Histidine Reactive Chemicals Modify the Thermus thermophilus Cu A Redox Center
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Le résumé fourni par la source
The electron transport chain is a series of redox protein complexes that couple the shuttling of electrons with the pumping of protons, in order to create the electrochemical gradient that drives ATP synthesis. The first redox center of the terminal complex from the Thermus thermophilus bacteria has been isolated as Tt Cu A and has a binuclear copper center bridged by two cysteines and ligated by two histidines and two weak axial ligands. H157 of Tt Cu A , a solvent exposed ligating histidine, has demonstrated modification by diethyl pyrocarbonate (DEPC), an exogenous chemical modifier, that is facilitated by the residue’s fast proton exchange with the solvent. The H157‐DEPC adduct is reversible over 48 hours at room temperature, as supported by mass spectrometry, electrochemistry, and visible CD spectroscopy. This is one of two modifications, out of 12, that becomes removed. Due to the lability of the H157‐DEPC bond, it is possible that the H157 N ɛ is primed for proton pumping in the electron transport chain. In order to model a possible in vivo modification, Tt Cu A was exposed to 4‐hydroxynonenal (HNE), an endogenous lipid peroxidation product associated with multiple metabolic and neurodegenerative diseases. Exposure of Tt Cu A to 20 equivalents of HNE appears to reduce the protein over 48 hours and four modifications are observed via mass spectrometry. Exposure of the Pseudomonas aeruginosa azurin protein, a mononuclear blue‐copper denitrification protein with similar ligand groups to Tt Cu A , is not reduced by HNE, despite modification. Azurin also lacks a ligating histidine that can be modified by DEPC. In conclusion, the binuclear copper center of Tt Cu A has hyperreactivity in comparison to a similarly ligated mononuclear copper center. Support or Funding Information Murchison Undergraduate Research Fellowship, Trinity University Chemistry Department, Mach Research Fellowship, Welch Foundation
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DOI retrouvé dans Crossref DOI retrouvé, mais le titre doit être comparé manuellement.
- Titre Crossref
- Histidine Reactive Chemicals Modify the <i>Thermus thermophilus</i> Cu <sub>A</sub> Redox Center
- Date Crossref
- 01/04/2020
- Éditeur
- Wiley
- Type
- journal-article
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Trinity University pays non établi dans la noticeUniversité ou école supérieure
Trinity University.
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