Structural features of residue 235 in chain A

********************************* Electrostatic Interactions: LYS A 187 NZ LYS A 235 NZ 0.668 INTRA-CHAIN LYS A 235 NZ GLU B 121 OE2 -1.134 INTER-CHAIN LYS A 235 NZ GLU B 164 OE2 -2.304 INTER-CHAIN LYS A 235 NZ LYS B 166 NZ 0.633 INTER-CHAIN LYS A 235 NZ LYS A 187 NZ 0.668 INTRA-CHAIN LYS A 235 NZ LYS A 242 NZ 0.559 INTRA-CHAIN GLU A 238 OE1 LYS A 235 NZ -1.109 INTRA-CHAIN LYS A 242 NZ LYS A 235 NZ 0.559 INTRA-CHAIN GLU B 121 OE1 LYS A 235 NZ -1.093 INTER-CHAIN GLU B 121 OE2 LYS A 235 NZ -1.134 INTER-CHAIN GLU B 164 OE1 LYS A 235 NZ -1.765 INTER-CHAIN GLU B 164 OE2 LYS A 235 NZ -2.304 INTER-CHAIN LYS B 166 NZ LYS A 235 NZ 0.633 INTER-CHAIN ********************************* Protrusion Index: LYS A 235 N 0.20 LYS A 235 CA 0.23 LYS A 235 C 0.21 LYS A 235 O 0.23 LYS A 235 CB 0.41 LYS A 235 CG 0.41 LYS A 235 CD 0.44 LYS A 235 CE 0.65 LYS A 235 NZ 0.81 ********************************* Salt bridges: GLU B 164 LYS A 235 3.159 INTER-CHAIN ********************************* Van der Waal's Interactions: LYS A 235 NZ 1838 PHE A 236 CZ 1849 -0.015 INTRA-CHAIN THR B 105 CG2 806 LYS A 235 NZ 1838 -0.018 INTER-CHAIN GLY B 109 O 828 LYS A 235 NZ 1838 -0.010 INTER-CHAIN GLY B 110 O 832 LYS A 235 NZ 1838 -0.086 INTER-CHAIN ARG B 112 NH2 851 LYS A 235 NZ 1838 -0.015 INTER-CHAIN GLU B 164 OE2 1279 LYS A 235 NZ 1838 -0.008 INTER-CHAIN