Réimplémentation du programme DSSP en Python

dssp.py 2.1KB

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  1. import pdb
  2. import atom
  3. import sys
  4. from structure import *
  5. from atom import *
  6. def print_dssp():
  7. empt_line=" " * 145
  8. if(len(sys.argv)<2):
  9. print("Not enough arguments! Run with --help to learn more about proper"
  10. "call structure and parameters.")
  11. else:
  12. pdb_file = pdb.PDBFile(sys.argv[1])
  13. #turns = get_turns(pdb_file.residues)
  14. #get_helix(pdb_file.residues, turns)
  15. #get_bends(pdb_file.residues)
  16. # get_chirality(pdb_file.residues)
  17. # print("NBRIDGES",len(bridges))
  18. # bridges = get_bridges(pdb_file.residues)
  19. # get_bonds(pdb_file.residues)
  20. # e_min = 0
  21. # for res in residues:
  22. # ene = residues[1].h_bond(res)
  23. # if ene <= e_min:
  24. # e_min = ene
  25. # best_res = res
  26. #print(residues[1].resid, best_res.resid,e_min)
  27. #get_phi_psi(residues)
  28. #print(residues[2].atoms, residues[0].resid, residues[1].resid)
  29. #print(get_TCO(residues[2],residues[3]))
  30. # for i,ladder in enumerate(ladders.values()):
  31. # print(chr(65+i))
  32. # for ind, sheet in sheets.items():
  33. # print(ind, sheet)
  34. # for ladder in sheet:
  35. # print(ladder['start'], ladder['end'])
  36. ################### OUTPUT ####################
  37. # print DSSP-style formatted header of PDB file
  38. for elem in pdb_file.get_header() :
  39. print(pdb_file.get_header()[elem], end="")
  40. # Get preliminary data for print loop
  41. residues = pdb_file.residues
  42. bridges = get_bridges(residues)
  43. ladders = get_ladders(bridges, residues)
  44. sheets = get_sheets(ladders)
  45. # iterating over residues
  46. for i,res in enumerate(residues):
  47. #res.get_turns(residues, turns)
  48. #res.get_helix(residues)
  49. kappa = res.get_bends(residues)
  50. t_co = res.get_tco(residues)
  51. alpha = res.get_chirality(residues)[0]
  52. phi = res.get_phi_psi(residues)[0]
  53. psi = res.get_phi_psi(residues)[1]
  54. x_ca = res.atoms["CA"].coord_x
  55. y_ca = res.atoms["CA"].coord_y
  56. z_ca = res.atoms["CA"].coord_z
  57. print(i+1, res.resid, res.chain_id, res.res_letter, round(t_co, 3), round(kappa,1),
  58. round(alpha, 1), round(phi, 1), round(psi,1), round(x_ca,1), round(y_ca,1), round(z_ca,1))