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PDBsum entry 1trf

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Muscle protein PDB id
1trf

 

 

 

 

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Contents
Protein chain
76 a.a. *
* Residue conservation analysis
PDB id:
1trf
Name: Muscle protein
Title: Solution structure of the tr1c fragment of skeletal muscle troponin-c
Structure: Troponin c. Chain: a. Engineered: yes
Source: Meleagris gallopavo. Turkey. Organism_taxid: 9103
NMR struc: 1 models
Authors: W.A.Findlay,F.D.Soennichsen,B.D.Sykes
Key ref: W.A.Findlay et al. (1994). Solution structure of the TR1C fragment of skeletal muscle troponin-C. J Biol Chem, 269, 6773-6778. PubMed id: 8120037
Date:
29-Dec-93     Release date:   15-Oct-94    
PROCHECK
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 Headers
 References

Protein chain
Pfam   ArchSchema ?
P10246  (TNNC2_MELGA) -  Troponin C, skeletal muscle from Meleagris gallopavo
Seq:
Struc:
162 a.a.
76 a.a.
Key:    PfamA domain  Secondary structure  CATH domain

 

 
J Biol Chem 269:6773-6778 (1994)
PubMed id: 8120037  
 
 
Solution structure of the TR1C fragment of skeletal muscle troponin-C.
W.A.Findlay, F.D.Sönnichsen, B.D.Sykes.
 
  ABSTRACT  
 
Residues 12-87 (TR1C fragment) of turkey skeletal muscle troponin-C comprises two helix-loop-helix calcium-binding motifs which are the regulatory calcium-binding sites in the N-terminal domain of the protein. We have used the combined distance geometry-simulated annealing protocol DGII (Havel, T. F. (1991) Prog. Biophys. Mol. Biol. 56, 43-78) to determine the structure of this 76-residue polypeptide in solution from 475 1H NMR-derived distance restraints. The nuclear Overhauser enhancement-derived distance constraints used in the DGII protocol were supplemented by introducing generic hydrogen bond distance restraints for slowly exchanging amide hydrogens in regular secondary structure elements, by restricting the available phi angle space to -180 degrees to 0 degrees for all residues except glycines, and by tailoring the distance boundaries used for quantitating the nuclear Overhauser enhancement intensities to correspond to characteristic distances found in helices. This improved the geometry of the four helices in the resulting structures. The relative positions of helices A and B which flank calcium-binding loop 1, helix D which follows calcium-binding loop 2, and the beta-sheet between the two calcium-binding loops were well defined and had an overall root-mean-square deviation for 20 converged structures of 1.4 +/- 0.2 A for backbone atoms. The structure and relative orientations of these regions are very similar to these of the corresponding regions of the protein in the crystal structure of intact turkey skeletal troponin C (Herzberg, O., and James, M. N. G. (1988) Nature 313, 653-659). The structure of helix C was well defined, but its relative position to the other helices was not defined. It occupied a range of positions in the set of 20 DGII structures, the average of which was quite similar to the orientation of helix C in the x-ray structure. The overall structure of the apo regulatory domain of troponin-C is therefore not affected by the loss of the N-helix, or the low pH conditions used for the x-ray structure, but may be more flexible in regions known to be involved in contacts with other skeletal muscle regulatory proteins.
 

Literature references that cite this PDB file's key reference

  PubMed id Reference
18280495 E.Johnson, L.Bruschweiler-Li, S.A.Showalter, G.W.Vuister, F.Zhang, and R.Brüschweiler (2008).
Structure and dynamics of Ca2+-binding domain 1 of the Na+/Ca2+ exchanger in the presence and in the absence of Ca2+.
  J Mol Biol, 377, 945-955.  
10231519 S.Tsuda, A.Miura, S.M.Gagné, L.Spyracopoulos, and B.D.Sykes (1999).
Low-temperature-induced structural changes in the Apo regulatory domain of skeletal muscle troponin C.
  Biochemistry, 38, 5693-5700.
PDB codes: 1skt 1zac 1zam 1zas
9585577 R.R.Biekofsky, S.R.Martin, J.P.Browne, P.M.Bayley, and J.Feeney (1998).
Ca2+ coordination to backbone carbonyl oxygen atoms in calmodulin and other EF-hand proteins: 15N chemical shifts as probes for monitoring individual-site Ca2+ coordination.
  Biochemistry, 37, 7617-7629.  
  8931135 B.C.Potts, G.Carlström, K.Okazaki, H.Hidaka, and W.J.Chazin (1996).
1H NMR assignments of apo calcyclin and comparative structural analysis with calbindin D9k and S100 beta.
  Protein Sci, 5, 2162-2174.  
8652520 G.S.Shaw, and B.D.Sykes (1996).
NMR solution structure of a synthetic troponin C heterodimeric domain.
  Biochemistry, 35, 7429-7438.
PDB code: 1pon
  7703843 S.M.Gagné, S.Tsuda, M.X.Li, M.Chandra, L.B.Smillie, and B.D.Sykes (1994).
Quantification of the calcium-induced secondary structural changes in the regulatory domain of troponin-C.
  Protein Sci, 3, 1961-1974.  
The most recent references are shown first. Citation data come partly from CiteXplore and partly from an automated harvesting procedure. Note that this is likely to be only a partial list as not all journals are covered by either method. However, we are continually building up the citation data so more and more references will be included with time. Where a reference describes a PDB structure, the PDB codes are shown on the right.

 

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