Literature DB >> 18260098

Influence of the germline sequence on the thermodynamic stability and fibrillogenicity of human lambda 6 light chains.

Luis del Pozo Yauner1, Ernesto Ortiz, Rosalba Sánchez, Rosana Sánchez-López, Leopoldo Güereca, Charles L Murphy, Amy Allen, Jonathan S Wall, D Alejandro Fernández-Velasco, Alan Solomon, Baltazar Becerril.   

Abstract

Light chain-associated amyloidosis is a fatal disease characterized by the aggregation and pathologic deposition of monoclonal light chain-related fragments as amyloid fibrils in organs or tissues throughout the body. Notably, it has been observed that proteins encoded by the lambda variable light chain (V(L)) gene segment 6a are invariably associated with amyloid deposition; however, the contribution of the gene to this phenomenon has not been established. In this regard, we have determined the thermodynamic stability and kinetics of in vitro fibrillogenesis of a recombinant (r) V(L) protein, designated 6aJL2, which contains the predicted sequences encoded by the 6a and JL2 germline genes. Additionally, we studied a 6a mutant (6aJL2-Arg25Gly), that is present in approximately 25% of all amyloid-associated lambda6 light chains. Remarkably, the wild-type 6aJL2 protein was more stable than were all known amyloidogenic kappa and lambda light chains for which stability parameters are available; more importantly, it was even more so (and less fibrillogenic) than the only clinically proven nonamyloidogenic lambda6 protein, Jto. Conversely, the mutated 6aJL2-R25G molecule was considerably less stable and more fibrillogenic than was the native 6aJL2. Our data indicate that the propensity of lambda6 light chains to form amyloid can not be attributed to thermodynamic instability of the germline-encoded Vlambda6 domain, but rather, is dependent on sequence alterations that render such proteins amyloidogenic. (c) 2008 Wiley-Liss, Inc.

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Year:  2008        PMID: 18260098     DOI: 10.1002/prot.21934

Source DB:  PubMed          Journal:  Proteins        ISSN: 0887-3585


  23 in total

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2.  The Role of Protein Thermodynamics and Primary Structure in Fibrillogenesis of Variable Domains from Immunoglobulin Light Chains.

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3.  Structural insights into the role of mutations in amyloidogenesis.

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4.  Site-directed mutagenesis reveals regions implicated in the stability and fiber formation of human λ3r light chains.

Authors:  Miryam I Villalba; Juan C Canul-Tec; Oscar D Luna-Martínez; Rosalba Sánchez-Alcalá; Timoteo Olamendi-Portugal; Enrique Rudiño-Piñera; Sonia Rojas; Rosana Sánchez-López; Daniel A Fernández-Velasco; Baltazar Becerril
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5.  Incomplete Refolding of Antibody Light Chains to Non-Native, Protease-Sensitive Conformations Leads to Aggregation: A Mechanism of Amyloidogenesis in Patients?

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6.  Mechanisms of recognition of amyloid-β (Aβ) monomer, oligomer, and fibril by homologous antibodies.

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Journal:  J Biol Chem       Date:  2017-09-18       Impact factor: 5.157

Review 7.  Systemic amyloidoses.

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8.  The Kinetic Stability of a Full-Length Antibody Light Chain Dimer Determines whether Endoproteolysis Can Release Amyloidogenic Variable Domains.

Authors:  Gareth J Morgan; Jeffery W Kelly
Journal:  J Mol Biol       Date:  2016-08-26       Impact factor: 5.469

Review 9.  Amyloid formation in light chain amyloidosis.

Authors:  Marina Ramirez-Alvarado
Journal:  Curr Top Med Chem       Date:  2012       Impact factor: 3.295

10.  Light chain amyloidosis - current findings and future prospects.

Authors:  Elizabeth M Baden; Laura A Sikkink; Marina Ramirez-Alvarado
Journal:  Curr Protein Pept Sci       Date:  2009-10       Impact factor: 3.272

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