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Results of search for 'au:"Piñeyro, M A"', page 1 of 2
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Authors
Blackman, M R
Buckenmeyer, P J
Cahill, C M
Corpas, E
Dax, E M
Egan, J M
Gregerman, R I
Harman, S M
Kalish, M I
Katz, M S
Kelly, T M
Kirkland, J L
Lu, Z D
Partilla, J S
Pineyro, M A
Piñeyro, M A
Roberson, R
Schneyer, C R
Wang, X
Zhou, J
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Topics
Adenylyl Cyclases
Adipose Tissue
Adult
Aging
Animals
Enzyme Activation
Epinephrine
Female
Glucagon
Guanosine Triphosphate
Guanylyl Imidodiphosphate
Humans
Kinetics
Liver
Male
Rats
drug effects
enzymology
metabolism
pharmacology
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English
Your search returned 24 results.
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1.
Mechanism of action of forskolin on adenylate cyclase: effect on bovine sperm complemented with erythrocyte membranes.
[electronic resource]
by
Schneyer, C R
Piñeyro, M A
Gregerman, R I
Producer:
19830826
In:
Life sciences
vol. 33
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2.
Partial purification from rat and pig liver of cytosolic stimulators of hormone-sensitive adenylate cyclase: quantitation and resolution of two components.
[electronic resource]
by
Kelly, T M
Pineyro, M A
Gregerman, R I
Producer:
19850114
In:
Biochemical medicine
vol. 32
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3.
Glucagon-like peptide 1 and exendin-4 convert pancreatic AR42J cells into glucagon- and insulin-producing cells.
[electronic resource]
by
Zhou, J
Wang, X
Pineyro, M A
Egan, J M
Producer:
19991213
In:
Diabetes
vol. 48
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4.
Adenylyl cyclase activation by halide anions other than fluoride.
[electronic resource]
by
Kalish, M I
Pineyro, M A
Cooper, B
Gregerman, R I
Producer:
19750604
In:
Biochemical and biophysical research communications
vol. 61
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5.
Beta-adrenergic receptors, glucagon receptors, and their relationship to adenylate cyclase in rat liver during aging.
[electronic resource]
by
Dax, E M
Partilla, J S
Piñeyro, M A
Gregerman, R I
Producer:
19870427
In:
Endocrinology
vol. 120
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6.
Quantitation of epinephrine- and glucagon-sensitive adenylate cyclases of rat liver. Implications of alterations of enzymatic activities during preparation of particulate fractions and membranes.
[electronic resource]
by
Katz, M S
Kalish, M I
Piñeyro, M A
Gregerman, R I
Producer:
19780814
In:
Biochimica et biophysica acta
vol. 540
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7.
Altered glucagon- and catecholamine hormone-sensitive adenylyl cyclase responsiveness in rat liver membranes induced by manipulation of dietary fatty acid intake.
[electronic resource]
by
Dax, E M
Partilla, J S
Piñeyro, M A
Gregerman, R I
Producer:
19901204
In:
Endocrinology
vol. 127
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8.
Essential role of GTP in epinephrine stimulation of human fat cell adenylate cyclase.
[electronic resource]
by
Katz, M S
Partilla, J S
Piñeyro, M A
Gregerman, R I
Producer:
19810625
In:
Journal of lipid research
vol. 22
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9.
Epinephrine-and glucagon-sensitive adenylate cyclases of rat liver during aging. Evidence for membrane instability associated with increased enzymatic activity.
[electronic resource]
by
Kalish, M I
Katz, M S
Piñeyro, M A
Gregerman, R I
Producer:
19771014
In:
Biochimica et biophysica acta
vol. 483
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10.
Activation of epinephrine and glucagon-sensitive adenylate cyclases of rat liver by cytosol protein factors. Role in loss of enzyme activities during preparation of particulate fractions, quantitation and partial characterization.
[electronic resource]
by
Katz, M S
Kelly, T M
Piñeyro, M A
Gregerman, R I
Producer:
19790223
In:
Journal of cyclic nucleotide research
vol. 4
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11.
Membrane association of soluble protein activators of rat liver adenylate cyclase. Evidence for distinctness from the guanine nucleotide-binding stimulating protein (Ns).
[electronic resource]
by
Kelly, T M
Levine, M A
Piñeyro, M A
Gregerman, R I
Producer:
19870116
In:
Endocrine research
vol. 12
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12.
Stimulation of human fat cell adenylate cyclase by GDP and guanosine 5'-O-(2-thiodiphosphate).
[electronic resource]
by
Schneyer, C R
Piñeyro, M A
Kirkland, J L
Gregerman, R I
Producer:
19840716
In:
The Journal of biological chemistry
vol. 259
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13.
Anions and cations as stimulators of liver adenylate cyclase.
[electronic resource]
by
Katz, M S
Kelly, T M
Piñeyro, M A
Gregerman, R I
Producer:
19801218
In:
Biochimica et biophysica acta
vol. 632
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14.
Hormone-sensitive adenylyl cyclase in preadipocytes cultured from adipose tissue: comparison with 3T3-L1 cells and adipocytes.
[electronic resource]
by
Kirkland, J L
Piñeyro, M A
Lu, Z D
Gregerman, R I
Producer:
19880125
In:
Journal of cellular physiology
vol. 133
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15.
Determinants of the stimulation of fat cell adenylate cyclase by high concentrations of sodium and magnesium salts. Implications for the role of magnesium in regulation of enzyme activity.
[electronic resource]
by
Katz, M S
Partilla, J S
Pineyro, M A
Gregerman, R I
Producer:
19800828
In:
Biochimica et biophysica acta
vol. 613
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16.
Continuous subcutaneous infusions of growth hormone (GH) releasing hormone 1-44 for 14 days increase GH and insulin-like growth factor-I levels in old men.
[electronic resource]
by
Corpas, E
Harman, S M
Piñeyro, M A
Roberson, R
Blackman, M R
Producer:
19930217
In:
The Journal of clinical endocrinology and metabolism
vol. 76
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17.
Growth hormone (GH)-releasing hormone-(1-29) twice daily reverses the decreased GH and insulin-like growth factor-I levels in old men.
[electronic resource]
by
Corpas, E
Harman, S M
Piñeyro, M A
Roberson, R
Blackman, M R
Producer:
19920903
In:
The Journal of clinical endocrinology and metabolism
vol. 75
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18.
Salts promote activation of fat cell adenylate cyclase by GTP: special role for sodium ion.
[electronic resource]
by
Katz, M S
Partilla, J S
Piñeyro, M A
Schneyer, C R
Gregerman, R I
Producer:
19820521
In:
Proceedings of the National Academy of Sciences of the United States of America
vol. 78
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19.
Prostaglandin-sensitive adenylyl cyclase of cultured preadipocytes and mature adipocytes of the rat: probable role of Gi in determination of stimulatory or inhibitory action.
[electronic resource]
by
Lu, Z D
Piñeyro, M A
Kirkland, J L
Li, Z H
Gregerman, R I
Producer:
19880902
In:
Journal of cellular physiology
vol. 136
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20.
Iodate promotes guanosine triphosphate stimulation of human fat-cell adenylate cyclase.
[electronic resource]
by
Kelly, T M
Katz, M S
Piñeyro, M A
Partilla, J S
Gregerman, R I
Producer:
19820924
In:
Archives of biochemistry and biophysics
vol. 216
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