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ACS Chemical Biology|September 23, 2016
Real-Time Kinetic Probes Support Monothiol Glutaredoxins As Intermediate Carriers in Fe-S Cluster Biosynthetic PathwaysJames N Vranish, Deepika Das, David P BarondeauThe Journal of Biological Chemistry|April 13, 2019
Mechanism of frataxin "bypass" in human iron-sulfur cluster biosynthesis with implications for Friedreich's ataxiaDeepika Das, Shachin Patra, Jennifer Bridwell-Rabb, et al.Journal of the American Chemical Society|December 6, 2014
Fluorescent probes for tracking the transfer of iron-sulfur cluster and other metal cofactors in biosynthetic reaction pathwaysJames N Vranish, William K Russell, Lusa E Yu, et al.Biochemistry|May 29, 2015
Frataxin Accelerates [2Fe-2S] Cluster Formation on the Human Fe-S Assembly ComplexNicholas G Fox, Deepika Das, Mrinmoy Chakrabarti, et al.Proceedings of the National Academy of Sciences of the United States of America|September 13, 2019
Mechanism of activation of the human cysteine desulfurase complex by frataxinShachin Patra, David P BarondeauCurrent Opinion in Structural Biology|December 8, 2004
Structural insights into protein-metal ion partnershipsDavid P Barondeau, Elizabeth D GetzoffBiochemistry|September 30, 2010
Human frataxin is an allosteric switch that activates the Fe-S cluster biosynthetic complexChi-Lin Tsai, David P BarondeauBiochimica Et Biophysica Acta. Molecular Cell Research|June 22, 2024
Fe-S cluster biosynthesis and maturation: Mass spectrometry-based methods advancing the fieldShelby D Oney-Hawthorne, David P BarondeauBiochemistry|July 23, 2011
Structure-function analysis of Friedreich's ataxia mutants reveals determinants of frataxin binding and activation of the Fe-S assembly complexJennifer Bridwell-Rabb, Andrew M Winn, David P BarondeauBiochemistry|June 16, 2011
Friedreich's ataxia variants I154F and W155R diminish frataxin-based activation of the iron-sulfur cluster assembly complexChi-Lin Tsai, Jennifer Bridwell-Rabb, David P BarondeauPageof 5