Showing results (1-10 of 31) with videos related to
Sort By:
Pageof 4
Biochemistry|March 15, 2024
Defining Requirements for Heme Binding in PGRMC1 and Identifying Key Elements that Influence Protein DimerizationPrajakta Badve, Katlyn K MeierChemical Science|April 27, 2026
A protein-based model of carbon monoxide dehydrogenase exhibits tunable covalency across cluster oxidation and ligand-bound statesLuke C Lewis, Prajakta Badve, Itzel P Vaca, et al.Biochemistry|August 4, 2025
Defining Factors that Influence the Stability of Tetrameric EgtB from Chloracidobacterium thermophilum: From pH Modulation to Affinity Tag RetentionKassidy W Rodriguez, Katlyn K MeierBiochemistry|May 31, 2013
Intermediate P* from soluble methane monooxygenase contains a diferrous clusterRahul Banerjee, Katlyn K Meier, Eckard Münck, et al.Biochemistry|February 21, 2025
Multiple Copper Ions Bind to and Promote the Oligomerization of Huntingtin Protein with Nonpathological Repeat ExpansionsDeepa Neupane, Miguel Santos-Fernandez, Francisco Fernandez-Lima, et al.Biochemistry|October 17, 2012
Substrate-mediated oxygen activation by homoprotocatechuate 2,3-dioxygenase: intermediates formed by a tyrosine 257 variantMichael M Mbughuni, Katlyn K Meier, Eckard Münck, et al.Journal of Biological Inorganic Chemistry : JBIC : a Publication of the Society of Biological Inorganic Chemistry|July 30, 2026
Insights into the pH-dependent reactivity and substrate induced active-site reorganization of the non- heme iron enzyme CthEgtBKassidy W Rodriguez, Phuong Hong Ngoc Tao, Kiran Kurmi, et al.Inorganic Chemistry|December 1, 2015
Upside Down! Crystallographic and Spectroscopic Characterization of an [Fe IV(O syn)(TMC)]2+ ComplexJai Prakash, Gregory T Rohde, Katlyn K Meier, et al.Journal of the American Chemical Society|June 28, 2013
Sc3+-triggered oxoiron(IV) formation from O2 and its non-heme iron(II) precursor via a Sc3+-peroxo-Fe3+ intermediateFeifei Li, Katherine M Van Heuvelen, Katlyn K Meier, et al.Proceedings of the National Academy of Sciences of the United States of America|May 17, 2020
Kinetic analysis of amino acid radicals formed in H2O2-driven CuI LPMO reoxidation implicates dominant homolytic reactivityStephen M Jones, Wesley J Transue, Katlyn K Meier, et al.Pageof 4