Structural features of residue 126 in chain C

********************************* Electrostatic Interactions: GLU A 15 OE2 LYS C 126 NZ -1.056 INTER-CHAIN GLU A 114 OE1 LYS C 126 NZ -1.253 INTER-CHAIN GLU A 114 OE2 LYS C 126 NZ -1.495 INTER-CHAIN LYS A 145 NZ LYS C 126 NZ 0.509 INTER-CHAIN LYS C 25 NZ LYS C 126 NZ 0.561 INTRA-CHAIN LYS C 126 NZ GLU A 15 OE2 -1.056 INTER-CHAIN LYS C 126 NZ LYS C 25 NZ 0.561 INTRA-CHAIN LYS C 126 NZ GLU A 114 OE2 -1.495 INTER-CHAIN LYS C 126 NZ GLU C 131 OE2 -1.394 INTRA-CHAIN LYS C 126 NZ LYS A 145 NZ 0.509 INTER-CHAIN LYS C 126 NZ GLU C 159 OE2 -1.276 INTRA-CHAIN GLU C 131 OE1 LYS C 126 NZ -1.420 INTRA-CHAIN GLU C 131 OE2 LYS C 126 NZ -1.394 INTRA-CHAIN GLU C 159 OE1 LYS C 126 NZ -1.222 INTRA-CHAIN GLU C 159 OE2 LYS C 126 NZ -1.276 INTRA-CHAIN ********************************* Protrusion Index: LYS C 126 N 0.02 LYS C 126 CA 0.04 LYS C 126 C 0.06 LYS C 126 O 0.05 LYS C 126 CB 0.08 LYS C 126 CG 0.05 LYS C 126 CD 0.01 LYS C 126 CE 0.04 LYS C 126 NZ 0.00 ********************************* Salt bridges: ASP C 125 LYS C 126 2.237 INTRA-CHAIN ********************************* Short Contacts: LYS C 126 NZ THR A 141 O -0.063 INTER-CHAIN ********************************* Van der Waal's Interactions: ASP C 125 OD2 3985 LYS C 126 NZ 3994 -0.668 INTRA-CHAIN LYS C 126 NZ 3994 GLY C 130 O 4026 -0.042 INTRA-CHAIN LYS C 126 NZ 3994 THR A 141 CG2 911 -0.158 INTER-CHAIN LYS C 126 NZ 3994 HIS C 162 NE2 4267 -0.106 INTRA-CHAIN