Structural features of residue 121 in chain L
********************************* Electrostatic Interactions: LYS H 208 NZ GLU L 121 OE2 -1.065 INTER-CHAIN ASP H 210 OD1 GLU L 121 OE1 3.084 INTER-CHAIN ASP H 210 OD2 GLU L 121 OE1 3.194 INTER-CHAIN LYS H 211 NZ GLU L 121 OE2 -5.422 INTER-CHAIN LYS H 212 NZ GLU L 121 OE2 -1.261 INTER-CHAIN GLU L 121 OE1 LYS H 208 NZ -1.104 INTER-CHAIN GLU L 121 OE1 ASP H 210 OD2 3.194 INTER-CHAIN GLU L 121 OE1 LYS H 211 NZ -5.209 INTER-CHAIN GLU L 121 OE1 LYS H 212 NZ -1.133 INTER-CHAIN GLU L 121 OE2 LYS H 208 NZ -1.065 INTER-CHAIN GLU L 121 OE2 ASP H 210 OD2 3.140 INTER-CHAIN GLU L 121 OE2 LYS H 211 NZ -5.422 INTER-CHAIN GLU L 121 OE2 LYS H 212 NZ -1.261 INTER-CHAIN ********************************* Hydrogen bonds: ---------------------------------------------------------- |Res1 type| Res1 No.| Chain1| Res2 type| Res2 No.| Chain2| ---------------------------------------------------------- | K| 211| H| E| 121| L| ---------------------------------------------------------- ********************************* Protrusion Index: GLU L 121 N 1.02 GLU L 121 CA 0.98 GLU L 121 C 0.78 GLU L 121 O 1.00 GLU L 121 CB 0.91 GLU L 121 CG 1.13 GLU L 121 CD 0.91 GLU L 121 OE1 0.81 GLU L 121 OE2 0.89 ********************************* Salt bridges: GLU L 121 LYS H 211 3.040 INTER-CHAIN ********************************* Van der Waal's Interactions: SER L 119 OG 897 GLU L 121 OE2 912 -0.023 INTRA-CHAIN SER L 120 OG 903 GLU L 121 OE2 912 -0.010 INTRA-CHAIN GLU L 121 OE2 912 PRO H 126 CD 2598 -0.311 INTER-CHAIN GLU L 121 OE2 912 LYS H 211 NZ 3211 -1.241 INTER-CHAIN