Biology Reference
In-Depth Information
Sai, J., and Johnson, C. H. (2002). Dark-stimulated calcium ion fluxes in the chloroplast stroma and
cytosol. Plant Cell 14,
1279-1291.
Sanchez-Bueno, A., Yoshida, R., and Tsuji, F. I. (1996). Regeneration and luminescence of aequorin in
Chinese hamster ovary cells transformed with cDNA for apoaequorin. Int. J. Biochem. Cell Biol. 28,
1045-1049.
SantoDomingo, J., Vay, L., Camacho, M., Hern´ndez-SanMiguel, E., Fonteriz, R. I., Lobat´n, C. D.,
Montero, M., Moreno, A., and Alvarez, J. (2008). Calcium dynamics in bovine adrenal medulla
chroma
1265-1274.
Saran, S., Nakao, H., Tasaka, M., Iida, H., Tsuji, F. I., Nanjundiah, V., and Takeuchi, I. (1994).
Intracellular free calcium level and its response to cAMP stimulation in developing Dictyostelium cells
transformed with jellyfish apoaequorin cDNA. FEBS Lett. 337, 43-47.
Sedbrook, J. C., Kronebusch, P. J., Borisy, G. G., Trewavas, A. J., and Masson, P. H. (1996).
Transgenic AEQUORIN reveals organ-specific cytosolic Ca 2 þ responses to anoxia in Arabidopsis
thaliana seedlings. Plant Physiol. 111, 243-257.
Shaw, B. D., Kozlova, O., Read, N. D., Turgeon, B. G., and Hoch, H. C. (2001). Expression of
recombinant aequorin as an intracellular calcium reporter in the phytopathogenic fungus Phyllosticta
ampelicida. Fungal Genet. Biol. 34, 207-215.
Sheu, Y. A., Kricka, L. J., and Pritchett, D. B. (1993). Measurement of intracellular calcium using
bioluminescent aequorin expressed in human cells. Anal. Biochem. 209, 343-347.
Shimomura, O. (1991). Preparation and handling of aequorin solutions for the measurement of cellular
Ca 2 þ . Cell Calcium 12, 635-643.
Shimomura, O. (1997). Membrane permeability of coelenterazine analogues measured with fish eggs.
Biochem. J. 326, 297-298.
Shimomura, O., Musicki, B., and Kishi, Y. (1989). Semi-synthetic aequorins with improved sensitivity
to Ca 2 þ ions. Biochem. J. 261,
Y
n cell secretory granules. Eur. J. Neurosci. 28,
913-920.
Siegmund, O., Vallerga, J., Jelinsky, P., Michalet, X., andWeiss, S. (2005). Cross delay line detectors for
high time resolution astronomical polarimetry and biological fluorescence imaging. IEEE Nucl. Sci.
Symp. Conf. Rec. 1,
448-452.
Souslova, E. A., Belousov, V. V., Lock, J. G., Str¨mblad, S., Kasparov, S., Bolshakov, A. P.,
Pinelis, V. G., Labas, Y. A., Lukyanov, S., Mayr, L. M., and Chudakov, D. M. (2007). Single
fluorescent protein-based Ca 2 þ sensors with increased dynamic range. BMC Biotechnol. 7,
37.
Speksnijder, J. E., Sardet, C., and Ja
e, L. F. (1990). The activation wave of calcium in the ascidian egg
and its role in ooplasmic segregation. J. Cell Biol. 110,
V
1589-1598.
Stoppini, L., Buchs, P. A., and Muller, D. (1991). A simple method for organotypic cultures of nervous
tissue. J. Neurosci. Methods 37,
173-182.
Stepanyuk, G. A., Golz, S., Markova, S. V., Frank, L. A., Lee, J., and Vysotski, E. S. (2005).
Interchange of aequorin and obelin bioluminescence color is determined by substitution of one active
site residue of each photoprotein. FEBS Lett. 579, 1008-1014.
Strayle, J., Pozzan, T., and Rudolph, H. K. (1999). Steady-state free Ca 2 þ in the yeast endoplasmic
reticulum reaches only 10 m M and is mainly controlled by the secretory pathway pump pmr1. EMBO
J. 18, 4733-4743.
Szado, T., Kuo, K. H., Bernard-Helary, K., Poburko, D., Lee, C. H., Seow, C., Ruegg, U. T., and van
Breemen, C. (2003). Agonist-induced mitochondrial Ca 2 þ transients in smooth muscle. FASEB J. 17,
28-37.
Tenenbaum, L., Chtarto, A., Lehtonen, E., Velu, T., Brotchi, J., and Levivier, M. (2004). Recombinant
AAV-mediated gene delivery to the central nervous system. J. Gene Med. 6, S212-S222.
Torfs, H., Poels, J., Detheux, M., Dupriez, V., Van Loy, T., Vercammen, L., Vassart, G.,
Parmentier, M., and Vanden Broeck, J. (2002). Recombinant aequorin as a reporter for receptor-
mediated changes of intracellular Ca 2 þ -levels in Drosophila S2 cells. Invert. Neurosci. 4, 119-124.
Torrecilla, I., Legan ´ s, F., Bonilla, I., and Fern ´ ndez-Pi ˜ as, F. (2000). Use of recombinant aequorin to
study calcium homeostasis and monitor calcium transients in response to heat and cold shock in
cyanobacteria. Plant Physiol. 123,
161-176.
Search WWH ::




Custom Search