Structural features of residue 35 in chain H

********************************* Electrostatic Interactions: HIS H 35 ND1 ARG H 98 NH1 2.508 INTRA-CHAIN HIS H 35 ND1 HIS H 100 ND1 0.780 INTRA-CHAIN HIS H 35 ND1 HIS H 100 NE2 1.674 INTRA-CHAIN HIS H 35 ND1 ASP H 104 OD1 -3.508 INTRA-CHAIN HIS H 35 NE2 ARG H 98 NH1 2.858 INTRA-CHAIN HIS H 35 NE2 HIS H 100 ND1 0.930 INTRA-CHAIN HIS H 35 NE2 HIS H 100 NE2 1.989 INTRA-CHAIN HIS H 35 NE2 ASP H 104 OD1 -4.751 INTRA-CHAIN ARG H 98 NH1 HIS H 35 NE2 2.858 INTRA-CHAIN ARG H 98 NH2 HIS H 35 NE2 2.835 INTRA-CHAIN HIS H 100 ND1 HIS H 35 ND1 0.780 INTRA-CHAIN HIS H 100 ND1 HIS H 35 NE2 2.092 INTRA-CHAIN HIS H 100 NE2 HIS H 35 ND1 0.744 INTRA-CHAIN HIS H 100 NE2 HIS H 35 NE2 1.989 INTRA-CHAIN ASP H 104 OD1 HIS H 35 ND1 -3.508 INTRA-CHAIN ASP H 104 OD2 HIS H 35 ND1 -3.142 INTRA-CHAIN ********************************* Protrusion Index: HIS H 35 N -0.11 HIS H 35 CA -0.06 HIS H 35 C -0.04 HIS H 35 O -0.04 HIS H 35 CB -0.02 HIS H 35 CG -0.09 HIS H 35 ND1 -0.08 HIS H 35 CD2 -0.11 HIS H 35 CE1 -0.06 HIS H 35 NE2 -0.04 ********************************* Van der Waal's Interactions: HIS H 35 NE2 1910 GLY H 49 O 2027 -0.015 INTRA-CHAIN HIS H 35 NE2 1910 TYR L 94 OH 724 -0.035 INTER-CHAIN HIS H 35 NE2 1910 TYR L 96 OH 743 -0.058 INTER-CHAIN HIS H 35 NE2 1910 THR H 97 CG2 2405 -0.015 INTRA-CHAIN HIS H 35 NE2 1910 SER H 99 OG 2422 -0.371 INTRA-CHAIN HIS H 35 NE2 1910 ASP H 104 OD2 2464 -0.046 INTRA-CHAIN HIS H 35 NE2 1910 PHE H 107 CZ 2497 -0.106 INTRA-CHAIN