A new and rapid method for the isolation of myosin from small amounts of muscle and non-muscle tissue by affinity chromatography
Author:
Publisher
Wiley
Subject
Cell Biology,Genetics,Molecular Biology,Biochemistry,Structural Biology,Biophysics
Reference16 articles.
1. Preparation of adenosine nucleotide derivatives suitable for affinity chromatography
2. Affinity chromatography of nicotinamide nucleotide-dependent dehydrogenases on immobilized nucleotide derivatives
3. General ligands in affinity chromatography. Cofactor–substrate elution of enzymes bound to the immobilized nucleotides adenosine 5′-monophosphate and nicotinamide–adenine dinucleotide
4. The purification of nicotinamide nucleotide-dependent dehydrogenases on immobilized cofactors
5. Affinity Chromatography of some Adenosine Phosphate-Requiring Systems
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1. Immobilized Coenzymes in General Ligand Affinity Chromatography and Their Use as Active Coenzymes;Advances in Enzymology - and Related Areas of Molecular Biology;2006-11-22
2. A 170 kDa polypeptide from mung bean shares multiple epitopes with rabbit skeletal myosin and binds ADP-adpagarose;Cell Biology International;1994-11
3. Excitation wavelength dependent fluorescence anisotropy of eosin-myosin adducts;Biophysical Chemistry;1990-07
4. Correlation between the distribution of smooth muscle or non muscle myosins and ?-smooth muscle actin in normal and pathological soft tissues;Cell Motility and the Cytoskeleton;1988
5. Selective purification of cardiac myosin by a high-performance salicylate affinity column;Journal of Chromatography A;1988-01
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