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1F54

SOLUTION STRUCTURE OF THE APO N-TERMINAL DOMAIN OF YEAST CALMODULIN

Summary for 1F54
Entry DOI10.2210/pdb1f54/pdb
Related1F55
DescriptorCALMODULIN (1 entity in total)
Functional Keywordsef-hand, helix-loop-helix, transport protein
Biological sourceSaccharomyces cerevisiae (baker's yeast)
Cellular locationCytoplasm, cytoskeleton, spindle pole body: P06787
Total number of polymer chains1
Total formula weight8546.37
Authors
Ishida, H.,Takahashi, K.,Nakashima, K.,Kumaki, Y.,Nakata, M.,Hikichi, K.,Yazawa, M. (deposition date: 2000-06-13, release date: 2003-07-15, Last modification date: 2024-05-22)
Primary citationIshida, H.,Takahashi, K.,Nakashima, K.,Kumaki, Y.,Nakata, M.,Hikichi, K.,Yazawa, M.
Solution Structures of the N-terminal Domain of Yeast Calmodulin: Ca2+-Dependent Conformational Change and Its Functional Implication
Biochemistry, 39:13660-13668, 2000
Cited by
PubMed Abstract: We have determined solution structures of the N-terminal half domain (N-domain) of yeast calmodulin (YCM0-N, residues 1-77) in the apo and Ca(2+)-saturated forms by NMR spectroscopy. The Ca(2+)-binding sites of YCM0-N consist of a pair of helix-loop-helix motifs (EF-hands), in which the loops are linked by a short beta-sheet. The binding of two Ca(2+) causes large rearrangement of the four alpha-helices and exposes the hydrophobic surface as observed for vertebrate calmodulin (CaM). Within the observed overall conformational similarity in the peptide backbone, several significant conformational differences were observed between the two proteins, which originated from the 38% disagreement in amino acid sequences. The beta-sheet in apo YCM0-N is strongly twisted compared with that in the N-domain of CaM, while it turns to the normal more stable conformation on Ca(2+) binding. YCM0-N shows higher cooperativity in Ca(2+) binding than the N-domain of CaM, and the observed conformational change of the beta-sheet is a possible cause of the highly cooperative Ca(2+) binding. The hydrophobic surface on Ca(2+)-saturated YCM0-N appears less flexible due to the replacements of Met51, Met71, and Val55 in the hydrophobic surface of CaM with Leu51, Leu71, and Ile55, which is thought to be one of reasons for the poor activation of target enzymes by yeast CaM.
PubMed: 11076504
DOI: 10.1021/bi000582x
PDB entries with the same primary citation
Experimental method
SOLUTION NMR
Structure validation

227561

數據於2024-11-20公開中

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