+ // Make a new Residue object with the new atoms vector
+ residues.addElement(new Residue(resAtoms, resNumber - 1, count));
+
+ Residue tmpres = residues.lastElement();
+ Atom tmpat = tmpres.atoms.get(0);
+ // Make A new SequenceFeature for the current residue numbering
+ String desc = tmpat.resName
+ + ":" + tmpat.resNumIns + " " + pdbid + id;
+ SequenceFeature sf = new SequenceFeature(RESNUM_FEATURE, desc,
+ offset + count, offset + count, pdbid);
+ resFeatures.addElement(sf);
+ resAnnotation.addElement(new Annotation(tmpat.tfactor));
+ // Keep totting up the sequence
+
+ if ((symbol = ResidueProperties.getAA3Hash()
+ .get(tmpat.resName)) == null)
+ {
+ String nucname = tmpat.resName.trim();
+ // use the aaIndex rather than call 'toLower' - which would take a bit
+ // more time.
+ deoxyn = nucname.length() == 2
+ && ResidueProperties.aaIndex[nucname
+ .charAt(0)] == ResidueProperties.aaIndex['D'];
+ if (tmpat.name.equalsIgnoreCase("CA")
+ || ResidueProperties.nucleotideIndex[nucname
+ .charAt((deoxyn ? 1 : 0))] == -1)
+ {
+ char r = ResidueProperties.getSingleCharacterCode(
+ ResidueProperties.getCanonicalAminoAcid(tmpat.resName));
+ seq.append(r == '0' ? 'X' : r);
+ // System.err.println("PDBReader:Null aa3Hash for " +
+ // tmpat.resName);
+ }
+ else
+ {
+ // nucleotide flag
+ nucleotide = true;
+ seq.append(nucname.charAt((deoxyn ? 1 : 0)));
+ }
+ }
+ else
+ {
+ if (nucleotide)
+ {
+ System.err.println(
+ "Warning: mixed nucleotide and amino acid chain.. its gonna do bad things to you!");
+ }
+ seq.append(ResidueProperties.aa[((Integer) symbol).intValue()]);
+ }
+ count++;