Characterization of metalloproteins by high-throughput X-ray absorption spectroscopy

High-throughput X-ray absorption spectroscopy was used to measure transition metal content based on quantitative detection of X-ray fluorescence signals for 3879 purified proteins from several hundred different protein families generated by the New York SGX Research Center for Structural Genomics. A...

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Veröffentlicht in:Genome research 2011-06, Vol.21 (6), p.898-907
Hauptverfasser: Shi, Wuxian, Punta, Marco, Bohon, Jen, Sauder, J Michael, D'Mello, Rhijuta, Sullivan, Mike, Toomey, John, Abel, Don, Lippi, Marco, Passerini, Andrea, Frasconi, Paolo, Burley, Stephen K, Rost, Burkhard, Chance, Mark R
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Sprache:eng
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Zusammenfassung:High-throughput X-ray absorption spectroscopy was used to measure transition metal content based on quantitative detection of X-ray fluorescence signals for 3879 purified proteins from several hundred different protein families generated by the New York SGX Research Center for Structural Genomics. Approximately 9% of the proteins analyzed showed the presence of transition metal atoms (Zn, Cu, Ni, Co, Fe, or Mn) in stoichiometric amounts. The method is highly automated and highly reliable based on comparison of the results to crystal structure data derived from the same protein set. To leverage the experimental metalloprotein annotations, we used a sequence-based de novo prediction method, MetalDetector, to identify Cys and His residues that bind to transition metals for the redundancy reduced subset of 2411 sequences sharing
ISSN:1088-9051
1549-5469
DOI:10.1101/gr.115097.110