Celalettin Jett Topbas, Ph.D.
Affiliations: | The Cleveland Clinic, Cleveland, OH, United States |
Area:
Mass Spectrometry, Clinical Chemistry, DiagnosticsGoogle:
"Celalettin Topbas"Mean distance: (not calculated yet)
Parents
Sign in to add mentorDavid J Anderson | grad student | Cleveland State University | |
Joseph DiDonato | grad student | Cleveland Clinic Lerner Research Institute | |
Valentin Gogonea | grad student | Cleveland State University | |
Stanley L. Hazen | grad student | Cleveland Clinic Lerner Research Institute | |
Xavier Lee | grad student | Cleveland Clinic Lerner Research Institute |
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Publications
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Gogonea V, Peters J, Gerstenecker GS, et al. (2020) Protein Backbone and Average Particle Dynamics in Reconstituted Discoidal and Spherical HDL Probed by Hydrogen Deuterium Exchange and Elastic Incoherent Neutron Scattering. Biomolecules. 10 |
Halawani D, Gogonea V, DiDonato JA, et al. (2018) Structural control of caspase-generated glutamyl-tRNA synthetase by appended noncatalytic WHEP domains. The Journal of Biological Chemistry |
Collier TS, Jin Z, Topbas C, et al. (2018) Rapid Affinity Enrichment of Human Apolipoprotein A-I Associated Lipoproteins for Proteome Analysis. Journal of Proteome Research |
DiDonato JA, Aulak K, Huang Y, et al. (2014) Site-specific nitration of apolipoprotein A-I at tyrosine 166 is both abundant within human atherosclerotic plaque and dysfunctional. The Journal of Biological Chemistry. 289: 10276-92 |
DiDonato JA, Aulak K, Huang Y, et al. (2014) Site-specific nitration of apolipoprotein A-I at tyrosine 166 is both abundant within human atherosclerotic plaque and dysfunctional Nitric Oxide. 42: 105-106 |
Gogonea V, Gerstenecker GS, Wu Z, et al. (2013) The low-resolution structure of nHDL reconstituted with DMPC with and without cholesterol reveals a mechanism for particle expansion. Journal of Lipid Research. 54: 966-83 |
Granzin J, Huang Y, Topbas C, et al. (2012) Three-dimensional structure of a schistosome serpin revealing an unusual configuration of the helical subdomain. Acta Crystallographica. Section D, Biological Crystallography. 68: 686-94 |