Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK

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Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK. / Rentsch, M. L.; Hoffmann, E. K.; Pedersen, Stine Helene Falsig.

In: The FASEB Journal, No. 5, 2006, p. A1158.

Research output: Contribution to journalConference abstract in journalResearch

Harvard

Rentsch, ML, Hoffmann, EK & Pedersen, SHF 2006, 'Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK', The FASEB Journal, no. 5, pp. A1158. <http://www.fasebj.org/cgi/content/meeting_abstract/20/5/A1158-b?maxtoshow=&HITS=10&hits=10&RESULTFORMAT=&andorexacttitle=and&andorexacttitleabs=and&andorexactfulltext=and&searchid=1&FIRSTINDEX=0&sortspec=relevance&volume=20&firstpage=A1158&resourcetype=HWCIT>

APA

Rentsch, M. L., Hoffmann, E. K., & Pedersen, S. H. F. (2006). Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK. The FASEB Journal, (5), A1158. http://www.fasebj.org/cgi/content/meeting_abstract/20/5/A1158-b?maxtoshow=&HITS=10&hits=10&RESULTFORMAT=&andorexacttitle=and&andorexacttitleabs=and&andorexactfulltext=and&searchid=1&FIRSTINDEX=0&sortspec=relevance&volume=20&firstpage=A1158&resourcetype=HWCIT

Vancouver

Rentsch ML, Hoffmann EK, Pedersen SHF. Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK. The FASEB Journal. 2006;(5):A1158.

Author

Rentsch, M. L. ; Hoffmann, E. K. ; Pedersen, Stine Helene Falsig. / Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK. In: The FASEB Journal. 2006 ; No. 5. pp. A1158.

Bibtex

@article{99c1e4e03ed911de87b8000ea68e967b,
title = "Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK",
abstract = "Activation of the plasma membrane Na+/H+ exchanger NHE1 contributes importantly to ischemic/anoxic cell damage, yet the mechanisms involved are unclear. In NIH3T3 cells, PCR studies confirmed the expression of NHE1 and -8, yet not NHE2, -3, and -4. Chemical anoxia (10 mM azide, 10 min) was associated with a decrease in pHi which was exacerbated by the NHE1 inhibitor EIPA (5 µM). Reperfusion (azide washout) elicited a rapid, EIPA-sensitive alkalinization to 7.60 ± 0.057 (n=6), compared to a starting pHi of 7.49 ± 0.032 (n=6). Cell survival was reduced by prolonged chemical anoxia (to 87% at 3 h and 41% at 24 h, MTT assay), an effect counteracted by EIPA at early ( 6 h) time points. Chemical anoxia was furthermore associated with: (i) a rapid ( 10 min) and transient phosphorylation of p38 MAPK, which was abolished by NHE1 inhibitors (EIPA, cariporide, 5 µM); (ii) increased phosphorylation of the tumor suppressor p53, which was maximal at 3 h and unaffected by EIPA and by the p38 MAPK inhibitor SB203580; (iii) a transient reduction in phosphorylated ezrin-radixin-moesin (ERM) protein, which appeared to be counteracted by EIPA. In contrast, neither chemical anoxia nor EIPA affected Akt phosphorylation. In summary, in NIH3T3 cells, chemical anoxia was associated with decreased pHi, and activation of NHE1, p38 MAPK, and p53, reduced levels of phosphorylated ERM proteins, and reduced survival. Suggesting an important role of NHE1 upstream of p38 MAPK in anoxic cell death, NHE1 inhibition blocked p38 MAPK activation and increased survival after chemical anoxia. Funding: Danish Natural Sciences Research Council (grant 21-01-0507, 21-04-0535) ",
author = "Rentsch, {M. L.} and Hoffmann, {E. K.} and Pedersen, {Stine Helene Falsig}",
note = "Volumne: 20; Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK ; Conference date: 29-11-2010",
year = "2006",
language = "English",
pages = "A1158",
journal = "F A S E B Journal",
issn = "0892-6638",
publisher = "Federation of American Societies for Experimental Biology",
number = "5",

}

RIS

TY - ABST

T1 - Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK

AU - Rentsch, M. L.

AU - Hoffmann, E. K.

AU - Pedersen, Stine Helene Falsig

N1 - Volumne: 20

PY - 2006

Y1 - 2006

N2 - Activation of the plasma membrane Na+/H+ exchanger NHE1 contributes importantly to ischemic/anoxic cell damage, yet the mechanisms involved are unclear. In NIH3T3 cells, PCR studies confirmed the expression of NHE1 and -8, yet not NHE2, -3, and -4. Chemical anoxia (10 mM azide, 10 min) was associated with a decrease in pHi which was exacerbated by the NHE1 inhibitor EIPA (5 µM). Reperfusion (azide washout) elicited a rapid, EIPA-sensitive alkalinization to 7.60 ± 0.057 (n=6), compared to a starting pHi of 7.49 ± 0.032 (n=6). Cell survival was reduced by prolonged chemical anoxia (to 87% at 3 h and 41% at 24 h, MTT assay), an effect counteracted by EIPA at early ( 6 h) time points. Chemical anoxia was furthermore associated with: (i) a rapid ( 10 min) and transient phosphorylation of p38 MAPK, which was abolished by NHE1 inhibitors (EIPA, cariporide, 5 µM); (ii) increased phosphorylation of the tumor suppressor p53, which was maximal at 3 h and unaffected by EIPA and by the p38 MAPK inhibitor SB203580; (iii) a transient reduction in phosphorylated ezrin-radixin-moesin (ERM) protein, which appeared to be counteracted by EIPA. In contrast, neither chemical anoxia nor EIPA affected Akt phosphorylation. In summary, in NIH3T3 cells, chemical anoxia was associated with decreased pHi, and activation of NHE1, p38 MAPK, and p53, reduced levels of phosphorylated ERM proteins, and reduced survival. Suggesting an important role of NHE1 upstream of p38 MAPK in anoxic cell death, NHE1 inhibition blocked p38 MAPK activation and increased survival after chemical anoxia. Funding: Danish Natural Sciences Research Council (grant 21-01-0507, 21-04-0535)

AB - Activation of the plasma membrane Na+/H+ exchanger NHE1 contributes importantly to ischemic/anoxic cell damage, yet the mechanisms involved are unclear. In NIH3T3 cells, PCR studies confirmed the expression of NHE1 and -8, yet not NHE2, -3, and -4. Chemical anoxia (10 mM azide, 10 min) was associated with a decrease in pHi which was exacerbated by the NHE1 inhibitor EIPA (5 µM). Reperfusion (azide washout) elicited a rapid, EIPA-sensitive alkalinization to 7.60 ± 0.057 (n=6), compared to a starting pHi of 7.49 ± 0.032 (n=6). Cell survival was reduced by prolonged chemical anoxia (to 87% at 3 h and 41% at 24 h, MTT assay), an effect counteracted by EIPA at early ( 6 h) time points. Chemical anoxia was furthermore associated with: (i) a rapid ( 10 min) and transient phosphorylation of p38 MAPK, which was abolished by NHE1 inhibitors (EIPA, cariporide, 5 µM); (ii) increased phosphorylation of the tumor suppressor p53, which was maximal at 3 h and unaffected by EIPA and by the p38 MAPK inhibitor SB203580; (iii) a transient reduction in phosphorylated ezrin-radixin-moesin (ERM) protein, which appeared to be counteracted by EIPA. In contrast, neither chemical anoxia nor EIPA affected Akt phosphorylation. In summary, in NIH3T3 cells, chemical anoxia was associated with decreased pHi, and activation of NHE1, p38 MAPK, and p53, reduced levels of phosphorylated ERM proteins, and reduced survival. Suggesting an important role of NHE1 upstream of p38 MAPK in anoxic cell death, NHE1 inhibition blocked p38 MAPK activation and increased survival after chemical anoxia. Funding: Danish Natural Sciences Research Council (grant 21-01-0507, 21-04-0535)

M3 - Conference abstract in journal

SP - A1158

JO - F A S E B Journal

JF - F A S E B Journal

SN - 0892-6638

IS - 5

T2 - Effects of chemical anoxia on NHE1, p38 MAPK, p53, Akt and ERM proteins in NIH3T3 fibroblasts: evidence for a role of NHE1 upstream of p38 MAPK

Y2 - 29 November 2010

ER -

ID: 12211909