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Cell biochemistry

Departments of Chemistry and Biochemistry, Cell and Molecular Biology, University of Kansas 2010 Malott Hall, Lawrence, KS 66045, kuczera tedybr.chem.ukans.edu... [Pg.163]

Goldberg, N. D. (1975). Cyclic nucleotides and cell function. In Cell membranes, biochemistry, cell biology, and pathology. edited by G. Weissman and R. Claiborne, pp. 185-202. H. P. Publishing, New York. [Pg.40]

Hastings, J. W. (1987). Dinoflagellate bioluminescence biochemistry, cell biology, and circadian control. In Schoelmerich, J. (ed.), Biolumin. Chemilumin., Proc. Int. Biolumin. Chemilumin. Symp., 4th, 1986, pp. 343-350. Wiley, Chichester, UK. [Pg.400]

Annual Reviews of Biochemistry, Cell and Developmental Biology, Genetics, Genomics and Human... [Pg.641]

Winkel, B.S.J., Flavonoid biosynthesis a colorful model for genetics, biochemistry, cell biology, and biotechnology. Plant Physiol. 126, 485, 2001. [Pg.386]

D.A. Slatter, N.C. Avery, A J. Bailey, Collagen in its Fibrillar State is Protected from Glycation, The International Journal of Biochemistry Cell Biology, 40(10), 2253 2263 (2008). [Pg.257]

Since the first edition of this series, we have witnessed the birth of molecular medicine, using biochemistry, cell biology, and genetics to diagnose and treat disease. Consequently, the basic sciences are becoming more important to the practice of medicine. This puts a new pressure on the student—to understand the basis of molecular medicine and the molecular sciences. I still think that it s easier to remember things that you understand, things that make sense. That s the idea behind the Basic Concepts series and that s why I have been so pleased with the expansion of the Basic Concepts series beyond Biochemistry. [Pg.13]

G.Weissman and R. Claiborne(eds.), Cell Membranes Biochemistry, Cell Biology Pathology, HP Publishing Co., Inc., New York, 1975. [Pg.256]

Graduate Program in Biochemistry, Cell and Developmental Biology Graduate Division of Biological and Biomedical Sciences Emory University Atlanta, GA 30322 USA... [Pg.396]

Facchini, P. J. 2001. Alkaloid biosynthesis in plants Biochemistry, cell biology, molecular regulation, and metabolic engineering applications. Annual Review of Plant Physiology and Plant Molecular Biology, 52 29-66. [Pg.273]

Edward Buchner Chemistry Biochemistry, cell-free fermentation... [Pg.83]

Weismann, G., Clairborne, R. (eds.) Cell Membranes — Biochemistry, Cell Biology, and Pathology , HP Publishing, New York, 1975... [Pg.61]

I. Minutes to Hours Enzymatic changes Cellular respiration Biochemistry Cell Biology (e.g., chemistry of death)... [Pg.228]

A large amount of structural information is available that describes the variety of indole alkaloids produced in plants. This has recently been followed by significant increases in our knowledge of the biosynthetic pathways that lead to their production and of the genes involved. Several reviews have appeared recently that describe the chemistry, biochemistry, cell and molecular biology of alkaloid biosynthesis.1 3 This chapter will selectively review recently characterized genes that appear to be responsible for the diversity and complexity of monoterpenoid indole alkaloids produced by plants. A particular focus will be on the reactions leading to the biosynthesis of vindoline (Fig. 8.1) in Catharanthus roseus. [Pg.182]

Bastianon, C., Zanoni, R., Miolo, G., Caffieri, S., 6c Reddi, E. (2005). Mitochondria and plasma membrane as targets of UVA-induced toxicity of neuroleptic drugs fluphenazine, perphenazine and thioridazine. International Journal of Biochemistry Cell Biology 37, 901—908. [Pg.468]

Methods to separate or fractionate biological and biomedical samples lie at the heart of a diverse range of scientific disciplines including biochemistry, cell biology and molecular biology. The choice and mode of separation is important to obtain the best results and avoid artefacts. There are a number of physical and chemical separation technologies routinely used by the bioanalytical chemist that are described in this chapter and various other chapters of this textbook. [Pg.124]

Daum, G., Lees, N.D., Bard, M., and Dickson, R., 1998, Biochemistry, cell biology and molecular biology of lipids of Saccharomyces cerevisiae. Yeast 14 1471-1510. [Pg.150]

Facchini PJ. Alkaloid biosynthesis in plants biochemistry, cell biology, molecular regulation and metabolic engineering appUca-tions. Annu. Rev. Plant Physiol. Plant Mol. Biol. 2001 52 29-66. [Pg.11]

The extreme toxic potential of marine metabolites often prevents their application in medicine. However, a number of metabolites proved to be valuable tools in biochemistry, cell and molecular biology. For instance the neurotoxic maitotoxin [109-112] (interaction with extracellular calcium enhancement of calcium influx [113]), the neurotoxic brevetoxin B [114] (interaction with the binding-site-5 of voltage-sensitive sodium channels [115]), tetrodotoxin and saxitoxin (voltage clamp analysis to study sodium channels and excitatory phenomena [116] tetrodotoxin abolishes brevetoxin B activity [117]), okadaic acid [118-120] (analysis of phosphorylation and dephosphorylation processes in eukaryotic cell metabolism [121]), and palytoxin (stimulation of arachidonic acid metabolism synergistically with TPA-type promoters [122]). [Pg.119]


See other pages where Cell biochemistry is mentioned: [Pg.1510]    [Pg.96]    [Pg.91]    [Pg.291]    [Pg.348]    [Pg.23]    [Pg.306]    [Pg.60]    [Pg.436]    [Pg.275]    [Pg.199]    [Pg.1510]    [Pg.312]    [Pg.99]    [Pg.390]    [Pg.385]   
See also in sourсe #XX -- [ Pg.131 , Pg.302 ]




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