Large-scale analysis of secondary structure changes in proteins suggests a role for disorder-to-order transitions in nucleotide binding proteins
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Compugen Ltd., 72 Pinchas Rosen, Tel Aviv, 69512, Israel
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Compugen LTD, 72 Pinchas Rosen, Tel Aviv 69512, Israel
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Publication type: Journal Article
Publication date: 2009-07-07
scimago Q1
wos Q2
SJR: 1.400
CiteScore: 7.2
Impact factor: 2.8
ISSN: 08873585, 10970134
PubMed ID:
19676113
Biochemistry
Molecular Biology
Structural Biology
Abstract
Conformational changes in proteins often involve secondary structure transitions. Such transitions can be divided into two types: disorder-to-order changes, in which a disordered segment acquires an ordered secondary structure (e.g., disorder to alpha-helix, disorder to beta-strand), and order-to-order changes, where a segment switches from one ordered secondary structure to another (e.g., alpha-helix to beta-strand, alpha-helix to turn). In this study, we explore the distribution of these transitions in the proteome. Using a comprehensive, yet highly conservative method, we compared solved three-dimensional structures of identical protein sequences, looking for differences in the secondary structures with which they were assigned. Protein chains in which such secondary structure transitions were detected, were classified into two sets according to the type of transition that is involved (disorder-to-order or order-to-order), allowing us to characterize each set by examining enrichment of gene ontology terms. The results reveal that the disorder-to-order set is significantly enriched with nucleotide binding proteins, whereas the order-to-order set is more diverse. Remarkably, further examination reveals that >22% of the purine nucleotide binding proteins include segments which undergo disorder-to-order transitions, suggesting that such transitions play an important role in this process.
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Dan A. et al. Large-scale analysis of secondary structure changes in proteins suggests a role for disorder-to-order transitions in nucleotide binding proteins // Proteins: Structure, Function and Genetics. 2009. Vol. 78. No. 2. pp. 236-248.
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Dan A., Ofran Y., Kliger Y. Large-scale analysis of secondary structure changes in proteins suggests a role for disorder-to-order transitions in nucleotide binding proteins // Proteins: Structure, Function and Genetics. 2009. Vol. 78. No. 2. pp. 236-248.
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RIS
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TY - JOUR
DO - 10.1002/prot.22531
UR - https://doi.org/10.1002/prot.22531
TI - Large-scale analysis of secondary structure changes in proteins suggests a role for disorder-to-order transitions in nucleotide binding proteins
T2 - Proteins: Structure, Function and Genetics
AU - Dan, Adi
AU - Ofran, Yanay
AU - Kliger, Yossef
PY - 2009
DA - 2009/07/07
PB - Wiley
SP - 236-248
IS - 2
VL - 78
PMID - 19676113
SN - 0887-3585
SN - 1097-0134
ER -
Cite this
BibTex (up to 50 authors)
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@article{2009_Dan,
author = {Adi Dan and Yanay Ofran and Yossef Kliger},
title = {Large-scale analysis of secondary structure changes in proteins suggests a role for disorder-to-order transitions in nucleotide binding proteins},
journal = {Proteins: Structure, Function and Genetics},
year = {2009},
volume = {78},
publisher = {Wiley},
month = {jul},
url = {https://doi.org/10.1002/prot.22531},
number = {2},
pages = {236--248},
doi = {10.1002/prot.22531}
}
Cite this
MLA
Copy
Dan, Adi, et al. “Large-scale analysis of secondary structure changes in proteins suggests a role for disorder-to-order transitions in nucleotide binding proteins.” Proteins: Structure, Function and Genetics, vol. 78, no. 2, Jul. 2009, pp. 236-248. https://doi.org/10.1002/prot.22531.