Structural features of residue 188 in chain B
********************************* Electrostatic Interactions: LYS A 388 NZ LYS B 188 NZ 0.507 INTER-CHAIN LYS A 426 NZ LYS B 188 NZ 0.487 INTER-CHAIN LYS B 186 NZ LYS B 188 NZ 0.464 INTRA-CHAIN LYS B 188 NZ LYS B 186 NZ 0.464 INTRA-CHAIN LYS B 188 NZ GLU B 243 OE2 -1.150 INTRA-CHAIN LYS B 188 NZ LYS A 388 NZ 0.507 INTER-CHAIN LYS B 188 NZ LYS B 388 NZ 0.588 INTRA-CHAIN LYS B 188 NZ GLU B 392 OE2 -1.128 INTRA-CHAIN LYS B 188 NZ LYS B 426 NZ 0.528 INTRA-CHAIN LYS B 188 NZ LYS A 426 NZ 0.487 INTER-CHAIN GLU B 243 OE2 LYS B 188 NZ -1.150 INTRA-CHAIN LYS B 388 NZ LYS B 188 NZ 0.588 INTRA-CHAIN GLU B 392 OE2 LYS B 188 NZ -1.128 INTRA-CHAIN LYS B 426 NZ LYS B 188 NZ 0.528 INTRA-CHAIN ********************************* Protrusion Index: LYS B 188 N 0.05 LYS B 188 CA 0.02 LYS B 188 C -0.01 LYS B 188 O 0.05 LYS B 188 CB 0.01 LYS B 188 CG 0.04 LYS B 188 CD 0.10 LYS B 188 CE 0.14 LYS B 188 NZ 0.13 ********************************* Van der Waal's Interactions: SER B 187 OG 1414 LYS B 188 NZ 1423 -0.008 INTRA-CHAIN LYS B 188 NZ 1423 LEU B 192 CD2 1458 -0.008 INTRA-CHAIN LYS B 188 NZ 1423 ASP B 223 OD2 1682 -0.011 INTRA-CHAIN LYS B 188 NZ 1423 GLN A 251 NE2 1885 -0.013 INTER-CHAIN LYS B 188 NZ 1423 TYR A 432 OXT 3322 -0.083 INTER-CHAIN LYS B 188 NZ 1423 TYR B 432 OXT 3322 -0.863 INTRA-CHAIN