Structural features of residue 89 in chain B
********************************* Electrostatic Interactions: ASP A 1 OD1 GLU B 89 OE1 6.717 INTER-CHAIN ASP A 1 OD2 GLU B 89 OE1 7.900 INTER-CHAIN ASP A 93 OD1 GLU B 89 OE1 2.852 INTER-CHAIN ASP A 93 OD2 GLU B 89 OE1 3.176 INTER-CHAIN ASP B 82 OD1 GLU B 89 OE1 3.241 INTRA-CHAIN ASP B 82 OD2 GLU B 89 OE1 3.419 INTRA-CHAIN GLU B 89 OE1 ASP A 1 OD2 7.900 INTER-CHAIN GLU B 89 OE1 ASP B 82 OD2 3.419 INTRA-CHAIN GLU B 89 OE1 ASP B 93 OD2 2.868 INTRA-CHAIN GLU B 89 OE1 ASP A 93 OD2 3.176 INTER-CHAIN GLU B 89 OE2 ASP A 1 OD2 6.131 INTER-CHAIN GLU B 89 OE2 ASP B 82 OD2 3.863 INTRA-CHAIN GLU B 89 OE2 ASP B 93 OD2 2.728 INTRA-CHAIN GLU B 89 OE2 ASP A 93 OD2 2.964 INTER-CHAIN ASP B 93 OD1 GLU B 89 OE1 2.999 INTRA-CHAIN ASP B 93 OD2 GLU B 89 OE1 2.868 INTRA-CHAIN ********************************* Hydrogen bonds: ---------------------------------------------------------- |Res1 type| Res1 No.| Chain1| Res2 type| Res2 No.| Chain2| ---------------------------------------------------------- | D| 1| A| E| 89| B| ---------------------------------------------------------- ********************************* Protrusion Index: GLU B 89 N 0.78 GLU B 89 CA 0.93 GLU B 89 C 0.95 GLU B 89 O 0.80 GLU B 89 CB 0.88 GLU B 89 CG 0.58 GLU B 89 CD 0.52 GLU B 89 OE1 0.67 GLU B 89 OE2 0.43 ********************************* Salt bridges: ASP A 1 GLU B 89 2.556 INTER-CHAIN ********************************* Van der Waal's Interactions: ASP A 1 OD2 18 GLU B 89 OE2 1469 -0.012 INTER-CHAIN TRP A 2 CH2 32 GLU B 89 OE2 1469 -0.124 INTER-CHAIN LEU B 34 CD2 1043 GLU B 89 OE2 1469 -0.048 INTRA-CHAIN TYR B 36 OH 1066 GLU B 89 OE2 1469 -0.038 INTRA-CHAIN ALA B 80 CB 1401 GLU B 89 OE2 1469 -0.970 INTRA-CHAIN VAL B 88 CG2 1460 GLU B 89 OE2 1469 -0.440 INTRA-CHAIN