==== 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 LIGASE 19-MAR-08 2ZKD . COMPND 2 MOLECULE: E3 UBIQUITIN-PROTEIN LIGASE UHRF1; . SOURCE 2 ORGANISM_SCIENTIFIC: MUS MUSCULUS; . AUTHOR K.ARITA,M.ARIYOSHI,H.TOCHIO,Y.NAKAMURA,M.SHIRAKAWA . 419 2 0 0 0 TOTAL NUMBER OF RESIDUES, NUMBER OF CHAINS, NUMBER OF SS-BRIDGES(TOTAL,INTRACHAIN,INTERCHAIN) . 21552.0 ACCESSIBLE SURFACE OF PROTEIN (ANGSTROM**2) . 233 55.6 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(J) , SAME NUMBER PER 100 RESIDUES . 14 3.3 TOTAL NUMBER OF HYDROGEN BONDS IN PARALLEL BRIDGES, SAME NUMBER PER 100 RESIDUES . 84 20.0 TOTAL NUMBER OF HYDROGEN BONDS IN ANTIPARALLEL BRIDGES, SAME NUMBER PER 100 RESIDUES . 0 0.0 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I-5), SAME NUMBER PER 100 RESIDUES . 4 1.0 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I-4), SAME NUMBER PER 100 RESIDUES . 2 0.5 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I-3), SAME NUMBER PER 100 RESIDUES . 0 0.0 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I-2), 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 . 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 . 25 6.0 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I+2), SAME NUMBER PER 100 RESIDUES . 48 11.5 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I+3), SAME NUMBER PER 100 RESIDUES . 42 10.0 TOTAL NUMBER OF HYDROGEN BONDS OF TYPE O(I)-->H-N(I+4), SAME NUMBER PER 100 RESIDUES . 4 1.0 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 0 0 2 0 2 0 2 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 RESIDUES PER ALPHA HELIX . 2 0 0 2 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 0 PARALLEL BRIDGES PER LADDER . 2 6 0 2 2 2 0 0 2 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 ANTIPARALLEL BRIDGES PER LADDER . 0 0 0 0 0 0 0 0 2 0 0 0 0 0 0 0 0 0 0 0 0 0 0 0 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 1 404 A S > 0 0 132 0, 0.0 3,-2.8 0, 0.0 4,-0.3 0.000 360.0 360.0 360.0 -14.6 10.2 -25.3 28.9 2 405 A G T 3 - 0 0 66 1,-0.3 3,-0.3 2,-0.1 4,-0.0 -0.152 360.0 -15.7 46.3-120.1 14.0 -25.2 28.4 3 406 A M T > S+ 0 0 60 1,-0.2 3,-0.5 2,-0.1 -1,-0.3 0.352 114.2 95.6 -94.7 5.2 15.2 -21.7 29.3 4 407 A A T < S+ 0 0 85 -3,-2.8 -1,-0.2 1,-0.2 -2,-0.1 0.867 99.3 20.3 -64.9 -37.4 11.7 -20.0 29.1 5 408 A C T 3 S+ 0 0 107 -4,-0.3 -1,-0.2 -3,-0.3 2,-0.1 0.116 95.0 127.1-122.3 20.1 10.9 -20.2 32.9 6 409 A V < - 0 0 56 -3,-0.5 2,-0.2 -5,-0.2 -3,-0.1 -0.404 42.4-148.8 -85.8 153.8 14.4 -20.6 34.4 7 410 A G - 0 0 52 1,-0.1 2,-0.1 -2,-0.1 -1,-0.1 -0.523 36.6 -72.1-105.4-178.4 16.0 -18.6 37.2 8 411 A R - 0 0 117 -2,-0.2 -1,-0.1 1,-0.1 3,-0.1 -0.401 23.3-155.4 -73.8 150.0 19.6 -17.8 37.9 9 412 A T S S+ 0 0 102 1,-0.2 2,-0.3 27,-0.1 -1,-0.1 0.522 82.8 5.1 -95.1 -13.7 22.1 -20.4 39.1 10 413 A T - 0 0 85 2,-0.0 2,-0.3 0, 0.0 -1,-0.2 -0.953 69.7-131.1-158.2 168.8 24.3 -17.6 40.7 11 414 A E - 0 0 100 -2,-0.3 2,-0.5 -3,-0.1 29,-0.1 -0.964 30.2-104.7-129.6 148.1 24.3 -13.9 41.3 12 415 A C + 0 0 14 27,-0.4 29,-0.1 -2,-0.3 30,-0.1 -0.622 42.5 162.7 -72.7 120.0 26.9 -11.3 40.6 13 416 A T + 0 0 126 -2,-0.5 -1,-0.2 3,-0.1 29,-0.0 0.370 53.9 90.3-114.6 -2.0 28.6 -10.3 43.9 14 417 A I S S+ 0 0 108 1,-0.1 -1,-0.1 10,-0.1 -2,-0.1 0.855 106.8 5.1 -66.5 -34.0 31.7 -8.6 42.5 15 418 A V S S- 0 0 18 9,-0.1 -1,-0.1 4,-0.0 4,-0.0 -0.937 93.6 -94.2-141.1 158.1 29.9 -5.3 42.4 16 419 A P > - 0 0 80 0, 0.0 3,-1.8 0, 0.0 -3,-0.1 -0.275 36.9-102.8 -75.1 167.4 26.4 -4.3 43.6 17 420 A A T 3 S+ 0 0 32 1,-0.3 28,-0.2 -5,-0.1 43,-0.1 0.710 120.3 52.5 -59.6 -26.4 23.2 -4.2 41.6 18 421 A N T 3 S+ 0 0 67 2,-0.1 2,-0.4 41,-0.0 -1,-0.3 0.026 79.2 138.8-101.4 28.3 23.3 -0.4 41.3 19 422 A H < - 0 0 47 -3,-1.8 2,-0.4 -4,-0.0 -4,-0.0 -0.579 41.6-150.3 -72.3 125.8 26.9 -0.3 39.9 20 423 A F + 0 0 52 -2,-0.4 114,-0.1 114,-0.1 40,-0.1 -0.837 59.0 25.2 -90.9 135.9 27.6 2.1 37.1 21 424 A G S S- 0 0 6 -2,-0.4 114,-0.1 39,-0.4 -2,-0.0 -0.459 102.6 -19.9 108.7-178.0 30.3 1.2 34.6 22 425 A P - 0 0 69 0, 0.0 -2,-0.0 0, 0.0 113,-0.0 -0.218 64.5-114.6 -62.2 150.7 31.9 -2.0 33.4 23 426 A I > - 0 0 4 3,-0.3 3,-2.2 1,-0.1 20,-0.1 -0.773 37.6-108.3 -83.8 126.3 31.7 -5.2 35.4 24 427 A P T 3 S+ 0 0 61 0, 0.0 -10,-0.1 0, 0.0 -1,-0.1 -0.275 104.1 18.7 -52.3 136.0 35.1 -6.2 36.7 25 428 A G T 3 S+ 0 0 81 1,-0.1 -2,-0.0 -11,-0.0 -11,-0.0 0.443 101.3 101.8 82.5 -1.1 36.3 -9.3 34.9 26 429 A V < - 0 0 24 -3,-2.2 -3,-0.3 4,-0.0 -1,-0.1 -0.836 56.0-166.7-118.6 92.1 33.9 -8.9 31.9 27 430 A P > - 0 0 52 0, 0.0 3,-1.9 0, 0.0 129,-0.2 -0.340 35.3 -84.7 -73.5 157.3 35.6 -7.4 28.9 28 431 A V T 3 S+ 0 0 13 1,-0.2 129,-0.2 129,-0.1 3,-0.1 -0.355 117.7 40.4 -51.1 133.6 34.0 -6.0 25.8 29 432 A G T 3 S+ 0 0 0 127,-3.4 -1,-0.2 1,-0.4 128,-0.1 0.204 76.9 145.4 105.0 -11.3 33.3 -8.9 23.5 30 433 A T < - 0 0 19 -3,-1.9 126,-2.5 126,-0.2 2,-0.4 -0.326 33.7-155.6 -61.5 141.6 32.1 -11.3 26.2 31 434 A M E +A 155 0A 34 174,-0.5 176,-2.3 124,-0.2 2,-0.4 -0.973 18.6 178.7-131.7 134.8 29.3 -13.5 24.8 32 435 A W E -Ab 154 207A 16 122,-2.2 122,-2.7 -2,-0.4 176,-0.2 -0.997 24.6-143.1-135.7 139.1 26.4 -15.5 26.4 33 436 A R S S+ 0 0 84 174,-2.9 2,-0.3 -2,-0.4 120,-0.2 0.912 83.1 36.4 -68.4 -41.3 23.8 -17.6 24.7 34 437 A F S >> S- 0 0 60 173,-0.3 4,-1.3 1,-0.1 3,-0.9 -0.826 76.2-123.2-119.8 150.4 20.8 -16.6 27.0 35 438 A R H 3> S+ 0 0 41 -2,-0.3 4,-2.2 1,-0.2 5,-0.1 0.834 108.7 64.4 -56.7 -37.4 19.7 -13.5 28.8 36 439 A V H 3> S+ 0 0 9 1,-0.2 4,-2.6 2,-0.2 -1,-0.2 0.870 102.5 49.6 -56.9 -34.9 19.8 -15.3 32.2 37 440 A Q H <> S+ 0 0 18 -3,-0.9 4,-1.7 2,-0.2 -1,-0.2 0.863 107.1 53.6 -72.8 -34.4 23.6 -15.8 31.9 38 441 A V H <>S+ 0 0 0 -4,-1.3 6,-1.3 2,-0.2 5,-0.8 0.897 111.1 48.7 -62.5 -38.5 24.0 -12.1 31.0 39 442 A S H ><5S+ 0 0 5 -4,-2.2 3,-1.8 1,-0.2 -27,-0.4 0.948 107.7 52.2 -65.5 -49.3 22.1 -11.5 34.3 40 443 A E H 3<5S+ 0 0 23 -4,-2.6 -1,-0.2 1,-0.3 -2,-0.2 0.824 105.4 57.6 -56.2 -32.6 24.3 -13.9 36.3 41 444 A S T 3<5S- 0 0 24 -4,-1.7 -1,-0.3 -5,-0.1 -2,-0.2 0.644 109.5-123.5 -71.7 -17.7 27.4 -12.0 35.0 42 445 A G T < 5S+ 0 0 0 -3,-1.8 3,-0.4 -4,-0.5 -3,-0.1 0.245 85.4 108.6 89.7 -12.0 26.1 -8.7 36.4 43 446 A V S > -C 58 0A 121 4,-2.5 3,-2.3 -2,-0.3 4,-1.6 -0.999 26.9-136.0-122.0 127.0 16.1 2.9 38.9 55 458 A S T 34 S+ 0 0 34 -2,-0.4 4,-0.1 1,-0.3 -1,-0.0 0.563 103.1 45.1 -67.5 -11.0 14.1 6.0 38.1 56 459 A N T 34 S+ 0 0 143 2,-0.1 -1,-0.3 56,-0.0 53,-0.0 0.423 125.9 28.4-102.6 -2.0 15.8 8.2 40.9 57 460 A D T <4 S- 0 0 48 -3,-2.3 2,-0.3 1,-0.2 -2,-0.2 0.717 106.4 -96.7-121.3 -62.6 19.4 7.1 40.1 58 461 A G E < -C 54 0A 0 -4,-1.6 -4,-2.5 54,-0.0 2,-0.5 -0.942 38.1 -65.9 159.6-180.0 20.0 6.1 36.5 59 462 A A E -C 53 0A 0 50,-0.7 -6,-0.3 -2,-0.3 3,-0.1 -0.886 31.5-171.8 -99.8 132.0 20.2 3.2 34.0 60 463 A Y E - 0 0 0 -8,-2.5 75,-2.4 -2,-0.5 -39,-0.4 0.765 65.9 -9.0 -91.3 -29.5 23.0 0.8 34.5 61 464 A S E -Cd 52 135A 0 -9,-1.2 -9,-2.7 73,-0.3 2,-0.3 -0.985 54.7-162.4-163.9 160.4 22.6 -1.2 31.3 62 465 A L E -Cd 51 136A 1 73,-2.3 75,-2.4 -2,-0.3 2,-0.4 -0.981 13.2-135.6-151.4 161.2 20.5 -1.9 28.3 63 466 A V E - d 0 137A 3 -13,-1.7 2,-0.8 -2,-0.3 75,-0.2 -0.981 4.4-152.0-121.7 128.2 19.9 -4.5 25.6 64 467 A L E + d 0 138A 8 73,-2.7 75,-2.9 -2,-0.4 78,-0.4 -0.871 36.6 149.0 -92.2 108.9 19.4 -4.0 21.8 65 468 A A - 0 0 20 -2,-0.8 -1,-0.1 73,-0.2 78,-0.1 0.126 65.7-105.0-134.4 20.1 17.4 -7.0 20.8 66 469 A G S S+ 0 0 41 2,-0.1 -2,-0.1 76,-0.1 3,-0.0 0.670 81.6 127.6 68.6 18.7 15.2 -5.8 17.9 67 470 A G + 0 0 43 1,-0.2 2,-0.3 2,-0.0 -1,-0.1 0.431 63.5 50.1 -88.1 1.8 12.1 -5.7 20.2 68 471 A Y S > S- 0 0 47 1,-0.1 3,-2.2 28,-0.0 -1,-0.2 -0.969 71.4-147.1-150.1 108.3 11.0 -2.1 19.4 69 472 A E T 3 S+ 0 0 71 -2,-0.3 -1,-0.1 1,-0.3 -2,-0.0 0.758 95.8 65.0 -60.7 -24.1 10.7 -1.0 15.8 70 473 A D T 3 S+ 0 0 7 2,-0.1 -1,-0.3 -3,-0.0 2,-0.1 0.580 75.7 108.8 -78.4 -6.6 11.8 2.5 16.6 71 474 A D < - 0 0 30 -3,-2.2 2,-0.4 10,-0.1 9,-0.2 -0.453 50.6-168.6 -63.9 139.7 15.3 1.3 17.7 72 475 A V E -E 79 0A 61 7,-2.5 7,-2.6 -2,-0.1 2,-0.6 -0.930 5.2-158.0-133.7 109.6 17.9 2.4 15.1 73 476 A D E +E 78 0A 28 -2,-0.4 74,-0.2 5,-0.2 5,-0.2 -0.794 25.1 162.0 -98.2 122.3 21.4 0.8 15.5 74 477 A N - 0 0 55 3,-1.8 2,-1.4 -2,-0.6 4,-0.2 0.075 46.2-126.6-121.3 21.8 24.4 2.5 14.0 75 478 A G S S+ 0 0 0 1,-0.3 -1,-0.1 107,-0.0 3,-0.0 -0.531 102.6 41.2 79.3 -92.4 27.2 0.6 16.0 76 479 A N S S+ 0 0 89 -2,-1.4 107,-2.7 106,-0.1 2,-0.3 0.608 135.2 15.7 -70.6 -9.4 29.2 3.4 17.5 77 480 A Y E S+ F 0 182A 101 105,-0.2 -3,-1.8 -3,-0.1 2,-0.3 -0.969 71.3 179.1-148.7 161.6 25.9 5.2 18.2 78 481 A F E -EF 73 181A 0 103,-2.4 103,-3.1 -2,-0.3 2,-0.6 -0.985 29.6-122.9-155.2 161.9 22.3 4.1 18.3 79 482 A T E -EF 72 180A 16 -7,-2.6 -7,-2.5 -2,-0.3 2,-0.3 -0.958 34.4-162.4-107.4 115.4 18.8 5.5 18.9 80 483 A Y E - F 0 179A 12 99,-2.9 99,-2.1 -2,-0.6 2,-0.4 -0.690 8.9-135.6 -98.0 154.5 17.1 3.5 21.6 81 484 A T E - F 0 178A 3 -2,-0.3 97,-0.2 97,-0.2 -10,-0.1 -0.860 19.2-120.0-107.6 140.4 13.4 3.4 22.4 82 485 A G - 0 0 1 95,-2.5 2,-0.2 -2,-0.4 -1,-0.1 -0.157 34.2-107.9 -60.9 172.4 11.9 3.6 25.9 83 486 A S S S+ 0 0 39 19,-0.1 19,-0.4 93,-0.0 94,-0.1 -0.548 73.8 36.8 -96.4 172.0 9.8 0.7 27.2 84 487 A G + 0 0 30 -2,-0.2 17,-0.2 17,-0.1 3,-0.1 -0.409 41.4 122.5 83.4-162.9 6.0 0.6 27.7 85 488 A G + 0 0 11 15,-0.3 13,-3.0 1,-0.3 14,-1.7 0.689 69.1 116.1 68.4 21.5 3.2 2.1 25.7 86 489 A R B S-J 97 0B 35 11,-0.2 2,-0.9 12,-0.2 -1,-0.3 -0.919 71.4-129.8-127.2 146.7 2.1 -1.5 25.4 87 490 A D + 0 0 89 9,-0.5 9,-0.1 -2,-0.3 7,-0.1 -0.852 30.6 169.4 -92.5 99.8 -0.9 -3.6 26.6 88 491 A L > + 0 0 69 -2,-0.9 4,-2.4 4,-0.1 3,-0.4 0.192 25.2 141.6 -97.0 15.9 0.7 -6.6 28.3 89 492 A S T 4 + 0 0 75 1,-0.2 -2,-0.1 2,-0.2 0, 0.0 -0.182 55.2 48.5 -56.1 149.4 -2.6 -7.8 29.8 90 493 A G T 4 S- 0 0 77 1,-0.1 -1,-0.2 2,-0.1 -3,-0.0 0.692 134.4 -71.2 83.0 22.0 -2.9 -11.5 29.8 91 494 A N T 4 S+ 0 0 130 -3,-0.4 -2,-0.2 1,-0.2 2,-0.2 0.906 85.2 160.3 62.1 44.6 0.5 -12.0 31.3 92 495 A K < - 0 0 113 -4,-2.4 -1,-0.2 1,-0.1 3,-0.1 -0.513 36.3-161.4 -86.8 162.3 2.5 -10.9 28.2 93 496 A R S S+ 0 0 139 1,-0.3 2,-0.3 -2,-0.2 -1,-0.1 0.602 78.1 23.9-109.3 -29.7 6.1 -9.7 28.1 94 497 A T + 0 0 99 -7,-0.1 -1,-0.3 -6,-0.1 2,-0.3 -0.937 61.6 150.1-135.0 158.0 5.9 -8.0 24.7 95 498 A A - 0 0 29 -2,-0.3 2,-0.1 -3,-0.1 -7,-0.1 -0.940 46.5 -81.9-164.6 175.8 3.3 -6.5 22.4 96 499 A G - 0 0 49 -2,-0.3 -9,-0.5 -9,-0.1 2,-0.2 -0.376 60.8 -78.3 -80.4 168.1 3.0 -3.7 19.8 97 500 A Q B +J 86 0B 17 1,-0.1 -11,-0.2 -11,-0.1 -1,-0.1 -0.514 55.8 154.5 -69.1 133.8 2.6 -0.1 20.7 98 501 A S + 0 0 59 -13,-3.0 2,-0.3 1,-0.3 -12,-0.2 0.348 62.6 27.5-139.8 0.3 -1.0 0.9 21.7 99 502 A S S S- 0 0 56 -14,-1.7 -1,-0.3 76,-0.1 2,-0.1 -0.966 91.2 -79.6-153.0 166.8 -0.5 4.0 23.9 100 503 A D - 0 0 80 -2,-0.3 -15,-0.3 -3,-0.1 76,-0.2 -0.441 47.1-119.9 -68.5 137.1 2.0 6.8 24.4 101 504 A Q - 0 0 8 74,-2.6 2,-0.3 -17,-0.2 -17,-0.1 -0.325 26.5-139.5 -69.6 162.7 5.1 6.1 26.3 102 505 A K - 0 0 150 -19,-0.4 2,-1.8 2,-0.1 5,-0.2 -0.918 19.0-119.5-128.6 149.6 5.9 8.0 29.5 103 506 A L S S+ 0 0 9 -2,-0.3 2,-0.3 4,-0.1 -2,-0.0 -0.515 80.0 105.2 -87.6 66.4 9.0 9.4 31.1 104 507 A T S >> S- 0 0 64 -2,-1.8 3,-1.6 4,-0.0 4,-0.7 -0.883 70.8 -2.9-135.8 166.1 8.7 7.2 34.2 105 508 A N H 3> S+ 0 0 113 -2,-0.3 4,-2.5 1,-0.3 3,-0.4 -0.174 132.5 2.4 51.9-128.5 10.3 4.1 35.6 106 509 A N H 3> S+ 0 0 40 1,-0.2 4,-2.4 2,-0.2 -1,-0.3 0.844 134.3 55.5 -62.2 -35.0 13.0 2.7 33.2 107 510 A N H <> S+ 0 0 5 -3,-1.6 4,-1.7 2,-0.2 -1,-0.2 0.877 110.0 44.5 -66.1 -39.5 12.5 5.5 30.7 108 511 A R H X S+ 0 0 67 -4,-0.7 4,-1.9 -3,-0.4 -2,-0.2 0.901 110.5 56.8 -69.7 -40.7 13.2 8.2 33.4 109 512 A A H X S+ 0 0 0 -4,-2.5 4,-0.8 1,-0.2 -50,-0.7 0.953 108.3 45.5 -52.3 -51.0 16.1 6.2 34.7 110 513 A L H >< S+ 0 0 0 -4,-2.4 3,-0.8 -52,-0.3 4,-0.5 0.887 109.4 55.7 -66.9 -35.9 17.8 6.2 31.3 111 514 A A H >< S+ 0 0 0 -4,-1.7 3,-1.3 1,-0.2 -1,-0.3 0.856 98.2 63.3 -60.8 -35.7 17.1 9.9 30.9 112 515 A L H 3< S+ 0 0 42 -4,-1.9 -1,-0.2 -3,-0.3 20,-0.2 0.797 90.9 66.3 -61.3 -27.0 18.9 10.6 34.2 113 516 A N T << S+ 0 0 1 -4,-0.8 19,-1.7 -3,-0.8 -1,-0.3 0.796 80.6 96.8 -65.0 -27.5 22.1 9.3 32.6 114 517 A C S < S- 0 0 4 -3,-1.3 2,-2.7 -4,-0.5 49,-0.1 -0.442 87.7-120.1 -63.8 133.4 22.1 12.3 30.2 115 518 A H S S+ 0 0 86 47,-0.6 11,-0.6 13,-0.2 12,-0.4 -0.352 86.8 80.1 -77.1 66.6 24.3 15.2 31.5 116 519 A S S S- 0 0 42 -2,-2.7 3,-0.1 -5,-0.2 9,-0.1 -0.948 94.3 -83.6-162.7 146.2 21.4 17.6 31.7 117 520 A P - 0 0 105 0, 0.0 -2,-0.0 0, 0.0 -5,-0.0 -0.287 60.1 -91.5 -57.4 142.1 18.7 18.2 34.2 118 521 A I - 0 0 49 -6,-0.1 2,-0.4 2,-0.0 -6,-0.1 -0.273 50.9-175.9 -56.7 135.8 15.7 15.9 33.7 119 522 A N > - 0 0 78 -3,-0.1 3,-1.9 1,-0.1 -1,-0.0 -0.983 31.8-142.6-142.6 129.5 13.1 17.5 31.5 120 523 A E T 3 S+ 0 0 127 -2,-0.4 -17,-0.1 1,-0.3 3,-0.1 0.630 106.5 50.1 -65.7 -15.2 9.7 16.2 30.5 121 524 A K T 3 S- 0 0 166 1,-0.4 -1,-0.3 45,-0.1 2,-0.1 0.361 123.0 -98.3-100.2 2.3 10.1 17.6 27.0 122 525 A G < - 0 0 14 -3,-1.9 -1,-0.4 44,-0.2 2,-0.3 -0.255 37.2-128.9 100.6 168.8 13.5 16.0 26.6 123 526 A A E -G 165 0A 13 42,-1.5 42,-2.5 -2,-0.1 2,-0.4 -0.978 3.7-145.5-152.7 160.9 17.1 17.3 26.9 124 527 A E E -G 164 0A 144 -2,-0.3 2,-0.5 40,-0.2 40,-0.2 -0.992 24.6-126.7-129.2 137.5 20.5 17.5 25.2 125 528 A A > - 0 0 16 38,-2.8 3,-0.5 -2,-0.4 -9,-0.2 -0.729 6.0-157.3 -89.1 127.7 23.8 17.3 27.1 126 529 A E T 3 S+ 0 0 202 -11,-0.6 2,-0.3 -2,-0.5 -1,-0.1 0.800 99.1 25.6 -66.7 -32.4 26.3 20.1 26.5 127 530 A D T > S- 0 0 69 -12,-0.4 3,-2.3 1,-0.1 -1,-0.3 -0.706 76.5-179.3-132.6 81.1 29.2 17.8 27.5 128 531 A W G X S+ 0 0 36 -3,-0.5 3,-2.0 1,-0.3 -13,-0.2 0.775 74.1 65.4 -60.2 -32.6 27.8 14.3 26.8 129 532 A R G 3 S+ 0 0 114 1,-0.3 -1,-0.3 32,-0.1 34,-0.0 0.638 91.1 66.2 -68.0 -12.9 30.9 12.4 28.0 130 533 A Q G < S+ 0 0 115 -3,-2.3 -1,-0.3 -15,-0.1 -2,-0.2 0.505 83.0 107.8 -81.8 -5.7 30.2 13.6 31.6 131 534 A G S < S- 0 0 7 -3,-2.0 -17,-0.2 -4,-0.2 -18,-0.1 -0.192 84.9 -85.8 -67.3 166.5 27.0 11.5 31.5 132 535 A K - 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