Literature DB >> 28543811

The structural flexibility of the human copper chaperone Atox1: Insights from combined pulsed EPR studies and computations.

Ariel R Levy1, Meital Turgeman1, Lada Gevorkyan-Aiapetov1, Sharon Ruthstein1.   

Abstract

Metallochaperones are responsible for shuttling metal ions to target proteins. Thus, a metallochaperone's structure must be sufficiently flexible both to hold onto its ion while traversing the cytoplasm and to transfer the ion to or from a partner protein. Here, we sought to shed light on the structure of Atox1, a metallochaperone involved in the human copper regulation system. Atox1 shuttles copper ions from the main copper transporter, Ctr1, to the ATP7b transporter in the Golgi apparatus. Conventional biophysical tools such as X-ray or NMR cannot always target the various conformational states of metallochaperones, owing to a requirement for crystallography or low sensitivity and resolution. Electron paramagnetic resonance (EPR) spectroscopy has recently emerged as a powerful tool for resolving biological reactions and mechanisms in solution. When coupled with computational methods, EPR with site-directed spin labeling and nanoscale distance measurements can provide structural information on a protein or protein complex in solution. We use these methods to show that Atox1 can accommodate at least four different conformations in the apo state (unbound to copper), and two different conformations in the holo state (bound to copper). We also demonstrate that the structure of Atox1 in the holo form is more compact than in the apo form. Our data provide insight regarding the structural mechanisms through which Atox1 can fulfill its dual role of copper binding and transfer.
© 2017 The Protein Society.

Entities:  

Keywords:  Atox1; DEER; ENM; copper metallochaperone; protein dynamics; structural flexibility

Mesh:

Substances:

Year:  2017        PMID: 28543811      PMCID: PMC5521546          DOI: 10.1002/pro.3197

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  67 in total

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  2 in total

1.  Cu(I) Controls Conformational States in Human Atox1 Metallochaperone: An EPR and Multiscale Simulation Study.

Authors:  Ortal Perkal; Zena Qasem; Meital Turgeman; Renana Schwartz; Lada Gevorkyan-Airapetov; Matic Pavlin; Alessandra Magistrato; Dan Thomas Major; Sharon Ruthstein
Journal:  J Phys Chem B       Date:  2020-05-22       Impact factor: 2.991

2.  An EPR Study on the Interaction between the Cu(I) Metal Binding Domains of ATP7B and the Atox1 Metallochaperone.

Authors:  Michael Zaccak; Zena Qasem; Lada Gevorkyan-Airapetov; Sharon Ruthstein
Journal:  Int J Mol Sci       Date:  2020-08-02       Impact factor: 5.923

  2 in total

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