ISLET-ACTIVATING PROTEIN, PERTUSSIS TOXIN: SUBUNIT STRUCTURE AND MECHANISM FOR ITS MULTIPLE BIOLOGICAL ACTIONS
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Publisher
Elsevier
Reference47 articles.
1. Potentiation of the Adrenergic Beta-Receptor-Mediated Insulin Secretion in Pertussis-Sensitized Rats
2. Accelerated turnover of blood glucose in pertussis-sensitized rats due to combined actions of endogenous insulin and adrenergic beta-stimulation
3. Perfusion of the Pancreas Isolated from Pertussis-Sensitized Rats: Potentiation of Insulin Secretory Responses Due to β-Adrenergic Stimulation
4. Effect of in Vivo Pretreatment of Rats with a New Protein Purified fromBordetellapertussis onin VitroSecretion of Insulin: Role of Calcium
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1. Role of pertussis toxin A subunit in neutrophil migration and vascular permeability;Infection and Immunity;1997-03
2. Characterization of pertussis toxin analogs containing mutations in B-oligomer subunits;Infection and Immunity;1993-06
3. Identification of linear B-cell determinants of pertussis toxin associated with the receptor recognition site of the S3 subunit;Infection and Immunity;1991-04
4. Molecular Mechanisms of Mammalian Sperm-Zona Pellucida Interaction: Crosstalk Between Sperm and Egg;Advances in Assisted Reproductive Technologies;1990
5. Inhibition of pertussis toxin binding to model receptors by antipeptide antibodies directed at an antigenic domain of the S2 subunit;Infection and Immunity;1989-12
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