Biomedical Engineering Reference
In-Depth Information
9. REFERENCES
Ali, S. M., Geisow, M. J., and Burgoyne, R. D., 1989, A role for calpactin in calcium-dependent
exocytosis in adrenal chromaffin cells. Nature 340: 313-315.
Ando, Y., Imamura, S., Hong, Y. M., Owada, M. K., Kakunaga, T., and Kannagi, R., 1989,
Enhancement of calcium sensitivity of lipocortin I in phospholipid binding induced by
limited proteolysis and phosphorylation at the amino terminus as analyzed by phospho-
lipid affinity column chromatography. J. Biol. Chem. 264: 6948-4955.
Aunis, D., and Bader, M. F., 1988,The cytoskeleton as a barrier to exocytosis in secretory cells.
J. Exp. Biol. 139: 253-266.
Baba,T., Damke, H., Hinshaw, J. E., Ikeda, K., Schmid, S. L., and Warnock, D. E., 1995, Role
of dynamin in clathrin-coated vesicle formation. Cold. Spring. Harb. Symp. Quant. Biol.
60: 235-242.
Bandorowicz Pikula, J., 1998, A nucleotide-binding domain of porcine liver annexin VI. Pro-
teolysis of annexin VI labelled with 8-azido-ATP, purification by affinity chromatography
on ATP-agarose, and fluorescence studies. Mol. Cell Biochem 181: 11-20.
Bandorowicz Pikula, J., and Awasthi,Y. C., 1997, I ΒΈ teraction of annexins IV and VI with ATP.
An alternative mechanism by which a cellular function of these calcium- and membrane-
binding proteins is regulated. FEBS Lett. 409: 300-306.
Bandorowicz Pikula, J., Wrzosek, A., Makowski, P., and Pikula, S., 1997, The relationship
between the binding of ATP and calcium to annexin IV. Effect of nucleotide on the
calcium-dependent interaction of annexin with phosphatidylserine. Mol. Membr. Biol.
14: 179-186.
Bianchi, R., Giambanco, I., Ceccarelli, P., Pula, G., and Donato, R., 1992, Membrane-bound
annexin V isoforms (CaBP33 and CaBP37) and annexin VI in bovine tissues behave like
integral membrane proteins. FEBS Left. 296: 158-162.
Bitto, E., and Cho, W., 1998, Roles of individual domains of annexin I in its vesicle binding
and vesicle aggregation: a comprehensive mutagenesis study. Biochemistry 37: 10231-
10237.
Bomsel, M., Prydz, K., Parton, R. G., Gruenberg, J., and Simons, K., 1989, Endocytosis in filter-
grown Madin-Darby canine kidney cells. J. Cell Biol. 109: 3243-3258.
Braun, E. L., Kang, S., Nelson, M. A., and Natvig, D. O., 1998, Identification of the first fungal
annexin: analysis of annexin gene duplications and implications for eukaryotic evolution.
J. Mol. Evol. 47: 531-543.
Burger, A., Berendes, R., Liemann, S., Benz, J., Hofmann, A,, Gottig, P., Huber, R., Gerke, V.,
Thiel, C., Romisch, J., and Weber, K., 1996, The crystal structure and ion channel activity
of human annexin II, a peripheral membrane protein. J. Mol. Biol. 257: 839-847.
Burgoyne, R. D., and Geisow, M. J., 1989, The annexin family of calcium-binding proteins.
Review article. Cell Calcium. 10: l-10.
Burgoyne, R. D., Morgan, A,, Robinson, I., Pender, N., and Cheek, T. R., 1993, Exocytosis in
adrenal chromaffin cells. J. Anat. 183: 309-314.
Calvert, C. M., Gant, S. J., and Bowles, D. J., 1996, Tomato annexins p34 and p35 bind to F-
actin and display nucleotide phosphodiesterase activity inhibited by phospholipid binding.
Plant. Cell 8: 333-342.
Cao,T.T., Mays, R. W., and von Zastrow, M., 1998, Regulated endocytosis of G-protein-coupled
receptors by a biochemically and functionally distinct subpopulation of clathrin-coated
pits. J. Biol. Chem. 273: 24592-24602.
Caohuy, H., Srivastava, M., and Pollard, H. B., 1996, Membrane fusion protein synexin (annexin
VII) as a Ca 2+ /GTP sensor in exocytotic secretion. Proc. Natl. Acad. Sci. USA 93: 10797-
10802.
 
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