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Dive into the research topics where K. L. Skorecki is active.

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Featured researches published by K. L. Skorecki.


Methods in Enzymology | 1990

The cellular action of antidiuretic hormone

Dennis Brown; A. S. Verkman; K. L. Skorecki; Dennis A. Ausiello

Publisher Summary This chapter describes the techniques that have been used on vasopressin action, and to describe briefly the information that has been gained by this multifaceted approach to a cell biological problem. Binding of the antidiuretic hormone, vasopressin, to receptors on the basolateral plasma membrane of kidney collecting duct principal cells stimulates a cascade of events that results in a rapid and dramatic increase in the water permeability of the apical plasma membrane of these cells. The combination of morphology and biophysics has proved especially valuable for the investigation of water channel recycling at the apical membrane, while target analysis has provided novel information about initial steps in the vasopressin-induced stimulation of adenylate cyclase at the basolateral plasma membrane of vasopressin-sensitive epithelial cells. In particular, the identification and molecular cloning of the vasopressin-sensitive water channel is an active area of research in different laboratories. This is likely to be a difficult endeavor due in part to the lack of a highly specific inhibitor of bulk water flow across membranes.


American Journal of Physiology-renal Physiology | 1986

Vasopressin increases cytosolic free calcium concentration in glomerular mesangial cells

Joseph V. Bonventre; K. L. Skorecki; J. I. Kreisberg; J. Y. Cheung


Kidney International | 1987

Vasopressin signaling in kidney cells

Dennis A. Ausiello; K. L. Skorecki; A. S. Verkman; Joseph V. Bonventre


Proceedings of the National Academy of Sciences of the United States of America | 1984

Radiation inactivation of oligomeric enzyme systems: theoretical considerations

A. S. Verkman; K. L. Skorecki; Dennis A. Ausiello


Biochemistry | 1987

Cross talk between stimulatory and inhibitory guanosine 5'-triphosphate binding proteins: role in activation and desensitization of the adenylate cyclase response to vasopressin

K. L. Skorecki; A. S. Verkman; Dennis A. Ausiello


Mineral and Electrolyte Metabolism | 1987

Effects of hypertonicity on cAMP production in cultured renal epithelial cells (LLC-PK1).

K. L. Skorecki; Conte Jm; Dennis A. Ausiello


Biochemistry | 1986

Mechanisms of nonhormonal activation of adenylate cyclase based on target analysis

A. S. Verkman; Dennis A. Ausiello; Chan Y. Jung; K. L. Skorecki


American Journal of Physiology-cell Physiology | 1986

Evidence for vasopressin activation of adenylate cyclase by subunit dissociation

K. L. Skorecki; A. S. Verkman; Chan Y. Jung; Dennis A. Ausiello


American Journal of Physiology-cell Physiology | 1986

Radiation inactivation of multimeric enzymes: application to subunit interactions of adenylate cyclase

A. S. Verkman; K. L. Skorecki; Dennis A. Ausiello


American Journal of Physiology-cell Physiology | 1986

Target molecular weights for red cell band 3 stilbene and mercurial binding sites

A. S. Verkman; K. L. Skorecki; Chan Y. Jung; Dennis A. Ausiello

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A. S. Verkman

University of California

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Chan Y. Jung

State University of New York System

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Joseph V. Bonventre

Brigham and Women's Hospital

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Joseph Seifter

New York Medical College

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