Cargando…

Sepsis-Induced Cardiac Mitochondrial Dysfunction Involves Altered Mitochondrial-Localization of Tyrosine Kinase Src and Tyrosine Phosphatase SHP2

Our previous research demonstrated that sepsis produces mitochondrial dysfunction with increased mitochondrial oxidative stress in the heart. The present study investigated the role of mitochondria-localized signaling molecules, tyrosine kinase Src and tyrosine phosphatase SHP2, in sepsis-induced ca...

Descripción completa

Detalles Bibliográficos
Autores principales: Zang, Qun S., Martinez, Bobbie, Yao, Xiao, Maass, David L., Ma, Lisha, Wolf, Steven E., Minei, Joseph P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3428365/
https://www.ncbi.nlm.nih.gov/pubmed/22952679
http://dx.doi.org/10.1371/journal.pone.0043424
_version_ 1782241695490899968
author Zang, Qun S.
Martinez, Bobbie
Yao, Xiao
Maass, David L.
Ma, Lisha
Wolf, Steven E.
Minei, Joseph P.
author_facet Zang, Qun S.
Martinez, Bobbie
Yao, Xiao
Maass, David L.
Ma, Lisha
Wolf, Steven E.
Minei, Joseph P.
author_sort Zang, Qun S.
collection PubMed
description Our previous research demonstrated that sepsis produces mitochondrial dysfunction with increased mitochondrial oxidative stress in the heart. The present study investigated the role of mitochondria-localized signaling molecules, tyrosine kinase Src and tyrosine phosphatase SHP2, in sepsis-induced cardiac mitochondrial dysfunction using a rat pneumonia-related sepsis model. SD rats were given an intratracheal injection of Streptococcus pneumoniae, 4×10(6) CFU per rat, (or vehicle for shams); heart tissues were then harvested and subcellular fractions were prepared. By Western blot, we detected a gradual and significant decrease in Src and an increase in SHP2 in cardiac mitochondria within 24 hours post-inoculation. Furthermore, at 24 hours post-inoculation, sepsis caused a near 70% reduction in tyrosine phosphorylation of all cardiac mitochondrial proteins. Decreased tyrosine phosphorylation of certain mitochondrial structural proteins (porin, cyclophilin D and cytochrome C) and functional proteins (complex II subunit 30kD and complex I subunit NDUFB8) were evident in the hearts of septic rats. In vitro, pre-treatment of mitochondrial fractions with recombinant active Src kinase elevated OXPHOS complex I and II-III activity, whereas the effect of SHP2 phosphatase was opposite. Neither Src nor SHP2 affected complex IV and V activity under the same conditions. By immunoprecipitation, we showed that Src and SHP2 consistently interacted with complex I and III in the heart, suggesting that complex I and III contain putative substrates of Src and SHP2. In addition, in vitro treatment of mitochondrial fractions with active Src suppressed sepsis-associated mtROS production and protected aconitase activity, an indirect marker of mitochondrial oxidative stress. On the contrary, active SHP2 phosphatase overproduced mtROS and deactivated aconitase under the same in vitro conditions. In conclusion, our data suggest that changes in mitochondria-localized signaling molecules Src and SHP2 constitute a potential signaling pathway to affect mitochondrial dysfunction in the heart during sepsis.
format Online
Article
Text
id pubmed-3428365
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-34283652012-09-05 Sepsis-Induced Cardiac Mitochondrial Dysfunction Involves Altered Mitochondrial-Localization of Tyrosine Kinase Src and Tyrosine Phosphatase SHP2 Zang, Qun S. Martinez, Bobbie Yao, Xiao Maass, David L. Ma, Lisha Wolf, Steven E. Minei, Joseph P. PLoS One Research Article Our previous research demonstrated that sepsis produces mitochondrial dysfunction with increased mitochondrial oxidative stress in the heart. The present study investigated the role of mitochondria-localized signaling molecules, tyrosine kinase Src and tyrosine phosphatase SHP2, in sepsis-induced cardiac mitochondrial dysfunction using a rat pneumonia-related sepsis model. SD rats were given an intratracheal injection of Streptococcus pneumoniae, 4×10(6) CFU per rat, (or vehicle for shams); heart tissues were then harvested and subcellular fractions were prepared. By Western blot, we detected a gradual and significant decrease in Src and an increase in SHP2 in cardiac mitochondria within 24 hours post-inoculation. Furthermore, at 24 hours post-inoculation, sepsis caused a near 70% reduction in tyrosine phosphorylation of all cardiac mitochondrial proteins. Decreased tyrosine phosphorylation of certain mitochondrial structural proteins (porin, cyclophilin D and cytochrome C) and functional proteins (complex II subunit 30kD and complex I subunit NDUFB8) were evident in the hearts of septic rats. In vitro, pre-treatment of mitochondrial fractions with recombinant active Src kinase elevated OXPHOS complex I and II-III activity, whereas the effect of SHP2 phosphatase was opposite. Neither Src nor SHP2 affected complex IV and V activity under the same conditions. By immunoprecipitation, we showed that Src and SHP2 consistently interacted with complex I and III in the heart, suggesting that complex I and III contain putative substrates of Src and SHP2. In addition, in vitro treatment of mitochondrial fractions with active Src suppressed sepsis-associated mtROS production and protected aconitase activity, an indirect marker of mitochondrial oxidative stress. On the contrary, active SHP2 phosphatase overproduced mtROS and deactivated aconitase under the same in vitro conditions. In conclusion, our data suggest that changes in mitochondria-localized signaling molecules Src and SHP2 constitute a potential signaling pathway to affect mitochondrial dysfunction in the heart during sepsis. Public Library of Science 2012-08-27 /pmc/articles/PMC3428365/ /pubmed/22952679 http://dx.doi.org/10.1371/journal.pone.0043424 Text en © 2012 Zang et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Zang, Qun S.
Martinez, Bobbie
Yao, Xiao
Maass, David L.
Ma, Lisha
Wolf, Steven E.
Minei, Joseph P.
Sepsis-Induced Cardiac Mitochondrial Dysfunction Involves Altered Mitochondrial-Localization of Tyrosine Kinase Src and Tyrosine Phosphatase SHP2
title Sepsis-Induced Cardiac Mitochondrial Dysfunction Involves Altered Mitochondrial-Localization of Tyrosine Kinase Src and Tyrosine Phosphatase SHP2
title_full Sepsis-Induced Cardiac Mitochondrial Dysfunction Involves Altered Mitochondrial-Localization of Tyrosine Kinase Src and Tyrosine Phosphatase SHP2
title_fullStr Sepsis-Induced Cardiac Mitochondrial Dysfunction Involves Altered Mitochondrial-Localization of Tyrosine Kinase Src and Tyrosine Phosphatase SHP2
title_full_unstemmed Sepsis-Induced Cardiac Mitochondrial Dysfunction Involves Altered Mitochondrial-Localization of Tyrosine Kinase Src and Tyrosine Phosphatase SHP2
title_short Sepsis-Induced Cardiac Mitochondrial Dysfunction Involves Altered Mitochondrial-Localization of Tyrosine Kinase Src and Tyrosine Phosphatase SHP2
title_sort sepsis-induced cardiac mitochondrial dysfunction involves altered mitochondrial-localization of tyrosine kinase src and tyrosine phosphatase shp2
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3428365/
https://www.ncbi.nlm.nih.gov/pubmed/22952679
http://dx.doi.org/10.1371/journal.pone.0043424
work_keys_str_mv AT zangquns sepsisinducedcardiacmitochondrialdysfunctioninvolvesalteredmitochondriallocalizationoftyrosinekinasesrcandtyrosinephosphataseshp2
AT martinezbobbie sepsisinducedcardiacmitochondrialdysfunctioninvolvesalteredmitochondriallocalizationoftyrosinekinasesrcandtyrosinephosphataseshp2
AT yaoxiao sepsisinducedcardiacmitochondrialdysfunctioninvolvesalteredmitochondriallocalizationoftyrosinekinasesrcandtyrosinephosphataseshp2
AT maassdavidl sepsisinducedcardiacmitochondrialdysfunctioninvolvesalteredmitochondriallocalizationoftyrosinekinasesrcandtyrosinephosphataseshp2
AT malisha sepsisinducedcardiacmitochondrialdysfunctioninvolvesalteredmitochondriallocalizationoftyrosinekinasesrcandtyrosinephosphataseshp2
AT wolfstevene sepsisinducedcardiacmitochondrialdysfunctioninvolvesalteredmitochondriallocalizationoftyrosinekinasesrcandtyrosinephosphataseshp2
AT mineijosephp sepsisinducedcardiacmitochondrialdysfunctioninvolvesalteredmitochondriallocalizationoftyrosinekinasesrcandtyrosinephosphataseshp2