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Backbone NMR chemical shift assignment for the substrate binding domain of Escherichia coli HscA
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Title
Backbone NMR chemical shift assignment for the substrate binding domain of Escherichia coli HscA
Issued Date
2024-06
Citation
Kim, Jin Hae. (2024-06). Backbone NMR chemical shift assignment for the substrate binding domain of Escherichia coli HscA. Journal of the Korean Magnetic Resonance Society, 28(2), 6–9. doi: 10.6564/JKMRS.2024.28.2.006
Type
Article
Author Keywords
HscAHsp70-type chaperoneNMR spectroscopyiron-sulfur cluster biogenesis
Keywords
SULFURISCUSCAFFOLD PROTEIN
ISSN
1226-6531
Abstract
HscA is a Hsp70-type chaperone protein that plays an essential role to mediate the iron-sulfur (Fe-S) cluster biogenesis mechanism in Escherichia coli. Like other Hsp70 chaperones, HscA is composed of two domains: the nucleotide binding domain (NBD), which can hydrolyze ATP and use its chemical energy to facilitate the Fe-S cluster transfer process, and the substrate binding domain (SBD), which directly interacts with the substrate, IscU, the scaffold protein of an Fe-S cluster. In the present work, we prepared the isolated SBD construct of HscA (HscA(SBD)) and conducted the solution-state nuclear magnetic resonance (NMR) experiments to have its backbone chemical shift assignment information. Due to low spectral quality of HscA(SBD), we obtained all the NMR data from the sample containing the peptide LPPVKIHC, the HscA-interaction motif of IscU, from which the chemical shift assignment could be done successfully. We expect that this information provides an important basis to execute detailed structural characterization of HscA and appreciate its interaction with IscU.
URI
http://hdl.handle.net/20.500.11750/57135
DOI
10.6564/JKMRS.2024.28.2.006
Publisher
한국자기공명학회
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김진해
Kim, Jin Hae김진해

Department of New Biology

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