Michael Etzerodt
University of Copenhagen
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Featured researches published by Michael Etzerodt.
Journal of Biological Chemistry | 1998
Jonas Heilskov Graversen; Rikke Høegh Lorentsen; Christian Jacobsen; Søren K. Moestrup; Bent W. Sigurskjold; Hans Christian Thøgersen; Michael Etzerodt
Tetranectin, a homotrimeric protein belonging to the family of C-type lectins and structurally highly related to corresponding regions of the mannose-binding proteins, is known specifically to bind the plasminogen kringle 4 protein domain, an interaction sensitive to lysine. Surface plasmon resonance and isothermal calorimetry binding analyses using single-residue and deletion mutant tetranectin derivatives produced in Escherichia coli showed that the kringle 4 binding site resides in the carbohydrate recognition domain and includes residues of the putative carbohydrate binding site. Furthermore, the binding analysis revealed that the interaction is sensitive to calcium in addition to lysine.
Acta Crystallographica Section D-biological Crystallography | 1997
Jette S. Kastrup; Hanne H. Rasmussen; Bettina Bryde Nielsen; Ingrid Kjøller Larsen; Thor Las Holtet; Jonas Heilskov Graversen; Michael Etzerodt; Hans Christian Thøgersen
The recombinant human plasminogen binding protein tetranectin (TN) and the C-type lectin CRD of this protein (TN3) have been crystallized. TN3 crystallizes in the tetragonal space group P4(2)2(1)2 with cell dimensions a = b = 64.0, c = 75.7 A and with one molecule per asymmetric unit. The crystals diffract X-rays to at least 2.0 A resolution. A complete diffraction data set has been collected to 2.7 A resolution. The crystals of TN, obtained by the vapour-diffusion reverse salting-in method at 280 K, are rhombohedral, space group R3, with the hexagonal axes a = b = 89.1, c = 75.8 A, and diffract to at least 2.5 A. A full data set has been collected to 3.0 A. The asymmetric unit contains one monomer of TN. Molecular replacement solutions for TN3 and TN have been obtained using the structure of the C-type lectin CRD of rat mannose-binding protein as search model. The rhombohedral space group indicates that trimers of TN are formed in accordance with the observation of trimerization in solution.
Archive | 2001
Michael Etzerodt; Thor Las Holtet; Niels Jonas Heilskov Graversen; Hans Christian Thøgersen
Journal of Biological Chemistry | 2000
Jonas Heilskov Graversen; Christian Jacobsen; Bent W. Sigurskjold; Rikke Høegh Lorentsen; Søren K. Moestrup; Hans Christian Thøgersen; Michael Etzerodt
Archive | 1994
Hans Christian Thøgersen; Thor Las Holtet; Michael Etzerodt
Archive | 2008
Majbritt Hauge Kyneb; Mikkel Holmen Andersen; Michael Etzerodt; Thor Las Holtet
Archive | 2009
Jonas Heilskov Graversen; Hans Christian Thøgersen; Anke Kretz-rommel; Michael Etzerodt; Thor La Holtet; Mikkel Holmen Andersen; Josephus Dirk Nieland
Archive | 2001
Michael Etzerodt; Thor Las Holtet; Niels Jonas Heilskov Graversen; Hans Christian Thøgersen
Archive | 2001
Michael Etzerodt; Niels Jonas Heilskov Graversen; Thor Las Holtet; Hans Christian Thøgersen
Archive | 2001
Michael Etzerodt; Niels Jonas Heilskov Graversen; Thor Las Holtet; Hans Christian Thøgersen