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Center Publications: 2019-2023

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Recapitulating the Frataxin Activation Mechanism in an Engineered Bacterial Cysteine Desulfurase Supports the Architectural Switch Model.

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:32
Patra, S.; Lin, C.-W.; Ghosh, M. K.; Havens, S. M.; Cory, S. A.; Russell, D. H.; Barondeau, D. P.

bioRxiv 2020, 2020.10.06.326603. https://doi.org/10.1101/2020.10.06.326603

Chapter 11:Surface-Induced Dissociation in Biomolecular Mass Spectrometry. In Advanced Fragmentation Methods.

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:31
Snyder, D. T.; Harvey, S. R.; Busch, F.; Wysocki, V. H.

Biomolecular Mass Spectrometry; 2020; pp 281–336. https://doi.org/10.1039/9781839161056-00281.

Population distributions from native mass spectrometry titrations reveal nearest-neighbor cooperativity in the ring-shaped oligomeric protein TRAP.

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:25
Holmquist, M.; Ihms, E. C., Gollnick, P.; Wysocki, V. H.; and Foster, M. P.

Biochemistry. 2020, DOI: 10.1021/acs.biochem.0c00352

Intrinsic GTPase Activity of K-RAS Monitored by Native Mass Spectrometry.

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:25
Moghadamchargari Z, Huddleston J, Shirzadeh M, Zheng X, Clemmer DE, M Raushel F, Russell DH, Laganowsky A.

Biochemistry. 2019 Aug 6;58(31):3396-3405. doi:10.1021/acs.biochem.9b00532.

Structural Analysis of the Effect of Dual-FLAG Tag on Transthyretin.

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:23
Shirzadeh, M.; Poltash, M.L.; Laganowsky, A.; Russell, D.H.

Biochemistry, 2020, 59, 9, 1013-1022. DOI: 10.1021/acs.biochem.0c00105. 

A Disulfide-Stabilized Aβ That Forms Dimers but Does Not Form Fibrils.

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:22
Zhang, S.; Yoo, S.; Snyder, D. T.; Katz, B. B.; Henrickson, A.; Demeler, B.; Wysocki, V. H.; Kreutzer, A. G.; Nowick, J. S.

Biochemistry 2022. https://doi.org/10.1021/acs.biochem.1c00739.

Screening Tagged Proteins Using Tandem Affinity-Buffer Exchange Chromatography Online with Native Mass Spectrometry

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:21
Busch, F.; VanAernum, Z.; Lai, S. M.; Gopalan, V.; Wysocki, V.

Biochemistry 2021, 60 (24), 1876–1884. https://doi.org/10.1021/acs.biochem.1c00138.

Native Mass Spectrometry: Recent Progress and Remaining Challenges

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:20
Karch, K. R.; Snyder, D. T.; Harvey, S. R.; Wysocki, V. H.

Annual Review of Biophysics 2022, 51 (1). https://doi.org/10.1146/annurev-biophys-092721-085421.

Variable-Temperature Native Mass Spectrometry for Studies of Protein Folding, Stabilities, Assembly, and Molecular Interactions.

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:20
Laganowsky A, Clemmer DE, Russell DH.

Annu Rev Biophys. 2021 Dec 21. doi: 10.1146/annurev-biophys-102221-101121. Epub ahead of print. PMID: 34932911. 

Characterization of [2Fe‐2S]‐Cluster‐Bridged Protein Complexes and Reaction Intermediates by use of Robust Native Mass Spectrometric Methods.

Submitted by jlowe46@gatech.edu on Mon, 08/01/2022 - 14:19
Jia, M.; Sen, S.; Wachnowsky, C.; Fidai, I.; Cowan, J.A. and Wysocki, V.

Angewandte Chemie International Edition. 2020, DOI: 10.1002/anie.201915615 

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