Literature DB >> 24830426

The structural analysis of shark IgNAR antibodies reveals evolutionary principles of immunoglobulins.

Matthias J Feige1, Melissa A Gräwert2, Moritz Marcinowski2, Janosch Hennig3, Julia Behnke4, David Ausländer2, Eva M Herold2, Jirka Peschek2, Caitlin D Castro5, Martin Flajnik5, Linda M Hendershot4, Michael Sattler3, Michael Groll2, Johannes Buchner2.   

Abstract

Sharks and other cartilaginous fish are the phylogenetically oldest living organisms that rely on antibodies as part of their adaptive immune system. They produce the immunoglobulin new antigen receptor (IgNAR), a homodimeric heavy chain-only antibody, as a major part of their humoral adaptive immune response. Here, we report the atomic resolution structure of the IgNAR constant domains and a structural model of this heavy chain-only antibody. We find that despite low sequence conservation, the basic Ig fold of modern antibodies is already present in the evolutionary ancient shark IgNAR domains, highlighting key structural determinants of the ubiquitous Ig fold. In contrast, structural differences between human and shark antibody domains explain the high stability of several IgNAR domains and allowed us to engineer human antibodies for increased stability and secretion efficiency. We identified two constant domains, C1 and C3, that act as dimerization modules within IgNAR. Together with the individual domain structures and small-angle X-ray scattering, this allowed us to develop a structural model of the complete IgNAR molecule. Its constant region exhibits an elongated shape with flexibility and a characteristic kink in the middle. Despite the lack of a canonical hinge region, the variable domains are spaced appropriately wide for binding to multiple antigens. Thus, the shark IgNAR domains already display the well-known Ig fold, but apart from that, this heavy chain-only antibody employs unique ways for dimerization and positioning of functional modules.

Entities:  

Keywords:  antibody structure; protein engineering; protein evolution; protein folding

Mesh:

Substances:

Year:  2014        PMID: 24830426      PMCID: PMC4050542          DOI: 10.1073/pnas.1321502111

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  47 in total

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Authors:  R M Berstein; S F Schluter; S Shen; J J Marchalonis
Journal:  Proc Natl Acad Sci U S A       Date:  1996-04-16       Impact factor: 11.205

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Authors:  Martin F Flajnik; Masanori Kasahara
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7.  An unfolded CH1 domain controls the assembly and secretion of IgG antibodies.

Authors:  Matthias J Feige; Sandra Groscurth; Moritz Marcinowski; Yuichiro Shimizu; Horst Kessler; Linda M Hendershot; Johannes Buchner
Journal:  Mol Cell       Date:  2009-06-12       Impact factor: 17.970

8.  Posttranslational association of immunoglobulin heavy chain binding protein with nascent heavy chains in nonsecreting and secreting hybridomas.

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Journal:  J Cell Biol       Date:  1999-01-11       Impact factor: 10.539

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  22 in total

1.  Molecular Origin of the Stability Difference in Four Shark IgNAR Constant Domains.

Authors:  Hong Zhou; Shengtang Liu; Xiuhua Yin; Zengpeng Li; Zaixing Yang; Ruhong Zhou
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Review 2.  Structural and genetic diversity in antibody repertoires from diverse species.

Authors:  Miguel de los Rios; Michael F Criscitiello; Vaughn V Smider
Journal:  Curr Opin Struct Biol       Date:  2015-07-17       Impact factor: 6.809

3.  Protodomains: Symmetry-Related Supersecondary Structures in Proteins and Self-Complementarity.

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Journal:  Methods Mol Biol       Date:  2019

4.  Llama peripheral B-cell populations producing conventional and heavy chain-only IgG subtypes are phenotypically indistinguishable but immunogenetically distinct.

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Review 5.  Ancient species offers contemporary therapeutics: an update on shark VNAR single domain antibody sequences, phage libraries and potential clinical applications.

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6.  A Bionic-Homodimerization Strategy for Optimizing Modulators of Protein-Protein Interactions: From Statistical Mechanics Theory to Potential Clinical Translation.

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7.  Structural insights and biomedical potential of IgNAR scaffolds from sharks.

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Review 8.  Fish Immunoglobulins.

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Review 9.  Single-Domain Antibodies As Versatile Affinity Reagents for Analytical and Diagnostic Applications.

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Journal:  Front Immunol       Date:  2017-08-21       Impact factor: 7.561

Review 10.  Shark New Antigen Receptor (IgNAR): Structure, Characteristics and Potential Biomedical Applications.

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