Cryo-EM structure of cardiac amyloid fibrils from an immunoglobulin light chain AL amyloidosis patient

Paolo Swuec(University of Milan), Francesca Lavatelli(University of Pavia), Masayoshi Tasaki(Kumamoto Health Science University), Cristina Paissoni(University of Milan), Paola Rognoni(University of Pavia), Martina Maritan(University of Milan), Francesca Brambilla(Institute of Biomedical Technologies), Paolo Milani(University of Pavia), Pierluigi Mauri(Institute of Biomedical Technologies), Carlo Camilloni(University of Milan), Giovanni Palladini(University of Pavia), Giampaolo Merlini(University of Pavia), Stéfano Ricagno(University of Milan), Martino Bolognesi(University of Milan)
Nature Communications
March 20, 2019
Cited by 172Open Access
Full Text

Abstract

Abstract Systemic light chain amyloidosis (AL) is a life-threatening disease caused by aggregation and deposition of monoclonal immunoglobulin light chains (LC) in target organs. Severity of heart involvement is the most important factor determining prognosis. Here, we report the 4.0 Å resolution cryo-electron microscopy map and molecular model of amyloid fibrils extracted from the heart of an AL amyloidosis patient with severe amyloid cardiomyopathy. The helical fibrils are composed of a single protofilament, showing typical 4.9 Å stacking and cross-β architecture. Two distinct polypeptide stretches (total of 77 residues) from the LC variable domain (V l ) fit the fibril density. Despite V l high sequence variability, residues stabilizing the fibril core are conserved through different cardiotoxic V l , highlighting structural motifs that may be common to misfolding-prone LCs. Our data shed light on the architecture of LC amyloids, correlate amino acid sequences with fibril assembly, providing the grounds for development of innovative medicines.


Related Papers

No related papers found

Powered by citation graph analysis