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November 1, 1987Journal of Biological Chemistry448 citationsOpen Access

The receptor for antidiabetic sulfonylureas controls the activity of the ATP-modulated K+ channel in insulin-secreting cells.

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HSHeidy Schmid‐AntomarchiJWJan de WeilleMFMichel Fosset

Structured PICO

P
Population
RINm5F insulinoma cells
I
Intervention
Sulfonylureas (including glibenclamide, glipizide, gliquidone, and analogs)
O
Outcome
Inhibition of ATP-modulated K+ channels and binding to sulfonylurea receptorssurrogate

Sulfonylureas exert their hypoglycemic effect by binding to specific receptors and inhibiting ATP-modulated K+ channels in insulin-secreting cells.

Abstract

Sulfonylureas are powerful hypoglycemic drugs that have been used for decades to treat diabetic patients. This paper describes a 86Rb+ flux technique that permits one to study easily the properties of ATP-modulated K+ channels in RINm5F insulinoma cells. Sulfonylureas inhibit this type of K+ channel under conditions of intracellular ATP depletion. The most potent sulfonylureas (glibenclamide, glipizide, and gliquidone) are acting in the nanomolar range of concentration. Inhibition of the single ATP-modulated K+ channels by low concentrations of sulfonylureas was also observed using the patch-clamp technique. The sulfonylurea receptor has been biochemically identified with 3Hglibenclamide. For 10 different sulfonylureas (or sulfonylurea analogs) there was an excellent correlation between efficacy of blockade of ATP-modulated K+ channels and efficacy of binding to the sulfonylurea receptors using the 3H-ligand.

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Cite This Study

Schmid‐Antomarchi et al. (1987) studied this question.

synapsesocial.com/papers/6a2082b52e4175c6d5f41eb5https://doi.org/10.1016/s0021-9258(18)47664-8
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