Structural features of residue 40 in chain B

********************************* Electrostatic Interactions: GLU A 65 OE1 LYS B 40 NZ -1.212 INTER-CHAIN GLU A 65 OE2 LYS B 40 NZ -1.099 INTER-CHAIN LYS A 77 NZ LYS B 40 NZ 0.495 INTER-CHAIN GLU B 20 OE1 LYS B 40 NZ -1.101 INTRA-CHAIN GLU B 20 OE2 LYS B 40 NZ -1.202 INTRA-CHAIN GLU B 35 OE1 LYS B 40 NZ -1.183 INTRA-CHAIN GLU B 35 OE2 LYS B 40 NZ -1.073 INTRA-CHAIN GLU B 37 OE1 LYS B 40 NZ -1.859 INTRA-CHAIN GLU B 37 OE2 LYS B 40 NZ -1.582 INTRA-CHAIN LYS B 40 NZ GLU B 20 OE2 -1.202 INTRA-CHAIN LYS B 40 NZ GLU B 35 OE2 -1.073 INTRA-CHAIN LYS B 40 NZ GLU B 37 OE2 -1.582 INTRA-CHAIN LYS B 40 NZ GLU A 65 OE2 -1.099 INTER-CHAIN LYS B 40 NZ LYS A 77 NZ 0.495 INTER-CHAIN ********************************* Hydrogen bonds: ---------------------------------------------------------- |Res1 type| Res1 No.| Chain1| Res2 type| Res2 No.| Chain2| ---------------------------------------------------------- | K| 143| A| K| 40| B| ---------------------------------------------------------- | K| 40| B| K| 145| A| ---------------------------------------------------------- ********************************* Protrusion Index: LYS B 40 N 0.24 LYS B 40 CA 0.32 LYS B 40 C 0.29 LYS B 40 O 0.31 LYS B 40 CB 0.60 LYS B 40 CG 0.62 LYS B 40 CD 0.95 LYS B 40 CE 1.13 LYS B 40 NZ 1.82 ********************************* Van der Waal's Interactions: LYS B 40 NZ 1277 THR A 53 CG2 304 -0.012 INTER-CHAIN