David P. Aiello, Ph.D. - Publications
Affiliations: | 2003 | University of Alabama, Birmingham, Birmingham, AL, United States |
Area:
Microbiology Biology, Cell Biology, BiochemistryYear | Citation | Score | |||
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2005 | Csutora P, Strassz A, Boldizsár F, Németh P, Sipos K, Aiello DP, Bedwell DM, Miseta A. Inhibition of phosphoglucomutase activity by lithium alters cellular calcium homeostasis and signaling in Saccharomyces cerevisiae. American Journal of Physiology. Cell Physiology. 289: C58-67. PMID 15703203 DOI: 10.1152/Ajpcell.00464.2004 | 0.718 | |||
2004 | Aiello DP, Fu L, Miseta A, Sipos K, Bedwell DM. The Ca2+ homeostasis defects in a pgm2Delta strain of Saccharomyces cerevisiae are caused by excessive vacuolar Ca2+ uptake mediated by the Ca2+-ATPase Pmc1p. The Journal of Biological Chemistry. 279: 38495-502. PMID 15252028 DOI: 10.1074/Jbc.M400833200 | 0.732 | |||
2003 | Miseta A, Tökés-Füzesi M, Aiello DP, Bedwell DM. A Saccharomyces cerevisiae mutant unable to convert glucose to glucose-6-phosphate accumulates excessive glucose in the endoplasmic reticulum due to core oligosaccharide trimming. Eukaryotic Cell. 2: 534-41. PMID 12796298 DOI: 10.1128/Ec.2.3.534-541.2003 | 0.585 | |||
2003 | Kellermayer R, Aiello DP, Miseta A, Bedwell DM. Extracellular Ca(2+) sensing contributes to excess Ca(2+) accumulation and vacuolar fragmentation in a pmr1Delta mutant of S. cerevisiae. Journal of Cell Science. 116: 1637-46. PMID 12640047 DOI: 10.1242/Jcs.00372 | 0.719 | |||
2002 | Aiello DP, Fu L, Miseta A, Bedwell DM. Intracellular glucose 1-phosphate and glucose 6-phosphate levels modulate Ca2+ homeostasis in Saccharomyces cerevisiae. The Journal of Biological Chemistry. 277: 45751-8. PMID 12351653 DOI: 10.1074/Jbc.M208748200 | 0.698 | |||
1999 | Miseta A, Kellermayer R, Aiello DP, Fu L, Bedwell DM. The vacuolar Ca2+/H+ exchanger Vcx1p/Hum1p tightly controls cytosolic Ca2+ levels in S. cerevisiae. Febs Letters. 451: 132-6. PMID 10371152 DOI: 10.1016/S0014-5793(99)00519-0 | 0.702 | |||
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