Literature DB >> 15329338

Erythropoietin-modulated calcium influx through TRPC2 is mediated by phospholipase Cgamma and IP3R.

Qin Tong1, Xin Chu, Joseph Y Cheung, Kathleen Conrad, Richard Stahl, Dwayne L Barber, Gregory Mignery, Barbara A Miller.   

Abstract

In the present study, we examined the mechanisms through which erythropoietin (Epo) activates the calcium-permeable transient receptor potential protein channel (TRPC)2. Erythroblasts were isolated from the spleens of phenylhydrazine-treated mice, and Epo stimulation resulted in a significant and dose-dependent increase in intracellular calcium concentration ([Ca(2+)](i)). This increase in [Ca(2+)](i) was inhibited by pretreatment with the phospholipase C (PLC) inhibitor U-73122 but not by the inactive analog U-73343, demonstrating the requirement for PLC activity in Epo-modulated Ca(2+) influx in primary erythroid cells. To determine whether PLC is involved in the activation of TRPC2 by Epo, cell models were used to examine this interaction. Single CHO-S cells that expressed transfected Epo receptor (Epo-R) and TRPC2 were identified, and [Ca(2+)](i) was quantitated. Epo-induced Ca(2+) influx through TRPC2 was inhibited by pretreatment with U-73122 or by downregulation of PLCgamma1 by RNA interference. PLC activation results in the production of inositol 1,4,5-trisphosphate (IP(3)), and TRPC2 has IP(3) receptor (IP(3)R) binding sites. To determine whether IP(3)R is involved in Epo-R signaling, TRPC2 mutants were prepared with partial or complete deletions of the COOH-terminal IP(3)R binding domains. In cells expressing TRPC2 IP(3)R binding mutants and Epo-R, no significant increase in [Ca(2+)](i) was observed after Epo stimulation. TRPC2 coassociated with Epo-R, PLCgamma, and IP(3)R, and the association between TRPC2 and IP(3)R was disrupted in these mutants. Our data demonstrate that Epo-R modulates TRPC2 activation through PLCgamma; that interaction of IP(3)R with TRPC2 is required; and that Epo-R, TRPC2, PLCgamma, and IP(3)R interact to form a signaling complex.

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Year:  2004        PMID: 15329338     DOI: 10.1152/ajpcell.00265.2004

Source DB:  PubMed          Journal:  Am J Physiol Cell Physiol        ISSN: 0363-6143            Impact factor:   4.249


  20 in total

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Review 2.  The role of TRP channels in oxidative stress-induced cell death.

Authors:  B A Miller
Journal:  J Membr Biol       Date:  2006-04-17       Impact factor: 1.843

3.  The transient receptor potential (TRP) channel TRPC3 TRP domain and AMP-activated protein kinase binding site are required for TRPC3 activation by erythropoietin.

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Journal:  J Biol Chem       Date:  2011-07-14       Impact factor: 5.157

4.  Defective interaction of mutant calreticulin and SOCE in megakaryocytes from patients with myeloproliferative neoplasms.

Authors:  Christian A Di Buduo; Vittorio Abbonante; Caroline Marty; Francesco Moccia; Elisa Rumi; Daniela Pietra; Paolo M Soprano; Dmitry Lim; Daniele Cattaneo; Alessandra Iurlo; Umberto Gianelli; Giovanni Barosi; Vittorio Rosti; Isabelle Plo; Mario Cazzola; Alessandra Balduini
Journal:  Blood       Date:  2020-01-09       Impact factor: 22.113

5.  Trpc2 depletion protects red blood cells from oxidative stress-induced hemolysis.

Authors:  Iwona Hirschler-Laszkiewicz; Wenyi Zhang; Kerry Keefer; Kathleen Conrad; Qin Tong; Shu-jen Chen; Sarah Bronson; Joseph Y Cheung; Barbara A Miller
Journal:  Exp Hematol       Date:  2011-09-14       Impact factor: 3.084

6.  Stat5 regulates cellular iron uptake of erythroid cells via IRP-2 and TfR-1.

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Review 7.  Organization and function of TRPC channelosomes.

Authors:  Indu S Ambudkar; Hwei Ling Ong
Journal:  Pflugers Arch       Date:  2007-05-08       Impact factor: 3.657

8.  TRPC3 is the erythropoietin-regulated calcium channel in human erythroid cells.

Authors:  Qin Tong; Iwona Hirschler-Laszkiewicz; Wenyi Zhang; Kathleen Conrad; David W Neagley; Dwayne L Barber; Joseph Y Cheung; Barbara A Miller
Journal:  J Biol Chem       Date:  2008-02-14       Impact factor: 5.157

9.  Stat5 activation enables erythropoiesis in the absence of EpoR and Jak2.

Authors:  Florian Grebien; Marc A Kerenyi; Boris Kovacic; Thomas Kolbe; Verena Becker; Helmut Dolznig; Klaus Pfeffer; Ursula Klingmüller; Mathias Müller; Hartmut Beug; Ernst W Müllner; Richard Moriggl
Journal:  Blood       Date:  2008-01-31       Impact factor: 22.113

10.  High glucose-induced oxidative stress increases transient receptor potential channel expression in human monocytes.

Authors:  Tilo Wuensch; Florian Thilo; Katharina Krueger; Alexandra Scholze; Michael Ristow; Martin Tepel
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