Literature DB >> 11888279

Biophysical properties of camelid V(HH) domains compared to those of human V(H)3 domains.

Stefan Ewert1, Christian Cambillau, Katja Conrath, Andreas Plückthun.   

Abstract

Camelidae possess an unusual form of antibodies lacking the light chains. The variable domain of these heavy chain antibodies (V(HH)) is not paired, while the V(H) domain of all other antibodies forms a heterodimer with the variable domain of the light chain (V(L)), held together by a hydrophobic interface. Here, we analyzed the biophysical properties of four camelid V(HH) fragments (H14, AMD9, RN05, and CA05) and two human consensus V(H)3 domains with different CDR3 loops to gain insight into factors determining stability and aggregation of immunoglobulin domains. We show by denaturant-induced unfolding equilibria that the free energies of unfolding of V(HH) fragments are characterized by Delta G(N-U) values between 21.1 and 35.0 kJ/mol and thus lie in the upper range of values for V(H) fragments from murine and human antibodies. Nevertheless, the V(HH) fragments studied here did not reach the high values between 39.7 and 52.7 kJ/mol of the human consensus V(H)3 domains with which they share the highest degree of sequence similarity. Temperature-induced unfolding of the V(HH) fragments that were studied proved to be reversible, and the binding affinity after cooling was fully retained. The melting temperatures were determined to be between 60.1 and 66.7 degrees C. In contrast, the studied V(H)3 domains aggregated during temperature-induced denaturation at 63-65 degrees C. In summary, the camelid V(HH) fragments are characterized by a favorable but not unusually high stability. Their hallmark is the ability to reversibly melt without aggregation, probably mediated by the surface mutations characterizing the V(HH) domains, which allow them to regain binding activity after heat renaturation.

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Year:  2002        PMID: 11888279     DOI: 10.1021/bi011239a

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  46 in total

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2.  The role of intra-domain disulfide bonds in heat-induced irreversible denaturation of camelid single domain VHH antibodies.

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Review 6.  Considerations for the Design of Antibody-Based Therapeutics.

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Review 7.  Structural and genetic diversity in antibody repertoires from diverse species.

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8.  Structure of a low-melting-temperature anti-cholera toxin: llama V(H)H domain.

Authors:  Patricia M Legler; Dan Zabetakis; George P Anderson; Anita Lam; Wim G J Hol; Ellen R Goldman
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9.  Heat-induced irreversible denaturation of the camelid single domain VHH antibody is governed by chemical modifications.

Authors:  Yoko Akazawa-Ogawa; Mizuki Takashima; Young-Ho Lee; Takahisa Ikegami; Yuji Goto; Koichi Uegaki; Yoshihisa Hagihara
Journal:  J Biol Chem       Date:  2014-04-16       Impact factor: 5.157

10.  Llama single domain antibodies specific for the 7 botulinum neurotoxin serotypes as heptaplex immunoreagents.

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Journal:  PLoS One       Date:  2010-01-21       Impact factor: 3.240

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