De novo sequencing and construction of a unique antibody for the recognition of alternative conformations of cytochrome c in cells

Author:

Tomasina Florencia12,Martínez Jennyfer12,Zeida Ari12ORCID,Chiribao María Laura123,Demicheli Verónica12,Correa Agustín4,Quijano Celia12ORCID,Castro Laura12ORCID,Carnahan Robert H.56ORCID,Vinson Paige7,Goff Matt5,Cooper Tracy5,McDonald W. Hayes8,Castellana Natalie9,Hannibal Luciana210,Morse Paul T.11ORCID,Wan Junmei11,Hüttemann Maik1112,Jemmerson Ronald13,Piacenza Lucía12,Radi Rafael12ORCID

Affiliation:

1. Departamento de Bioquímica, Facultad de Medicina, Universidad de la República, Montevideo 11800, Uruguay

2. Centro de Investigaciones Biomédicas, Facultad de Medicina, Universidad de la República, Montevideo 11800, Uruguay

3. Unidad de Biología Molecular, Laboratorio de Interacción Hospedero Patógeno, Institut Pasteur de Montevideo, Montevideo 11400, Uruguay

4. Recombinant Protein Unit, Institut Pasteur de Montevideo, Montevideo 11400, Uruguay

5. Vanderbilt Vaccine Center, Vanderbilt University Medical Center, Nashville, TN 37232

6. Department of Pediatrics, Vanderbilt University Medical Center, Nashville, TN 37232

7. Southern Research, Birmingham, AL 35205

8. Department of Biochemistry and the Proteomics Core of the Mass Spectrometry Research Center, Vanderbilt University School of Medicine, Nashville, TN 37240

9. Abterra Biosciences, San Diego, CA 92109

10. Laboratory of Clinical Biochemistry and Metabolism, Department of General Pediatrics, Adolescent Medicine and Neonatology, Faculty of Medicine, Medical Center-University of Freiburg, 79106 Freiburg, Germany

11. Center for Molecular Medicine and Genetics, Wayne State University, Detroit, MI 48201

12. Department of Biochemistry, Microbiology, and Immunology, Wayne State University, Detroit, MI 48201

13. Department of Microbiology and Immunology, University of Minnesota, Minneapolis, MN 55455

Abstract

Cytochrome c (cyt c ) can undergo reversible conformational changes under biologically relevant conditions. Revealing these alternative cyt c conformers at the cell and tissue level is challenging. A monoclonal antibody (mAb) identifying a key conformational change in cyt c was previously reported, but the hybridoma was rendered nonviable. To resurrect the mAb in a recombinant form, the amino-acid sequences of the heavy and light chains were determined by peptide mapping–mass spectrometry–bioinformatic analysis and used to construct plasmids encoding the full-length chains. The recombinant mAb (R1D3) was shown to perform similarly to the original mAb in antigen-binding assays. The mAb bound to a variety of oxidatively modified cyt c species (e.g., nitrated at Tyr74 or oxidized at Met80), which lose the sixth heme ligation (Fe-Met80); it did not bind to several cyt c phospho- and acetyl-mimetics. Peptide competition assays together with molecular dynamic studies support that R1D3 binds a neoepitope within the loop 40–57. R1D3 was employed to identify alternative conformations of cyt c in cells under oxidant- or senescence-induced challenge as confirmed by immunocytochemistry and immunoaffinity studies. Alternative conformers translocated to the nuclei without causing apoptosis, an observation that was further confirmed after pinocytic loading of oxidatively modified cyt c to B16-F1 cells. Thus, alternative cyt c conformers, known to gain peroxidatic function, may represent redox messengers at the cell nuclei. The availability and properties of R1D3 open avenues of interrogation regarding the presence and biological functions of alternative conformations of cyt c in mammalian cells and tissues.

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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