Structural features of residue 55 in chain A
********************************* Electrostatic Interactions: GLU A 50 OE1 ASP A 55 OD2 2.996 INTRA-CHAIN GLU A 50 OE2 ASP A 55 OD2 2.990 INTRA-CHAIN GLU A 54 OE1 ASP A 55 OD2 5.230 INTRA-CHAIN GLU A 54 OE2 ASP A 55 OD2 4.174 INTRA-CHAIN ASP A 55 OD1 GLU A 50 OE1 3.290 INTRA-CHAIN ASP A 55 OD1 GLU A 54 OE1 6.884 INTRA-CHAIN ASP A 55 OD1 GLU A 67 OE1 3.837 INTRA-CHAIN ASP A 55 OD1 GLU B 122 OE1 3.613 INTER-CHAIN ASP A 55 OD2 GLU A 50 OE1 2.996 INTRA-CHAIN ASP A 55 OD2 GLU A 54 OE1 5.230 INTRA-CHAIN ASP A 55 OD2 GLU A 67 OE1 4.821 INTRA-CHAIN ASP A 55 OD2 GLU B 122 OE1 4.313 INTER-CHAIN GLU A 67 OE1 ASP A 55 OD2 4.821 INTRA-CHAIN GLU A 67 OE2 ASP A 55 OD2 4.016 INTRA-CHAIN GLU B 122 OE1 ASP A 55 OD2 4.313 INTER-CHAIN GLU B 122 OE2 ASP A 55 OD2 3.916 INTER-CHAIN ********************************* Hydrogen bonds: ---------------------------------------------------------- |Res1 type| Res1 No.| Chain1| Res2 type| Res2 No.| Chain2| ---------------------------------------------------------- | S| 118| B| D| 55| A| ---------------------------------------------------------- | A| 120| B| D| 55| A| ---------------------------------------------------------- ********************************* Protrusion Index: ASP A 55 N 0.34 ASP A 55 CA 0.31 ASP A 55 C 0.23 ASP A 55 O 0.21 ASP A 55 CB 0.20 ASP A 55 CG 0.27 ASP A 55 OD1 0.46 ASP A 55 OD2 0.21 ********************************* Short Contacts: ASP A 55 OD2 SER B 118 OG -0.027 INTER-CHAIN ********************************* Van der Waal's Interactions: ASP A 55 OD2 290 SER B 118 OG 805 -3.929 INTER-CHAIN ASP A 55 OD2 290 VAL B 121 CG2 826 -0.027 INTER-CHAIN