARG A 126 NH2 2.969 INTER-CHAIN ********************************* Hydrogen bonds: ---------------------------------------------------------- |Res1 type| Res1 No.| Chain1| Res2 type| Res2 No.| Chain2| ---------------------------------------------------------- | R| 126| A| E| 283| B| ---------------------------------------------------------- ********************************* Protrusion Index: ARG A 126 N 0.37 ARG A 126 CA 0.52 ARG A 126 C 0.62 ARG A 126 O 0.49 ARG A 126 CB 0.38 ARG A 126 CG 0.33 ARG A 126 CD 0.39 ARG A 126 NE 0.46 ARG A 126 CZ 0.64 ARG A 126 NH1 0.75 ARG A 126 NH2 0.72 ********************************* Van der Waal's Interactions: ARG A 126 NH2 906 PRO A 127 CD 913 -0.101 INTRA-CHAIN ARG A 126 NH2 906 TYR B 274 OH 4240 -0.028 INTER-CHAIN ARG A 126 NH2 906 TYR B 279 OH 4283 -0.039 INTER-CHAIN ARG A 126 NH2 906 TYR B 280 OH 4295 -0.032 INTER-CHAIN ARG A 126 NH2 906 ASP B 287 OD2 4359 -0.009 INTER-CHAIN