Phosphodiesterase 3B has been used in a study to evaluate the evidence for biological effects of metformin in operable breast cancer. Phosphodiesterase 3B has also been used in a study to investigate the role of intracellular and intercellular communication in perfusion distribution of erythrocyte-derived ATP.
Physical properties
N-terminal GST-tagged 86 kDa protein containing amino acids 592-end
Unit Definition
One unit will convert 1.0 picomole of 3′,5′-cAMP to 5′-AMP per minute at pH 7.4 at 37 °C.
Liver transplantation : official publication of the American Association for the Study of Liver Diseases and the International Liver Transplantation Society, 18(4), 444-454 (2011-12-14)
Here we examined whether the expression of a novel immunoregulatory gene set could be used to predict outcomes in murine models of rapamycin-induced cardiac tolerance, spontaneous hepatic tolerance, and cardiac rejection. The expression of the immunoregulatory gene set was assessed
Breast cancer research and treatment, 128(3), 783-794 (2011-06-10)
Metformin may reduce the incidence of breast cancer and enhance response to neoadjuvant chemotherapy in diabetic women. This trial examined the effects of metformin on Ki67 and gene expression in primary breast cancer. Non-diabetic women with operable invasive breast cancer
Microcirculation (New York, N.Y. : 1994), 19(5), 430-439 (2012-07-11)
In complex organisms, both intracellular and intercellular communication are critical for the appropriate regulation of the distribution of perfusion to assure optimal O(2) delivery and organ function. The mobile erythrocyte is in a unique position in the circulation as it
Journal of medicinal chemistry, 56(5), 2087-2096 (2013-02-16)
Trypanosoma brucei cyclic nucleotide phosphodiesterase B1 (TbrPDEB1) and TbrPDEB2 have recently been validated as new therapeutic targets for human African trypanosomiasis by both genetic and pharmacological means. In this study we report the crystal structure of the catalytic domain of
Possible involvement of autocrine factors into the control of motile behavior via a receptor-mediated mechanism was investigated in Physarum polycephalum plasmodium, a multinuclear amoeboid cell with the auto-oscillatory mode of motility. Cyclic adenosine monophosphate (cAMP) and extracellular cAMP-specific phosphodiesterase, its
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