Inositol Pentakis- and Hexakisphosphate Metabolism Adds Versatility to the Actions of Inositol Polyphosphates Novel Effects on Ion Channels and Protein Traffic
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Published:1996
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Volume:
Page:187-226
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ISSN:0306-0225
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Container-title:myo-Inositol Phosphates, Phosphoinositides, and Signal Transduction
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language:
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Author:
Shears Stephen B.
Reference181 articles.
1. Abdullah, M., Hughes, P. J., Craxton, A., Gigg, R., Desai, T., Marecek, J. F., Prestwich, G. D., and Shears, S. B. 1992, Purification and characterization of inositol-1,3,4-trisphosphate 5/6-kinase from rat liver using an inositol hexakisphosphate affinity column, J. Biol. Chem. 267:22340–22345. 2. Ali, N., Craxton, A., and Shears, S. B., 1993, Hepatic Ins(1,3,4,5)P 4 3-phosphatase is compartmentalized inside endoplasmic reticulum, J. Biol. Chem. 268:6161–6167. 3. Ali, N., Duden, R., Bembenek, M. E., and Shears, S. B., 1995a, The interaction of coatomer with inositol polyphosphates is conserved in Saccharomyces cerevisiae, Biochem. J. 310:279–284. 4. Ali, N., Craxton, A., Sumner, M., and Shears, S. B., 1995b, Effects of aluminium upon the hepatic inositol polyphosphate phosphatase, Biochem. J. 305:557–561. 5. Arnone, A., and Perutz, M. F., 1974, Structure of inositol hexaphosphate-human deoxyhaemoglobin complex, Nature 249:34–36.
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