Cryo-EM confirms a common fibril fold in the heart of four patients with ATTRwt amyloidosis

Author:

Nguyen Binh AnORCID,Singh VirenderORCID,Afrin ShumailaORCID,Singh PreetiORCID,Pekala MajaORCID,Ahmed YasminORCID,Pedretti RoseORCID,Canepa Jacob,Lemoff AndrewORCID,Kluve-Beckerman Barbara,Wydorski Pawel,Chhapra Farzeen,Saelices LorenaORCID

Abstract

AbstractATTR amyloidosis results from the conversion of transthyretin into amyloid fibrils that deposit in tissues causing organ failure and death. This conversion is facilitated by mutations in ATTRv amyloidosis, or aging in ATTRwt amyloidosis. ATTRv amyloidosis exhibits extreme phenotypic variability, whereas ATTRwt amyloidosis presentation is consistent and predictable. Previously, we found an unprecedented structural variability in cardiac amyloid fibrils from polyneuropathic ATTRv-I84S patients. In contrast, cardiac fibrils from five genotypically-different patients with cardiomyopathy or mixed phenotypes are structurally homogeneous. To understand fibril structure’s impact on phenotype, it is necessary to study the fibrils from multiple patients sharing genotype and phenotype. Here we show the cryo-electron microscopy structures of fibrils extracted from four cardiomyopathic ATTRwt amyloidosis patients. Our study confirms that they share identical conformations with minimal structural variability, consistent with their homogenous clinical presentation. Our study contributes to the understanding of ATTR amyloidosis biopathology and calls for further studies.One-Sentence Summary:Wild-type cardiac ATTR fibrils are structurally homogeneous.

Publisher

Cold Spring Harbor Laboratory

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