Structural features of residue 126 in chain A
********************************* Electrostatic Interactions: ARG A 17 NH1 ARG A 126 NH1 4.354 INTRA-CHAIN ARG A 17 NH1 ARG A 126 NH2 4.229 INTRA-CHAIN ARG A 17 NH2 ARG A 126 NH1 5.543 INTRA-CHAIN ARG A 17 NH2 ARG A 126 NH2 5.222 INTRA-CHAIN ARG A 126 NH1 ARG A 17 NH1 4.354 INTRA-CHAIN ARG A 126 NH1 ARG A 17 NH2 5.543 INTRA-CHAIN ARG A 126 NH1 ARG A 133 NH1 3.288 INTRA-CHAIN ARG A 126 NH1 ARG A 133 NH2 3.616 INTRA-CHAIN ARG A 126 NH2 ARG A 17 NH1 4.229 INTRA-CHAIN ARG A 126 NH2 ARG A 17 NH2 5.222 INTRA-CHAIN ARG A 126 NH2 ARG A 133 NH1 3.528 INTRA-CHAIN ARG A 126 NH2 ARG A 133 NH2 3.973 INTRA-CHAIN ARG A 133 NH1 ARG A 126 NH1 3.288 INTRA-CHAIN ARG A 133 NH1 ARG A 126 NH2 3.528 INTRA-CHAIN ARG A 133 NH2 ARG A 126 NH1 3.616 INTRA-CHAIN ARG A 133 NH2 ARG A 126 NH2 3.973 INTRA-CHAIN ********************************* Protrusion Index: ARG A 126 N 0.30 ARG A 126 CA 0.30 ARG A 126 C 0.26 ARG A 126 O 0.23 ARG A 126 CB 0.35 ARG A 126 CG 0.53 ARG A 126 CD 0.59 ARG A 126 NE 0.88 ARG A 126 CZ 1.02 ARG A 126 NH1 0.91 ARG A 126 NH2 1.60 ********************************* Salt bridges: ASP A 68 ARG A 126 2.741 INTRA-CHAIN ********************************* Van der Waal's Interactions: ASP A 68 OD2 402 ARG A 126 NH2 818 -0.051 INTRA-CHAIN THR A 122 CG2 788 ARG A 126 NH2 818 -0.057 INTRA-CHAIN ARG A 126 NH2 818 TYR B 198 OH 2827 -0.236 INTER-CHAIN