| Literature DB >> 7935818 |
M Vajanaphanich1, C Schultz, M T Rudolf, M Wasserman, P Enyedi, A Craxton, S B Shears, R Y Tsien, K E Barrett, A Traynor-Kaplan.
Abstract
Osmoregulation, inhibitory neurotransmission and pH balance depend on chloride ion (Cl-) flux. In intestinal epithelial cells, apical Cl- channels control salt and fluid secretion and are, in turn, regulated by agonists acting through cyclic nucleotides and internal calcium ion concentration ([Ca2+]i). Recently, we found that muscarinic pretreatment prevents [Ca2+]i increases from eliciting Cl- secretion in T84 colonic epithelial cells. By studying concomitant inositol phosphate metabolism, we have now identified D-myo-inositol 3,4,5,6-tetrakisphosphate (Ins(3,4,5,6)P4), as the inositol phosphate most likely to mediate this uncoupling. A novel, membrane-permeant ester prepared by total synthesis delivers Ins(3,4,5,6)P4 intracellularly and confirms that this emerging messenger does inhibit Cl- flux resulting from thapsigargin- or histamine-induced [Ca2+]i elevations.Entities:
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Year: 1994 PMID: 7935818 DOI: 10.1038/371711a0
Source DB: PubMed Journal: Nature ISSN: 0028-0836 Impact factor: 49.962