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Site-specific quantitative analysis of cardiac mitochondrial protein phosphorylation.


ABSTRACT: We report the development of a multiple-reaction monitoring (MRM) strategy specifically tailored to the detection and quantification of mitochondrial protein phosphorylation. We recently derived 68 MRM transitions specific to protein modifications in the respiratory chain, voltage-dependent anion channel, and adenine nucleotide translocase. Here, we have now expanded the total number of MRM transitions to 176 to cover proteins from the tricarboxylic acid cycle, pyruvate dehydrogenase complex, and branched-chain alpha-keto acid dehydrogenase complex. We utilized the transition set to analyze endogenous protein phosphorylation in human heart, mouse heart, and mouse liver. The data demonstrate the potential utility of the MRM workflow for studying the functional details of mitochondrial phosphorylation signaling. This article is part of a Special Issue entitled: From protein structures to clinical applications.

SUBMITTER: Lam MP 

PROVIDER: S-EPMC3593810 | biostudies-literature | 2013 Apr

REPOSITORIES: biostudies-literature

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Site-specific quantitative analysis of cardiac mitochondrial protein phosphorylation.

Lam Maggie P Y MP   Lau Edward E   Scruggs Sarah B SB   Wang Ding D   Kim Tae-Young TY   Liem David A DA   Zhang Jun J   Ryan Christopher M CM   Faull Kym F KF   Ping Peipei P  

Journal of proteomics 20120925


We report the development of a multiple-reaction monitoring (MRM) strategy specifically tailored to the detection and quantification of mitochondrial protein phosphorylation. We recently derived 68 MRM transitions specific to protein modifications in the respiratory chain, voltage-dependent anion channel, and adenine nucleotide translocase. Here, we have now expanded the total number of MRM transitions to 176 to cover proteins from the tricarboxylic acid cycle, pyruvate dehydrogenase complex, an  ...[more]

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