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Titlebook: Lipid Binding Proteins within Molecular and Cellular Biochemistry; Leonard Banaszak,David A. Bernlohr Book 1999 Springer Science+Business

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J. H. Veerkamp,H. T. B. van Moerkerk,C. F. M. Prinsen,T. H. van Kuppeveltere im Rahmen der Programmierungs- oder Optimierungs rechnung, eröffnete den Zugang zu Problemen, die bis dahin als nicht lösbar notgedrungen ausge­ klammert worden waren. Das Interdependenzproblem, die Verbindung von Pro­ duktions- und Investitionsplanung, Fragen der Investitionsfinanzierung, der L
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CD36 antisense expression in 3T3-F442A preadipocytes,tified by reaction with reactive long chain fatty acids derivatives under conditions where they inhibited FA uptake. Expression of CD36 in fibroblasts lacking the protein led to induction of a saturable high affinity, phloretin-sensitive component of oleate uptake. In this report, we have examined t
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Mechanisms of cellular uptake of long chain free fatty acids,0 μM albumin, respectively. The physiologic range of unbound FFA concentrations in such fluids has traditionally been calculated at < 1 μM. Studies of [.H]-oleate uptake by hepatocytes, adipocytes, cardiac myocytes and other cell types demonstrate that FFA uptake within this range is saturable, and
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Biochemical and biophysical analysis of the intracellular lipid binding proteins of adipocytes,as the keratinocyte lipid-binding protein (KLBP). In order to evaluate the potential physiological roles for these proteins, their biochemical and biophysical properties have been analyzed and compared. ALBP/aP2 and KLBP exhibit similar binding affinities for most long-chain fatty acids; however, AL
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Long-chain fatty acid transport in bacteria and yeast. Paradigms for defining the mechanism underlystanding the mechanism underlying this process is the development of the appropriate experimental systems which can be manipulated using the tools of molecular genetics. . and . are ideally suited as model systems to study this process in that both [1] exhibit saturable long-chain fatty acid transpo
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Long chain fatty acids as modulators of gene transcription in preadipose cells,ipose tissue, intestine and liver. This transcriptional action of fatty acids explains in part adaptation mechanisms of tissues to nutritional changes and especially to high-fat diets by increasing expression of proteins involved in lipid catabolism in liver and fatty acid uptake and utilization in
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Novel classes of fatty acid and retinol binding protein from nematodes, is the nematode polyprotein allergens/antigens (NPAs) which, as their name suggests, are synthesised as large polyproteins which are subsequently cleaved at regularly spaced sites to form multiple copies of a fatty acid binding protein of approximately 14.5 kDa. Binding studies using molecular envi
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