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Biochemical analysis

Mason, R. P., Estermyer, J. D., Kelly, J. F., and Mason, P. E. (1996). Alzheimer s disease amyloid // peptide 25-35 is localized in the membrane hydrocarbon core X-ray diffraction analysis. Biochem. Biophys. Res. Commun. 222, 78-82. [Pg.211]

P. J. Mulquiney and P. W. Kuchel, Model of 2,3 bisphosphoglycerate metabolism in the human erythrocyte based on detailed enzyme kinetic equations Computer simulation and metabolic control analysis. Biochem. J. 342 (3), 597 604 (1999). [Pg.239]

Andra, J., Howe, J., Garidel, P., Rossle, M., Richter, W., Leiva-Leon, J., Moriyon, I., Bartels, R., Gutsmann, T., Brandenburg, K. Mechanism of interaction of optimized Limulus-derived cyclic peptides with endotoxins thermodynamic, biophysical and microbiological analysis. Biochem J 406 (2007) 297-307. [Pg.64]

Durrant, M.C. (2001) Controlled protonation of iron-molybdenum cofactor by nitrogenase a structural and theoretical analysis, Biochem. J. 355, 871-891. [Pg.197]

Dosemeci, A., Tao-Cheng, J.H., Vinade, L. and Jaffe, H. (2006) Preparation of postsynaptic density fraction from hippocampal slices and proteomic analysis. Biochem. Biophys. Res. Commun. 339,687-694. [Pg.95]

Wolfenden, R.V. (1978) Interaction of the peptide bond with solvent water a vapor phase analysis. Biochem. 17, 201-204. Yalkowsky, S.H., Valvani, S.C. (1980) Solubility and partitioning I Solubility of nonelectrolytes in water. J. Pharm. Sci. 69(8), 912-922. [Pg.525]

Decarboxylase Preparations in the Estimation of Amino Acids and in Protein Analysis. Biochem. J. 39, 46 (1945). [Pg.280]

Bandiera S, Sawyer TW, Campbell MA, Fujita T, Safe S. Competitive binding to the cytosolic 2,3,7,8-tetrachlorodibenzo-p-dioxin receptor Effects of structure on the affinities of substituted halogenated biphenyls—A QSAR analysis. Biochem Pharmacol 1983 32 3803-13. [Pg.347]

Golas CL, Prokipcak RD, Okey AB, Manchester DK, Safe S, Fujita T. Competitive binding of 7-substituted-2,3-dichlorodibenzo-p-dioxins with human Ah receptor—A QSAR analysis. Biochem Pharmacol 1990 40 737-41. [Pg.347]

Atkins, G. L. Some Applications of a Digital Computer to Estimate Biological Parameters by Nonlinear Regression Analysis. Biochem. Bioph3rs. Acta 252, 421 (1971). [Pg.71]

Ozawa, T., Tanaka, M., Ikebe, S., Ohno, K., Kondo, T. and Mizuno, Y. (1990) Quantitative determination of deleted mitochondrial DNA relative to normal DNA in parkinsonian striatum by a kinetic PCR analysis. Biochem. Bio-phys. Res. Commun. 172 483 89. [Pg.499]

Samson G, Morissette JC, Popovic R. Determination of four apparent mercury interaction sites in photos) tem II by using a new modification of the Stern-Volmer analysis. Biochem Biophys Res... [Pg.173]

Bietz, A. Cereal prolamin evolution and homology revealed by sequence analysis. Biochem. Genet. 20(11-12), December 1982. [Pg.98]

Deak, F. Argraves, W.S., Kiss, 1., Sparks, K.J. Goetinck, P.F. (1985). Primary structure of the telopeptide and a portion of the helical domain of chicken type 11 procollagen as determined by DNA sequence analysis. Biochem. ]., 229, 189-96. [Pg.238]

S. K. Chowdhury, V. Katta, and B. T. Chait, Electrospray ionization mass spectrometric peptide mapping a rapid, sensitive technique for protein structure analysis, Biochem. Biophys. Res. Comm. 167, 686-692 (1990). [Pg.338]

See also Bioluminescence. Chemiluminescence Overview. Enzymes Enzyme-Based Assays. Microbiological Techniques. Water Analysis Biochemical Oxygen Demand. [Pg.281]

Biological techniques encompass two methodological approaches live systems and biochemical techniques. Live systems employ (1) whole animal, (2) microorganisms, and (3) cell and tissue culture methods as tools in food analysis. Biochemical techniques include uses of enzymes and immunochemical techniques (Table 3). [Pg.1444]

The biochemical-biological basis for the preparation of the catalyst (isolation, culture of pure cell lines, maintenance of strains, enzyme preparation), all the problems of raw materials (the composition of the culture media), and all the problems of analysis (chemical analysis biochemical, microbiological, and physical methods). [Pg.6]

Morris HR, Panico M, Barber M, Bordoli RS, Sedgwick RD, Tyler A. Fast atom bombardment a new mass spectrometric method for peptide sequence analysis. Biochem Biophys Res Commiin. 1981 101 623-31. [Pg.249]


See other pages where Biochemical analysis is mentioned: [Pg.318]    [Pg.226]    [Pg.312]    [Pg.404]    [Pg.97]    [Pg.382]    [Pg.209]    [Pg.318]    [Pg.100]    [Pg.279]    [Pg.288]    [Pg.407]    [Pg.258]    [Pg.210]    [Pg.165]    [Pg.318]    [Pg.193]    [Pg.270]    [Pg.287]    [Pg.310]    [Pg.5070]    [Pg.5071]    [Pg.5072]    [Pg.5073]    [Pg.5075]    [Pg.5076]    [Pg.5077]    [Pg.5079]    [Pg.5080]   
See also in sourсe #XX -- [ Pg.102 , Pg.103 ]




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