Complet list of 1gur hssp fileClick here to see the 3D structure Complete list of 1gur.hssp file
HSSP       HOMOLOGY DERIVED SECONDARY STRUCTURE OF PROTEINS , VERSION 2.0 2011
PDBID      1GUR
THRESHOLD  according to: t(L)=(290.15 * L ** -0.562) + 5
REFERENCE  Sander C., Schneider R. : Database of homology-derived protein structures. Proteins, 9:56-68 (1991).
CONTACT    Maintained at http://www.cmbi.ru.nl/ by Maarten L. Hekkelman 
DATE       file generated on 2014-04-29
HEADER     SWEET TASTE-SUPPRESSING PROTEIN         12-MAR-96   1GUR
COMPND     MOL_ID: 1; MOLECULE: GURMARIN; CHAIN: A; ENGINEERED: YES
SOURCE     MOL_ID: 1; ORGANISM_SCIENTIFIC: GYMNEMA SYLVESTRE; ORGANISM_TAXID: 406
AUTHOR     K.ARAI,R.ISHIMA,S.MORIKAWA,T.IMOTO,S.YOSHIMURA,S.AIMOTO, K.AKASAKA
DBREF      1GUR A    2    35  UNP    P25810   GUR_GYMSY        2     35
SEQLENGTH    35
NCHAIN        1 chain(s) in 1GUR data set
NALIGN        1
NOTATION : ID: EMBL/SWISSPROT identifier of the aligned (homologous) protein
NOTATION : STRID: if the 3-D structure of the aligned protein is known, then STRID is the Protein Data Bank identifier as taken
NOTATION : from the database reference or DR-line of the EMBL/SWISSPROT entry
NOTATION : %IDE: percentage of residue identity of the alignment
NOTATION : %SIM (%WSIM):  (weighted) similarity of the alignment
NOTATION : IFIR/ILAS: first and last residue of the alignment in the test sequence
NOTATION : JFIR/JLAS: first and last residue of the alignment in the alignend protein
NOTATION : LALI: length of the alignment excluding insertions and deletions
NOTATION : NGAP: number of insertions and deletions in the alignment
NOTATION : LGAP: total length of all insertions and deletions
NOTATION : LSEQ2: length of the entire sequence of the aligned protein
NOTATION : ACCNUM: SwissProt accession number
NOTATION : PROTEIN: one-line description of aligned protein
NOTATION : SeqNo,PDBNo,AA,STRUCTURE,BP1,BP2,ACC: sequential and PDB residue numbers, amino acid (lower case = Cys), secondary
NOTATION : structure, bridge partners, solvent exposure as in DSSP (Kabsch and Sander, Biopolymers 22, 2577-2637(1983)
NOTATION : VAR: sequence variability on a scale of 0-100 as derived from the NALIGN alignments
NOTATION : pair of lower case characters (AvaK) in the alignend sequence bracket a point of insertion in this sequence
NOTATION : dots (....) in the alignend sequence indicate points of deletion in this sequence
NOTATION : SEQUENCE PROFILE: relative frequency of an amino acid type at each position. Asx and Glx are in their
NOTATION : acid/amide form in proportion to their database frequencies
NOTATION : NOCC: number of aligned sequences spanning this position (including the test sequence)
NOTATION : NDEL: number of sequences with a deletion in the test protein at this position
NOTATION : NINS: number of sequences with an insertion in the test protein at this position
NOTATION : ENTROPY: entropy measure of sequence variability at this position
NOTATION : RELENT: relative entropy, i.e.  entropy normalized to the range 0-100
NOTATION : WEIGHT: conservation weight

## PROTEINS : identifier and alignment statistics
  NR.    ID         STRID   %IDE %WSIM IFIR ILAS JFIR JLAS LALI NGAP LGAP LSEQ2 ACCNUM     PROTEIN
    1 : GUR_GYMSY   1GUR    1.00  1.00    2   35    2   35   34    0    0   35  P25810     Gurmarin OS=Gymnema sylvestre PE=1 SV=2
## ALIGNMENTS    1 -    1
 SeqNo  PDBNo AA STRUCTURE BP1 BP2  ACC NOCC  VAR  ....:....1....:....2....:....3....:....4....:....5....:....6....:....7
     1    1 A X              0   0  213    0    0   
     2    2 A Q        -     0   0  180    2    0  Q
     3    3 A C        -     0   0   79    2    0  C
     4    4 A V        +     0   0   33    2    0  V
     5    5 A K        +     0   0   93    2    0  K
     6    6 A K  S    S+     0   0  134    2    0  K
     7    7 A D  S    S+     0   0  114    2    0  D
     8    8 A E        -     0   0   62    2    0  E
     9    9 A L        -     0   0  105    2    0  L
    10   10 A C        +     0   0    1    2    0  C
    11   11 A I      > +     0   0   45    2    0  I
    12   12 A P  T   5 +     0   0   91    2    0  P
    13   13 A Y  T   5S-     0   0  203    2    0  Y
    14   14 A Y  T   5S+     0   0  199    2    0  Y
    15   15 A L  T   5 -     0   0  109    2    0  L
    16   16 A D      < -     0   0  102    2    0  D
    17   17 A C        -     0   0   11    2    0  C
    18   18 A C  S    S-     0   0   65    2    0  C
    19   19 A E  S    S+     0   0  168    2    0  E
    20   20 A P  S    S+     0   0  110    2    0  P
    21   21 A L        -     0   0   22    2    0  L
    22   22 A E        -     0   0  105    2    0  E
    23   23 A C        +     0   0   19    2    0  C
    24   24 A K  E     -A   32   0A 107    2    0  K
    25   25 A K  E     +     0   0A  97    2    0  K
    26   26 A V  E    S-     0   0A  67    2    0  V
    27   27 A N  E >   -A   30   0A 108    2    0  N
    28   28 A W  T 3  S+     0   0  213    2    0  W
    29   29 A W  T 3  S+     0   0  240    2    0  W
    30   30 A D  E <   -A   27   0A  77    2    0  D
    31   31 A H  E     +     0   0A  72    2    0  H
    32   32 A K  E     -A   24   0A  87    2    0  K
    33   33 A C        -     0   0    7    2    0  C
    34   34 A I              0   0   85    2    0  I
    35   35 A G              0   0   66    2    0  G
## SEQUENCE PROFILE AND ENTROPY
 SeqNo PDBNo   V   L   I   M   F   W   Y   G   A   P   S   T   C   H   R   K   Q   E   N   D  NOCC NDEL NINS ENTROPY RELENT WEIGHT
    1    1 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0     0    0    0   0.000      0  1.00
    2    2 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0     2    0    0   0.000      0  1.00
    3    3 A   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
    4    4 A 100   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
    5    5 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0     2    0    0   0.000      0  1.00
    6    6 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0     2    0    0   0.000      0  1.00
    7    7 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100     2    0    0   0.000      0  1.00
    8    8 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0     2    0    0   0.000      0  1.00
    9    9 A   0 100   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   10   10 A   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   11   11 A   0   0 100   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   12   12 A   0   0   0   0   0   0   0   0   0 100   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   13   13 A   0   0   0   0   0   0 100   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   14   14 A   0   0   0   0   0   0 100   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   15   15 A   0 100   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   16   16 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100     2    0    0   0.000      0  1.00
   17   17 A   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   18   18 A   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   19   19 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0     2    0    0   0.000      0  1.00
   20   20 A   0   0   0   0   0   0   0   0   0 100   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   21   21 A   0 100   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   22   22 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0     2    0    0   0.000      0  1.00
   23   23 A   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   24   24 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0     2    0    0   0.000      0  1.00
   25   25 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0     2    0    0   0.000      0  1.00
   26   26 A 100   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   27   27 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0     2    0    0   0.000      0  1.00
   28   28 A   0   0   0   0   0 100   0   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   29   29 A   0   0   0   0   0 100   0   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   30   30 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100     2    0    0   0.000      0  1.00
   31   31 A   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   32   32 A   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0     2    0    0   0.000      0  1.00
   33   33 A   0   0   0   0   0   0   0   0   0   0   0   0 100   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   34   34 A   0   0 100   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
   35   35 A   0   0   0   0   0   0   0 100   0   0   0   0   0   0   0   0   0   0   0   0     2    0    0   0.000      0  1.00
## INSERTION LIST
 AliNo  IPOS  JPOS   Len Sequence
//