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Ligand-induced conformational changes in the capping subdomain of a bacterial old yellow enzyme homologue and conserved sequence fingerprints provide new insights into substrate binding

(2006) JOURNAL OF BIOLOGICAL CHEMISTRY. 281(38). p.28152-28161
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Chicago
van den Hemel, Debbie, Ann Brige, Savvas Savvides, and Jozef Van Beeumen. 2006. “Ligand-induced Conformational Changes in the Capping Subdomain of a Bacterial Old Yellow Enzyme Homologue and Conserved Sequence Fingerprints Provide New Insights into Substrate Binding.” Journal of Biological Chemistry 281 (38): 28152–28161.
APA
van den Hemel, D., Brige, A., Savvides, S., & Van Beeumen, J. (2006). Ligand-induced conformational changes in the capping subdomain of a bacterial old yellow enzyme homologue and conserved sequence fingerprints provide new insights into substrate binding. JOURNAL OF BIOLOGICAL CHEMISTRY, 281(38), 28152–28161.
Vancouver
1.
van den Hemel D, Brige A, Savvides S, Van Beeumen J. Ligand-induced conformational changes in the capping subdomain of a bacterial old yellow enzyme homologue and conserved sequence fingerprints provide new insights into substrate binding. JOURNAL OF BIOLOGICAL CHEMISTRY. AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC; 2006;281(38):28152–61.
MLA
van den Hemel, Debbie, Ann Brige, Savvas Savvides, et al. “Ligand-induced Conformational Changes in the Capping Subdomain of a Bacterial Old Yellow Enzyme Homologue and Conserved Sequence Fingerprints Provide New Insights into Substrate Binding.” JOURNAL OF BIOLOGICAL CHEMISTRY 281.38 (2006): 28152–28161. Print.
@article{372027,
  author       = {van den Hemel, Debbie and Brige, Ann and Savvides, Savvas and Van Beeumen, Jozef},
  issn         = {0021-9258},
  journal      = {JOURNAL OF BIOLOGICAL CHEMISTRY},
  language     = {eng},
  number       = {38},
  pages        = {28152--28161},
  publisher    = {AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC},
  title        = {Ligand-induced conformational changes in the capping subdomain of a bacterial old yellow enzyme homologue and conserved sequence fingerprints provide new insights into substrate binding},
  volume       = {281},
  year         = {2006},
}

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