Double mutation at the putative protein kinase C phosphorylation sites Thr151 plus Thr323 in the mouse leukotrieneD4 receptor eliminates homologous desensitization

Sune T. Jørgensen, H.N. Eriksen, Janni Dausell, Thomas Jespersen, Ian Henry Lambert, Else Kay Hoffmann

3 Citations (Scopus)

Abstract

Background/Aims: Signalling via CysLT1 is involved in activation of volume sensitive K + channels and homologous desensitization of the LTD 4 receptor impairs regulatory volume decrease (RVD). The aim is to illustrate the effect of mutation of putative PKC consensus phosphorylation sites in the CysLT1R on desensitization and RVD. Methods: mCysLT1 contains 4 putative PKC consensus phosphorylation sites, and four mutants were created: Thr151Gly, Thr323Gly, Thr151Gly plus Thr323Gly, and Thr236Gly plus Ser243Gly. Functional mCysLT1 receptor activity after injection of in vitro transcribed cRNA into Xenopus laevis oocytes was visualized as a LTD 4 -evoked, Ca 2+ -activated Cl - currents recorded by two-electrode voltage clamp. Results: Repetitive LTD 4 administration (100 nM) desensitized the LTD 4 -evoked currents in oocytes expressing wild type CysLT1. Single mutations as well as the double mutation Thr236Gly plus Ser243Gly had no or a slight effect on the LTD 4 induced desensitization. However, double mutation Thr323Gly plus Thr151Gly prevented the desensitization. As a functional consequence we find that inhibition of PKC accelerates RVD and prevents the inhibitory effect of LTD 4 - pretreatment on RVD in Ehrlich ascites tumour cells. Conclusion: These data indicate that simultaneous PKC-mediated phosphorylation at the 2 nd inner loop (Thr 151 ) and at the C-terminal domain (Thr 323 ) leads to mCysLT1 receptor desensitization and abrogates the RVD response following osmotic cell swelling.

Original languageEnglish
JournalCellular Physiology and Biochemistry
Volume31
Issue number2-3
Pages (from-to)366-378
Number of pages13
ISSN1015-8987
DOIs
Publication statusPublished - Mar 2013

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