Structural features of residue 126 in chain B
********************************* Electrostatic Interactions: GLU A 37 OE1 ASP B 126 OD2 2.827 INTER-CHAIN GLU A 37 OE2 ASP B 126 OD2 2.747 INTER-CHAIN GLU A 125 OE1 ASP B 126 OD2 4.276 INTER-CHAIN GLU A 125 OE2 ASP B 126 OD2 3.637 INTER-CHAIN GLU A 132 OE1 ASP B 126 OD2 3.946 INTER-CHAIN GLU A 132 OE2 ASP B 126 OD2 3.529 INTER-CHAIN GLU B 37 OE1 ASP B 126 OD2 2.918 INTRA-CHAIN GLU B 37 OE2 ASP B 126 OD2 2.686 INTRA-CHAIN ASP B 126 OD1 GLU B 37 OE1 2.844 INTRA-CHAIN ASP B 126 OD1 GLU A 125 OE1 4.035 INTER-CHAIN ASP B 126 OD1 GLU A 132 OE1 4.771 INTER-CHAIN ASP B 126 OD2 GLU A 37 OE1 2.827 INTER-CHAIN ASP B 126 OD2 GLU B 37 OE1 2.918 INTRA-CHAIN ASP B 126 OD2 GLU A 125 OE1 4.276 INTER-CHAIN ASP B 126 OD2 GLU A 132 OE1 3.946 INTER-CHAIN ********************************* Hydrogen bonds: ---------------------------------------------------------- |Res1 type| Res1 No.| Chain1| Res2 type| Res2 No.| Chain2| ---------------------------------------------------------- | R| 128| A| D| 126| B| ---------------------------------------------------------- ********************************* Protrusion Index: ASP B 126 N 0.75 ASP B 126 CA 0.95 ASP B 126 C 0.93 ASP B 126 O 0.89 ASP B 126 CB 1.00 ASP B 126 CG 1.17 ASP B 126 OD1 1.32 ASP B 126 OD2 1.06 ********************************* Salt bridges: ASP B 126 LYS B 127 2.270 INTRA-CHAIN ASP B 126 ARG A 128 2.860 INTER-CHAIN ********************************* Van der Waal's Interactions: ASP B 126 OD2 914 ARG A 128 NH2 934 -0.209 INTER-CHAIN ASP B 126 OD2 914 ARG B 128 NH2 934 -0.018 INTRA-CHAIN ASP B 126 OD2 914 PHE A 130 CZ 952 -0.011 INTER-CHAIN