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Titlebook: Methods of Protein Microcharacterization; A Practical Handbook John E. Shively Book 1986 Springer Science+Business Media LLC 1986 amino aci

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Yu-Ching E. Pan,Stanley Stein and the existence of recep­ tor-ligand complexes at highest density in coated pits define the process as selective and concentrative. This topic has received ever increasing attention during the past few years. The evolving mechanisms are especially exciting because they come at a time when the con
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PAGE under non-reducing conditions. We have recently described a new method for the detection of bound lipoproteins based on the high affinity streptavidin-biotin interaction (Wade ., 1985), and in this paper we report that a protein of MW approx. 130,000–150,000 can be detected in extracts of both
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Michael W. Hunkapiller,Chin-Sook Kimy fusing the fragments to two interacting proteins. The advantage of BiFC over alternative resonance energy transfer techniques is a high signal-to-noise ratio due to its strong intrinsic fluorescence without exogenous fluorogenic or chromogenic agents required. Here we provide a detailed descriptio
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Amino Acid Analysis With Postcolumn Fluorescent Derivatization primary method utilizes separation of the amino acids on a cation-exchange column, followed by postcolumn reaction with fluorescamine (.–.). This methodology will be presented in this article, but it will be placed in perspective with respect to the other approaches for amino acid analysis.
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Comparison of the Spinning Cup and Gas-Phase Instrumentso sequence low nanomolar to subnanomolar amounts of sample. The use of polybrene film to immobilize the sample was critical to the methodology, and was first introduced by Tarr (.). As demonstrated by Wittmann-Liebold (.), rigorous purification of reagents and solvents is also important for improved
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