Fatal amyloid formation in a patient's antibody light chain is caused by a single point mutation.

Kazman, Pamina; Vielberg, Marie-Theres; Pulido Cendales, María Daniela; Hunziger, Lioba; Weber, Benedikt; Hegenbart, Ute; Zacharias, Martin; Köhler, Rolf et al. · Elife · 2020

basic_science · Level V

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Abstract

In systemic light chain amyloidosis, an overexpressed antibody light chain (LC) forms fibrils which deposit in organs and cause their failure. While it is well-established that mutations in the LC's V<sub>L</sub> domain are important prerequisites, the mechanisms which render a patient LC amyloidogenic are ill-defined. In this study, we performed an in-depth analysis of the factors and mutations responsible for the pathogenic transformation of a patient-derived λ LC, by recombinantly expressing variants in <i>E. coli</i>. We show that proteolytic cleavage of the patient LC resulting in an isolated V<sub>L</sub> domain is essential for fibril formation. Out of 11 mutations in the patient V<sub>L</sub>, only one, a leucine to valine mutation, is responsible for fibril formation. It disrupts a hydrophobic network rendering the C-terminal segment of V<sub>L</sub> more dynamic and decreasing domain stability. Thus, the combination of proteolytic cleavage and the destabilizing mutation trigger conformational changes that turn the LC pathogenic.

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