Discrete analysis of camelid variable domains: sequences, structures, and in-silico structure prediction

Author:

Melarkode Vattekatte Akhila1234,Shinada Nicolas Ken1245,Narwani Tarun J.124,Noël Floriane12467,Bertrand Olivier124,Meyniel Jean-Philippe8,Malpertuy Alain9,Gelly Jean-Christophe12410,Cadet Frédéric12311,de Brevern Alexandre G.123410

Affiliation:

1. Biologie Intégrée du Globule Rouge UMR_S1134, Inserm, Univ. Paris, Univ. de la Réunion, Univ. des Antilles, Paris, France

2. Laboratoire d’Excellence GR-Ex, Paris, France

3. Faculté des Sciences et Technologies, Saint Denis, La Réunion, France

4. Institut National de la Transfusion Sanguine (INTS), Paris, France

5. Discngine SAS, Paris, France

6. PSL Research University, INSERM, UMR 932, Institut Curie, Paris, France

7. Université Paris Sud, Université Paris-Saclay, Orsay, France

8. ISoft, Saint-Aubin, France

9. Atragene, Ivry-sur-Seine, France

10. IBL, Paris, France

11. Peaccel, Protein Engineering Accelerator, Paris, France

Abstract

Antigen binding by antibodies requires precise orientation of the complementarity- determining region (CDR) loops in the variable domain to establish the correct contact surface. Members of the family Camelidae have a modified form of immunoglobulin gamma (IgG) with only heavy chains, called Heavy Chain only Antibodies (HCAb). Antigen binding in HCAbs is mediated by only three CDR loops from the single variable domain (VHH) at the N-terminus of each heavy chain. This feature of the VHH, along with their other important features, e.g., easy expression, small size, thermo-stability and hydrophilicity, made them promising candidates for therapeutics and diagnostics. Thus, to design better VHH domains, it is important to thoroughly understand their sequence and structure characteristics and relationship. In this study, sequence characteristics of VHH domains have been analysed in depth, along with their structural features using innovative approaches, namely a structural alphabet. An elaborate summary of various studies proposing structural models of VHH domains showed diversity in the algorithms used. Finally, a case study to elucidate the differences in structural models from single and multiple templates is presented. In this case study, along with the above-mentioned aspects of VHH, an exciting view of various factors in structure prediction of VHH, like template framework selection, is also discussed.

Funder

Ministry of Research

University Paris Diderot, Sorbonne, Paris Cité

University of La Réunion, Réunion Island

National Institute for Blood Transfusion

National Institute for Health and Medical Research

labex GR-Ex

French National Research Agency

Indo-French Centre for the Promotion of Advanced Research/CEFIPRA

Discngine, Paris, France and ANRT, France

Conseil Régional de la Réunion

The European Social Fund EU

French National Computing Centre CINES

GENCI

Conseil Régional Ile de France

INTS

Publisher

PeerJ

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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