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Titlebook: Structure and Function of Haemocyanin; Joe V. Bannister Conference proceedings 1977 Springer-Verlag Berlin Heidelberg 1977 Function.Hämozy

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Morphology of , Hemocyanin and Its Subunitscrographs (Mellema and Klug, 1972). The cylindrical molecule has 52 symmetry and consists of a wall, two collars and two caps. The wall contains 60 morphological units with dyad symmetry bounded by two sets of helical grooves. The morphological units are of six crystallographic distinct types, but t
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, Hemocyanin. A Nuclear Magnetic Resonance Study of Its Subunitsd after dissociation of the oligomer can be fractionated into five distinct chromatographic zones. While homogeneous in molecular weight, the subunits in these zones appear to have unique functional properties. This uniqueness is also manifest in their NMR spectra. A simulated NMR spectrum, based on
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On the Active Site of Molluscan Haemocyanin and of Tyrosinases. Opening Addressq (1851–1935), who later became professor of physiology at the State University of Liege. Préparateur at the time at the State University of Ghent, he spent the second half of July and the month of August 1878 at the newly established laboratory in Roscoff, Brittany, working on the physiology of the
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, Hemocyanin. A Nuclear Magnetic Resonance Study of Its Subunitsion about the conformation of the native subunits and the environment of the copper atoms in the active site. Chloride ions are known to alter the oxygen affinities of some of the . hemocyanin subunits. This functional differentiation is supported by the marked effects of chloride ions on the NMR spectra of these particular subunits.
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Digestion of , Haemocyanin with Trypsinestion which bound oxygen. This fragment had a slightly different absorption spectrum to both native haemocyanin and to tubes. It appeared to be homogeneous in size with a molecular weight of approximately 124,000 and a polypeptide chain weight of approximately 45,000. The material was however heterogeneous in charge.
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Morphology of , Hemocyanin and Its Subunitsrphological units with dyad symmetry bounded by two sets of helical grooves. The morphological units are of six crystallographic distinct types, but they are similar in size, shape and orientation. Each collar contains five blobs of material. The cap has no substructure.
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A. A. Van Den Berg,W. Gaastra,H. A. Kuipersearbeit zu entwickeln. Mit zahlreichen Beispielen und Transferaufgaben..Neu in der aktualisierten zweiten Auflage: Testen Sie Ihr Wissen mit den exklusiven Fragen und Antworten zum Buch in der kostenlosen Springer-Nature-Flashcards-App..978-3-658-28433-6978-3-658-28434-3Series ISSN 2662-9240 Series E-ISSN 2662-9259
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