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  The protein-free IANUS peptide array uncovers interaction sites between Escherichia coli parvulin 10 and alkyl hydroperoxide reductase

Malesević, M., Poehlmann, A., Hernandez Alvarez, B., Diessner, A., Träger, M., Rahfeld, J.-U., et al. (2010). The protein-free IANUS peptide array uncovers interaction sites between Escherichia coli parvulin 10 and alkyl hydroperoxide reductase. Biochemistry, 49(39), 8626-8635. doi:10.1021/bi101015p.

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Malesević, M, Author
Poehlmann, A, Author
Hernandez Alvarez, B1, Author                 
Diessner, A, Author
Träger, M, Author
Rahfeld, J-U, Author
Jahreis, G, Author
Liebscher, S, Author
Bordusa, F, Author
Fischer, G, Author
Lücke, C, Author
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1External Organizations, ou_persistent22              

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 Abstract: The reliable identification of interacting structural elements without prior isolation of interacting proteins can be achieved by using the novel fluorescence resonance energy transfer-coupled IANUS (Induced orgANization of strUcture by matrix-assisted togethernesS) peptide array. Here we report that parvulin 10 (Par10), an abundant Escherichia coli peptidyl prolyl cis/trans isomerase (PPIase), physically interacts with the alkyl hydroperoxide reductase subunit C (AhpC) in bacterial cell extracts, as determined by affinity chromatography and chemical cross-linking experiments. A Par10-negative E. coli strain showed increased sensitivity toward hydrogen peroxide compared to the wild-type strain. The IANUS experiment revealed three segments of the peroxiredoxin AhpC chain as potential Par10 binding partners. Inhibition of the Par10 PPIase activity by the corresponding AhpC-derived peptides as well as NMR data of (15)N-labeled Par10 in the presence of the AhpC(115-132) peptide or full-length AhpC confirmed that the putative Par10 active site is involved in the Par10-AhpC interaction. Moreover, NMR-based docking calculations as well as NOESY exchange peaks between the proline cis and trans isomers revealed the Asp125-Pro126 moiety of the AhpC segment G115-A132 as a substrate for Par10 enzymatic action. On the basis of these data, we conclude that Par10 catalytic activity is involved in the cellular protection against oxidative stress.

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 Dates: 2010-10
 Publication Status: Issued
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 Identifiers: DOI: 10.1021/bi101015p
PMID: 20806779
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Title: Biochemistry
Source Genre: Journal
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Publ. Info: Columbus, Ohio : American Chemical Society
Pages: - Volume / Issue: 49 (39) Sequence Number: - Start / End Page: 8626 - 8635 Identifier: ISSN: 0006-2960
CoNE: https://pure.mpg.de/cone/journals/resource/954925384103