| 1. |
Kaziro, Y, (1978) The role of guanosine 5′-triphosphate in polypeptide chain elongation. Biochim. Biophys. Acta
505, 95–127.
|
| |
| 2. |
Frieden, C. (1962) The unusual inhibition of glutamate dehydrogenase by guanosine di-and triphosphate. Biochim. Biophys. Acta
59, 484–486.
|
| |
| 3. |
Witters, L. A., Friedman, S. A., Tipper, S. J., and Bacon, G. W. (1981) Regulation of acetyl-CoA carboxylase by guanine nucleotides.
J. Biol Chem.
256, 8573–8578.
|
| |
| 4. |
Glesne, D. A., Collart, F. R., and Huberman, E. (1991) Regulation of IMP dehydrogenase gene expression by its end products,
guanine nucleotides. Mol. Cell. Biol.
11, 5417–5425.
|
| |
| 5. |
Kornberg, A. and Baker, T. A. (1992) Biosynthesis of DNA precursors, in DNA Repltcatlon, 2nd ed. W. H Freeman, New York, pp. 53,54
|
| |
| 6. |
Stryer, L. (1988) Citric acid cycle, in Biochemistry, 3rd ed W. H Freeman, New York, p. 377.
|
| |
| 7. |
Kirschner, M. and Mitchison, T. (1986) Beyond self-assembly: from microtubules to morphogenesis. Cell
45, 329–342.
|
| |
| 8. |
Gilman, A. G. (1987) G proteins: transducers of receptor-generated signals. Ann Rev. Biochem.
56, 615–649.
|
| |
| 9. |
Taylor, C. W. (1990) The role of G proteins in transmembrane signalling. Biochem. J.
272, 1–13
|
| |
| 10. |
Casey, P. J. and Gilman, A. G. (1988) G protein involvement in receptor-effector coupling. J. Biol. Chem
263, 2577–2580.
|
| |
| 11. |
Dohlman, H. G., Caron, M. G., and Lefkowttz, R. J. (1987) A family of receptors coupled to guanine nucleotide regulating proteins.
Biochemistry
26, 2657–2664.
|
| |
| 12. |
Breitwieser, G. E. (1991) G-protein mediated ion channel activation, Hypertenston
17, 684–692.
|
| |
| 13. |
Fung, B.-K., Hurley, J. B., and Stryer, L. (1982) Flow of information in the light-triggered cyclic nucleotide cascade of
vision. Proc. Nat1 Acad. Scl USA
78, 152–156.
|
| |
| 14. |
Lopez, J. M., Dromerick, A., and Freese, E. (1981) Response of guanosine 5′-ttiphosphate concentration to nutritional changes
and its significance for Bacdlus subtllis sporulation. J. Bactenol.
146, 605–613.
|
| |
| 15. |
Stephens, J. C., Artz, S. W., and Ames, B. N. (1975) Guanosine 5′-diphosphate 3′-diphosphate (PpGpp): positive effector for
histidine operon transcription and general signal for amino acid deficiency. Proc. Nat1 Acad Scz USA 72, 4389–4393.
|
| |
| 16. |
Keppler, D. and Kaiser, W. (1978) Enzymatic analysis of guanme nucleotides in tissues and cells. Anal. Biochem.
86, 147–153.
|
| |
| 17. |
Cha, S. and Cha, C.-J. M. (1970) Microdetermination of guanine ribonucleotides by an enzymtc amplification technique. Anal Btochem
33, 174–192.
|
| |
| 18. |
Cerpovicz, P. F. and Ochs, R. S. (1991) A radiochemical enzymatic endpomt assay for GTP and GDP. Anal. Btochem
192, 197–202
|
| |
| 19. |
Karl, D. M (1978) A raped sensitive method for the measurement of guanine ribonucleotides in bacterial and environmental extracts
Anal Bzochem
89, 58l–595
|
| |
| 20. |
Karl, D. M. (1978) Determinatton of GTP, GDP, and GMP in cell and tissue extracts. Methods Enzymol
57, 85–94
|
| |
| 21. |
Goodrich, G. A. and Burrell, H. R. (1982) Micromeasurement of nucleoside 5′-trlphosphates using coupled bioluminescence Anal Bzochem
127, 395–401.
|
| |
| 22. |
Moyer, J. D. and Henderson, J. F. (1983) Ultrasensitive assay for ribonucleoside triphosphates in 50-1000 cells. Bzochem Pharmacol
32, 383l–3834.
|
| |
| 23. |
Ford, S. R., Vaden, V. R., Booth, J. L., Hall, M. S., Webster, J. J., and Leach, F R. (1994) Bioluminescent determmation of
0 1 picomole amounts of guanine nucleotides. J. Btolumrn. Chemtlumin
9, 251–265.
|
| |
| 24. |
Ball, W. J. and Atkinson, D E (1975) Adenylate energy charge in Saccharomyces cerevisrae during starvation J. Bactertol
121, 975–982.
|
| |
| 25. |
Schaeffer, J M. and Anderson, S M. (1985) Dopamme stimulated increase of GTP levels in the rat retma J. Btol Chem.
260, 4555–4557.
|
| |
| 26. |
Ostroy, S. E., Svoboda, R. A, and Wilson, M. J (1990) A stage in glycolysts controls the metabolic adjustments of vertebrate
rod photoreceptors upon illumination. Btochem Btophys. Res. Commun
168, 155–160.
|
| |
| 27. |
Scheele, J. S., Rhee, J M., and Boss, G. R. (1995) Determination of absolute amounts of GDP and GTP bound to Ras in mammalian
cells. Comparison of parental and Rasoverproducmg NIH 3T3 tibroblasts. Proc Nat1 Acad Scz USA
92, 1097–1100
|
| |
| 28. |
Dettmary, P, Van den Berg, G., and Henqum, J.-C. (1996) Concentration dependence and time course of the effects of glucose
on adenme and guanme nucleotides in mouse pancreatic islets. J Biol. Chem
271, 20,559–20,565
|
| |
| 29. |
Keppler, D. (1985) Guanosme 5′-trtphosphate, guanosine 5′-diphosphate, and guanosine 5′-mononphosphate. Methods Enzymol Anal.
7, 409–419.
|
| |
| 30. |
Pogson, C. I., Gurnah, S. V., and Smith, S. A. (1979) A sensitive and specific assay for GTP and GDP in tissue extracts. Int J Bzochem
10, 995–1000.
|
| |
| 31. |
De Azeredo, F. A. M., Feussner, G. K., Lust, W D., and Passonneau, J. V. (1979) An enzymatic method for the measurement of
GTP and GDP in tissue extracts Anal Biochem.
95, 512–519.
|
| |
| 32. |
Goodrich, G. A. and Burrell, H R (1982) Micromeasurement of nucleoslde 5′-triphosphates using coupled bioluminescence. Anal Bzochem.
127, 395–401.
|
| |
| 33. |
Cheung, C. P. and Marcus, A (1976) Guanme nucleotide determmation in extracts of wheat embryo FEBS Lett
70, 141–144.
|
| |
| 34. |
Brady, W. A., Kokorts, M. S., Fitzgibbon, M., and Black, M. E. (1996) Clonmg, characterization, and modelmg of mouse and human
guanylate kinase. J Biol Chem.
271, 16,734–16,740.
|
| |
| 35. |
Nttschmann, W. H. (1985) A firefly luctferase assay for determination of cytidme 5′-trtphosphate in biologtcal samples. Anal Brochem
147, 186–193.
|
| |