==== Secondary Structure Definition by the program DSSP, updated CMBI version by ElmK / April 1,2000 ==== DATE=20-JUL-2011 . REFERENCE W. KABSCH AND C.SANDER, BIOPOLYMERS 22 (1983) 2577-2637 . HEADER TRANSPORT PROTEIN/HYDROLASE 04-APR-07 2YSU . COMPND 2 MOLECULE: VITAMIN B12 TRANSPORTER BTUB; . SOURCE 2 ORGANISM_SCIENTIFIC: ESCHERICHIA COLI; . AUTHOR W.A.CRAMER,O.SHARMA,E.YAMASHITA . 699 3 0 0 0 TOTAL NUMBER OF RESIDUES, NUMBER OF CHAINS, NUMBER OF SS-BRIDGES(TOTAL,INTRACHAIN,INTERCHAIN) . 32845.0 ACCESSIBLE SURFACE OF PROTEIN (ANGSTROM**2) . 554 79.3 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(J) , SAME NUMBER PER 100 RESIDUES . 6 0.9 TOTAL NUMBER OF HYDROGEN BONDS IN PARALLEL BRIDGES, SAME NUMBER PER 100 RESIDUES . 303 43.3 TOTAL NUMBER OF HYDROGEN BONDS IN ANTIPARALLEL BRIDGES, SAME NUMBER PER 100 RESIDUES . 2 0.3 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I-5), SAME NUMBER PER 100 RESIDUES . 5 0.7 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I-4), SAME NUMBER PER 100 RESIDUES . 9 1.3 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I-3), SAME NUMBER PER 100 RESIDUES . 1 0.1 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I-2), SAME NUMBER PER 100 RESIDUES . 1 0.1 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I-1), SAME NUMBER PER 100 RESIDUES . 0 0.0 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I+0), SAME NUMBER PER 100 RESIDUES . 0 0.0 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I+1), SAME NUMBER PER 100 RESIDUES . 59 8.4 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I+2), SAME NUMBER PER 100 RESIDUES . 43 6.2 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I+3), SAME NUMBER PER 100 RESIDUES . 120 17.2 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I+4), SAME NUMBER PER 100 RESIDUES . 3 0.4 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I+5), SAME NUMBER PER 100 RESIDUES . 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 *** HISTOGRAMS OF *** . 0 0 0 2 2 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 2 RESIDUES PER ALPHA HELIX . 0 0 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 PARALLEL BRIDGES PER LADDER . 3 3 1 0 2 1 3 5 1 3 0 3 2 1 1 2 1 0 0 0 0 0 0 0 0 0 0 0 0 0 ANTIPARALLEL BRIDGES PER LADDER . 3 0 0 1 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 1 0 0 0 0 0 0 LADDERS PER SHEET . # RESIDUE AA STRUCTURE BP1 BP2 ACC N-H-->O O-->H-N N-H-->O O-->H-N TCO KAPPA ALPHA PHI PSI X-CA Y-CA Z-CA 1 4 A S 0 0 84 0, 0.0 15,-0.2 0, 0.0 23,-0.0 0.000 360.0 360.0 360.0 -31.6 13.3 45.4 123.1 2 5 A P + 0 0 60 0, 0.0 411,-0.0 0, 0.0 0, 0.0 0.239 360.0 22.2 -29.3 137.5 17.1 45.3 124.0 3 6 A D S S+ 0 0 109 1,-0.2 2,-0.3 0, 0.0 0, 0.0 0.863 89.3 123.3 66.7 44.2 18.5 42.4 126.1 4 7 A T - 0 0 55 10,-0.1 12,-4.2 -3,-0.0 -1,-0.2 -0.794 63.2 -81.2-123.6 174.2 15.9 39.7 125.4 5 8 A L E +A 15 0A 93 10,-0.3 2,-0.3 -2,-0.3 8,-0.1 -0.455 39.7 175.5 -88.1 141.9 16.3 36.1 124.0 6 9 A V E -A 14 0A 0 8,-2.3 8,-1.4 -2,-0.2 19,-0.0 -0.940 19.4-168.0-131.7 161.2 16.6 35.0 120.4 7 10 A V S > S+ 0 0 47 -2,-0.3 4,-1.0 6,-0.2 3,-0.4 0.576 74.4 80.2-115.0 -21.0 17.2 31.6 118.8 8 11 A T T 4 S+ 0 0 0 1,-0.2 3,-0.1 2,-0.2 5,-0.1 0.764 76.5 71.3 -66.0 -29.9 17.9 32.6 115.2 9 12 A A T 4 S- 0 0 3 1,-0.2 -1,-0.2 3,-0.2 4,-0.1 0.915 129.4 -10.2 -56.5 -53.3 21.6 33.6 115.7 10 13 A N T 4 S- 0 0 12 2,-0.6 -1,-0.2 -3,-0.4 -2,-0.2 -0.065 102.3 -93.5-139.6 37.0 23.0 30.1 116.2 11 14 A R S < S+ 0 0 10 -4,-1.0 2,-0.3 1,-0.2 -3,-0.2 0.236 101.5 87.3 72.3 -11.0 19.9 28.0 116.6 12 15 A F S S- 0 0 11 -5,-0.1 -2,-0.6 1,-0.1 -3,-0.2 -0.815 87.6 -83.0-122.3 160.9 20.0 28.3 120.3 13 16 A E + 0 0 116 -2,-0.3 -6,-0.2 -4,-0.1 -1,-0.1 -0.254 54.7 148.7 -60.7 136.8 18.8 30.8 123.0 14 17 A Q E -A 6 0A 14 -8,-1.4 -8,-2.3 -10,-0.0 -5,-0.1 -0.887 52.2 -93.0-166.0 142.6 20.8 33.9 123.7 15 18 A P E > -A 5 0A 54 0, 0.0 3,-1.5 0, 0.0 4,-0.4 -0.355 36.7-129.2 -55.1 133.2 20.2 37.6 124.8 16 19 A R G > S+ 0 0 33 -12,-4.2 3,-0.7 1,-0.3 -11,-0.1 0.712 106.0 64.5 -66.2 -23.7 19.9 39.8 121.7 17 20 A S G 3 S+ 0 0 47 1,-0.2 -1,-0.3 -13,-0.2 -12,-0.1 0.866 99.5 55.2 -59.8 -36.4 22.4 42.3 123.0 18 21 A T G < S+ 0 0 16 -3,-1.5 2,-0.8 2,-0.0 -1,-0.2 0.555 84.3 92.2 -80.9 -9.7 25.0 39.4 122.8 19 22 A V < - 0 0 3 -3,-0.7 4,-0.1 -4,-0.4 -5,-0.0 -0.810 66.4-159.8 -82.6 113.2 24.2 38.8 119.1 20 23 A L + 0 0 1 -2,-0.8 -1,-0.2 2,-0.1 3,-0.1 0.853 65.5 82.7 -67.5 -37.9 26.8 41.1 117.5 21 24 A A S S- 0 0 11 1,-0.1 88,-0.1 -3,-0.1 -2,-0.1 -0.351 99.6 -87.5 -68.4 148.4 25.0 41.4 114.1 22 25 A P - 0 0 6 0, 0.0 86,-2.2 0, 0.0 2,-0.3 -0.327 58.4-177.2 -63.8 134.6 22.1 43.9 113.8 23 26 A T E -B 107 0B 18 84,-0.2 2,-0.3 -4,-0.1 84,-0.2 -0.888 23.2-167.1-137.5 155.9 18.9 42.4 114.9 24 27 A T E -B 106 0B 26 82,-1.6 82,-2.6 -2,-0.3 2,-0.4 -0.984 7.1-161.4-141.6 147.2 15.1 43.0 115.2 25 28 A V E -B 105 0B 8 -2,-0.3 2,-0.4 80,-0.2 80,-0.2 -0.999 1.4-164.6-129.5 130.2 12.4 41.2 117.0 26 29 A V E -B 104 0B 1 78,-2.4 78,-2.3 -2,-0.4 2,-0.2 -0.958 11.1-157.8-114.4 136.5 8.6 41.4 116.5 27 30 A T E > -B 103 0B 46 -2,-0.4 4,-3.0 76,-0.2 76,-0.2 -0.668 32.0-115.7-105.8 158.7 6.1 40.1 119.0 28 31 A R H > S+ 0 0 20 74,-1.0 4,-4.2 2,-0.2 5,-0.3 0.963 125.4 51.3 -52.9 -50.0 2.5 39.0 118.8 29 32 A Q H > S+ 0 0 133 1,-0.2 4,-2.1 2,-0.2 5,-0.2 0.965 110.2 48.8 -46.6 -56.2 1.9 41.9 121.1 30 33 A D H > S+ 0 0 46 1,-0.2 4,-0.9 2,-0.2 -2,-0.2 0.870 116.9 42.4 -52.3 -41.1 3.9 44.0 118.6 31 34 A I H <>S+ 0 0 7 -4,-3.0 5,-1.3 2,-0.2 4,-0.5 0.907 109.9 54.4 -74.0 -45.8 1.8 42.5 115.7 32 35 A D H ><5S+ 0 0 45 -4,-4.2 3,-1.0 1,-0.2 -2,-0.2 0.878 108.2 51.3 -57.9 -38.3 -1.6 42.7 117.4 33 36 A R H 3<5S+ 0 0 41 -4,-2.1 -1,-0.2 -5,-0.3 -2,-0.2 0.798 108.1 50.9 -71.3 -30.9 -1.1 46.4 118.1 34 37 A W T 3<5S- 0 0 27 -4,-0.9 -1,-0.3 -3,-0.4 -2,-0.2 0.491 101.3-137.7 -80.4 -4.1 -0.2 47.2 114.4 35 38 A Q T < 5 - 0 0 20 -3,-1.0 2,-0.2 -4,-0.5 -3,-0.2 0.882 34.5-174.7 40.9 48.2 -3.4 45.3 113.4 36 39 A S < - 0 0 14 -5,-1.3 -1,-0.2 1,-0.1 3,-0.1 -0.508 23.7-173.8 -74.6 138.7 -1.3 43.7 110.6 37 40 A T + 0 0 55 -2,-0.2 2,-0.3 1,-0.1 61,-0.3 0.279 68.2 39.1-114.0 4.5 -3.2 41.5 108.1 38 41 A S S >> S- 0 0 27 1,-0.1 4,-1.1 60,-0.1 3,-0.6 -0.990 73.2-125.7-152.7 152.8 -0.2 40.2 106.2 39 42 A V H 3> S+ 0 0 1 57,-0.5 4,-2.5 54,-0.5 3,-0.4 0.881 112.6 62.3 -65.5 -37.3 3.3 39.0 106.9 40 43 A N H 3> S+ 0 0 5 53,-0.3 4,-2.0 1,-0.2 -1,-0.2 0.778 102.1 50.7 -57.7 -29.3 4.5 41.5 104.3 41 44 A D H <4 S+ 0 0 28 -3,-0.6 4,-0.4 2,-0.2 -1,-0.2 0.804 107.8 52.1 -79.5 -30.7 3.1 44.3 106.5 42 45 A V H >< S+ 0 0 0 -4,-1.1 3,-0.7 -3,-0.4 -2,-0.2 0.946 119.2 35.9 -67.2 -45.6 4.9 43.0 109.6 43 46 A L H >< S+ 0 0 1 -4,-2.5 3,-2.6 1,-0.2 -2,-0.2 0.863 100.5 78.1 -73.0 -35.7 8.2 42.9 107.7 44 47 A R T 3< S+ 0 0 35 -4,-2.0 -1,-0.2 1,-0.3 7,-0.2 0.659 98.3 44.9 -49.3 -22.0 7.5 46.1 105.7 45 48 A R T < S+ 0 0 24 -3,-0.7 -1,-0.3 -4,-0.4 -2,-0.2 0.386 88.0 99.3-111.2 0.5 8.3 48.2 108.7 46 49 A L S X S- 0 0 8 -3,-2.6 3,-1.5 -4,-0.1 -22,-0.0 -0.656 86.2 -89.0 -84.6 147.6 11.5 46.6 109.9 47 50 A P T 3 S+ 0 0 11 0, 0.0 -1,-0.1 0, 0.0 3,-0.1 -0.143 108.2 17.2 -60.4 149.1 14.8 48.3 108.9 48 51 A G T 3 S+ 0 0 7 1,-0.2 18,-2.1 17,-0.1 2,-0.5 0.317 93.2 126.1 74.7 -8.8 16.5 47.3 105.7 49 52 A V E < +F 65 0C 3 -3,-1.5 2,-0.4 16,-0.2 -1,-0.2 -0.731 32.1 175.2 -86.4 125.0 13.3 45.7 104.4 50 53 A D E -F 64 0C 10 14,-1.4 14,-1.7 -2,-0.5 2,-0.3 -0.927 12.0-172.8-132.7 104.5 12.2 47.1 101.1 51 54 A I E -F 63 0C 23 -2,-0.4 2,-0.3 12,-0.2 12,-0.2 -0.799 12.8-168.8-110.5 142.5 9.1 45.3 99.7 52 55 A T E -F 62 0C 0 10,-1.8 10,-2.1 -2,-0.3 2,-0.3 -0.953 9.4-175.4-122.0 147.4 7.3 45.4 96.4 53 56 A Q E -F 61 0C 28 -2,-0.3 2,-1.4 8,-0.2 506,-0.5 -0.999 34.8-126.7-144.7 141.8 3.9 43.9 95.6 54 57 A N S S- 0 0 9 6,-2.1 2,-0.4 -2,-0.3 6,-0.2 -0.268 78.4 -70.3 -79.5 48.3 1.6 43.4 92.5 55 58 A G S S+ 0 0 8 -2,-1.4 509,-0.1 507,-0.3 3,-0.1 -0.856 91.6 7.1 112.2-136.4 -1.3 45.0 94.4 56 59 A G S > S- 0 0 41 -2,-0.4 3,-1.0 1,-0.2 -2,-0.1 0.404 96.1 -35.6 -71.5-155.8 -3.4 43.8 97.3 57 60 A S T 3 S+ 0 0 34 116,-0.2 -1,-0.2 1,-0.2 3,-0.1 -0.350 123.7 17.2 -68.7 148.2 -3.2 40.7 99.5 58 61 A G T 3 S+ 0 0 4 36,-0.6 -1,-0.2 1,-0.2 3,-0.1 0.228 92.2 139.3 78.2 -13.2 -2.0 37.4 98.2 59 62 A Q < - 0 0 20 -3,-1.0 -1,-0.2 1,-0.2 -4,-0.1 -0.322 69.9 -82.7 -71.0 144.6 -0.5 39.1 95.2 60 63 A L + 0 0 93 -6,-0.2 -6,-2.1 -7,-0.1 2,-0.3 -0.175 64.6 173.7 -47.5 121.4 2.9 38.1 93.9 61 64 A S E -F 53 0C 2 -8,-0.2 2,-0.4 -3,-0.1 -8,-0.2 -0.975 21.4-159.6-140.5 151.2 5.4 39.9 96.1 62 65 A S E -F 52 0C 15 -10,-2.1 -10,-1.8 -2,-0.3 2,-0.3 -0.993 10.2-142.2-141.6 135.9 9.2 40.1 96.7 63 66 A I E -F 51 0C 0 28,-0.5 2,-0.5 -2,-0.4 9,-0.3 -0.723 7.2-164.8 -98.9 136.5 11.4 41.2 99.5 64 67 A F E -F 50 0C 12 -14,-1.7 -14,-1.4 -2,-0.3 2,-0.4 -0.937 7.4-163.2-121.2 105.9 14.8 43.1 99.2 65 68 A I E > S-F 49 0C 0 -2,-0.5 3,-2.8 4,-0.4 -16,-0.2 -0.757 75.6 -15.9 -86.4 131.0 16.9 43.2 102.4 66 69 A R T 3 S- 0 0 4 -18,-2.1 -1,-0.2 -2,-0.4 -17,-0.1 0.786 127.1 -57.2 47.0 34.6 19.7 45.8 102.4 67 70 A G T 3 S+ 0 0 3 -19,-0.4 -1,-0.3 -3,-0.4 -2,-0.1 0.379 103.3 134.6 84.6 -1.9 19.3 46.2 98.6 68 71 A T < - 0 0 1 -3,-2.8 -1,-0.2 1,-0.2 4,-0.1 -0.160 61.7 -79.5 -74.0 169.9 20.0 42.6 97.8 69 72 A N > - 0 0 47 -5,-0.1 3,-1.8 1,-0.1 -4,-0.4 -0.189 38.8-108.5 -63.5 160.0 18.0 40.4 95.3 70 73 A A G > S+ 0 0 15 1,-0.3 3,-0.7 2,-0.1 21,-0.7 0.820 121.7 57.5 -55.4 -33.1 14.6 38.8 96.1 71 74 A S G 3 S+ 0 0 31 1,-0.2 -1,-0.3 19,-0.2 -2,-0.1 0.108 91.0 75.7 -87.5 19.8 16.5 35.5 96.2 72 75 A H G < S+ 0 0 1 -3,-1.8 49,-2.5 -9,-0.3 48,-1.5 0.312 73.9 81.8-119.1 8.5 18.9 36.7 98.8 73 76 A V E < -c 122 0B 5 -3,-0.7 2,-0.6 48,-0.2 18,-0.4 -0.967 67.1-145.5-112.3 125.2 16.9 36.5 102.0 74 77 A L E -c 123 0B 1 48,-1.5 50,-2.7 -2,-0.5 2,-0.5 -0.800 14.8-163.2 -82.5 119.7 16.4 33.2 103.8 75 78 A V E -c 124 0B 4 -2,-0.6 7,-2.8 48,-0.2 2,-0.4 -0.939 8.4-166.9-104.7 124.5 13.0 33.0 105.3 76 79 A L E -cD 125 81B 3 48,-2.7 50,-2.9 -2,-0.5 2,-0.6 -0.918 17.5-151.7-113.7 138.9 12.6 30.3 107.9 77 80 A I E > S-cD 126 80B 5 3,-2.4 3,-1.6 -2,-0.4 50,-0.2 -0.944 90.2 -23.8-104.3 113.7 9.4 28.9 109.5 78 81 A D T 3 S- 0 0 32 48,-1.2 -1,-0.1 -2,-0.6 49,-0.1 0.543 132.1 -48.2 57.7 8.9 10.4 27.7 113.0 79 82 A G T 3 S+ 0 0 11 1,-0.3 2,-0.4 47,-0.2 -1,-0.3 0.367 116.5 103.1 120.6 -3.8 13.9 27.4 111.7 80 83 A V E < S-D 77 0B 14 -3,-1.6 -3,-2.4 1,-0.1 -1,-0.3 -0.953 83.1 -88.9-116.7 131.5 13.5 25.5 108.5 81 84 A R E -D 76 0B 33 -2,-0.4 -5,-0.2 -5,-0.2 2,-0.1 0.079 55.8 -93.8 -33.2 130.2 13.7 27.1 105.0 82 85 A L > - 0 0 1 -7,-2.8 3,-1.8 1,-0.2 4,-0.4 -0.336 30.2-142.8 -58.7 122.4 10.2 28.4 103.9 83 86 A N T > S+ 0 0 9 1,-0.3 3,-0.8 -3,-0.2 4,-0.3 0.728 96.5 64.0 -65.4 -22.5 8.8 25.6 101.9 84 87 A L T 3> S+ 0 0 33 1,-0.2 4,-0.5 2,-0.1 -1,-0.3 0.669 93.6 62.1 -74.0 -19.0 7.1 28.0 99.4 85 88 A A H <>>S+ 0 0 16 -3,-1.8 4,-3.0 1,-0.2 5,-0.7 0.672 82.1 90.2 -76.3 -17.6 10.6 29.3 98.3 86 89 A G H <45S+ 0 0 13 -3,-0.8 295,-0.4 -4,-0.4 -1,-0.2 0.872 91.1 31.7 -46.9 -60.0 11.4 25.8 97.0 87 90 A V H 45S+ 0 0 25 -4,-0.3 295,-0.5 -3,-0.2 -1,-0.2 0.949 126.9 39.2 -70.5 -52.9 10.3 25.9 93.4 88 91 A S H <5S- 0 0 68 -4,-0.5 -2,-0.2 2,-0.2 -1,-0.2 0.850 94.6-136.1 -62.7 -39.6 10.9 29.6 92.7 89 92 A G T <5S+ 0 0 10 -4,-3.0 2,-0.3 1,-0.2 -3,-0.2 0.857 76.5 94.9 73.7 40.6 14.1 29.8 94.6 90 93 A S S + 0 0 31 -30,-0.1 3,-0.5 -2,-0.1 4,-0.1 -0.834 11.3 176.3-148.4 107.6 7.4 35.1 98.9 93 96 A L G > + 0 0 1 -2,-0.3 3,-0.5 1,-0.2 -54,-0.5 0.410 59.0 94.6 -99.1 3.5 5.3 35.8 102.0 94 97 A S G 3 S+ 0 0 9 1,-0.2 -36,-0.6 -33,-0.2 -1,-0.2 0.744 95.5 41.7 -60.7 -22.8 2.1 37.2 100.4 95 98 A Q G < S+ 0 0 2 -3,-0.5 -1,-0.2 -34,-0.1 -2,-0.2 0.557 90.2 97.4-104.5 -12.9 0.7 33.7 100.5 96 99 A F S < S- 0 0 5 -3,-0.5 -57,-0.5 -4,-0.1 -38,-0.1 -0.732 84.1-112.8 -84.5 118.1 1.9 32.6 104.0 97 100 A P > - 0 0 6 0, 0.0 3,-0.9 0, 0.0 4,-0.3 -0.160 11.9-143.1 -56.0 134.2 -0.9 33.1 106.5 98 101 A I G > S+ 0 0 39 -61,-0.3 3,-1.4 1,-0.2 -60,-0.1 0.742 91.8 76.1 -66.6 -25.2 -0.4 35.8 109.1 99 102 A A G 3 S+ 0 0 6 1,-0.3 -1,-0.2 -62,-0.1 -61,-0.0 0.728 89.2 56.2 -65.7 -20.6 -2.2 33.7 111.7 100 103 A L G < S+ 0 0 1 -3,-0.9 -1,-0.3 29,-0.0 2,-0.2 0.714 84.4 103.8 -81.6 -17.7 0.8 31.4 112.2 101 104 A V < + 0 0 2 -3,-1.4 27,-0.2 -4,-0.3 3,-0.1 -0.457 27.3 145.1 -72.0 128.6 3.1 34.4 113.0 102 105 A Q S S+ 0 0 10 25,-2.1 -74,-1.0 1,-0.5 2,-0.3 0.542 70.9 12.0-130.0 -34.1 4.0 34.8 116.7 103 106 A R E -BE 27 127B 61 24,-1.5 24,-2.5 -76,-0.2 -1,-0.5 -0.987 57.0-158.7-146.1 139.4 7.6 36.0 116.7 104 107 A V E -BE 26 126B 0 -78,-2.3 -78,-2.4 -2,-0.3 2,-0.5 -0.964 8.6-172.6-119.8 112.7 9.8 37.4 114.0 105 108 A E E -BE 25 125B 7 20,-2.1 20,-2.8 -2,-0.5 2,-0.4 -0.925 11.3-178.0-101.0 129.7 13.5 37.2 114.7 106 109 A Y E -BE 24 124B 0 -82,-2.6 -82,-1.6 -2,-0.5 2,-0.6 -0.907 11.1-175.6-142.0 102.0 15.3 39.0 112.0 107 110 A I E -BE 23 123B 0 16,-1.0 16,-1.6 -2,-0.4 2,-0.4 -0.886 17.9-144.4-108.1 113.8 19.1 39.3 111.9 108 111 A R E + E 0 122B 5 -86,-2.2 14,-0.3 -2,-0.6 13,-0.1 -0.605 59.2 54.6 -80.5 127.9 20.6 41.5 109.1 109 112 A G S S- 0 0 3 12,-1.6 -2,-0.1 -2,-0.4 12,-0.0 -0.551 93.9 -39.4 133.3 162.7 23.8 40.2 107.6 110 113 A P + 0 0 15 0, 0.0 10,-0.2 0, 0.0 13,-0.1 -0.230 50.8 162.2 -55.2 135.7 25.4 37.1 106.0 111 114 A R >> + 0 0 6 8,-2.6 4,-2.7 5,-0.2 3,-1.5 0.132 35.9 113.2-145.9 23.1 24.4 33.8 107.6 112 115 A S H 3> S+ 0 0 0 7,-0.6 4,-2.4 1,-0.3 263,-0.1 0.836 74.5 67.3 -64.2 -30.2 25.2 31.0 105.2 113 116 A A H 34 S+ 0 0 0 261,-0.3 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