Unveiling the Metal-Dependent Aggregation Properties of the C-terminal Region of Amyloidogenic Intrinsically Disordered Protein Isoforms DPF3b and DPF3a

Tanguy Leyder, Julien Mignon, Denis Mottet, Catherine Michaux

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Abstract

Double-PHD fingers 3 (DPF3) is a BAF-associated human epigenetic regulator, which is increasingly recognised as a major contributor to various pathological contexts, such as cardiac defects, cancer, and neurodegenerative diseases. Recently, we unveiled that its two isoforms (DPF3b and DPF3a) are amyloidogenic intrinsically disordered proteins. DPF3 isoforms differ from their C-terminal region (C-TERb and C-TERa), containing zinc fingers and disordered domains. Herein, we investigated the disorder aggregation properties of C-TER isoforms. In agreement with the predictions, spectroscopy highlighted a lack of a highly ordered structure, especially for C-TERa. Over a few days, both C-TERs were shown to spontaneously assemble into similar antiparallel and parallel β-sheet-rich fibrils. Altered metal homeostasis being a neurodegeneration hallmark, we also assessed the influence of divalent metal cations, namely Cu 2+, Mg 2+, Ni 2+, and Zn 2+, on the C-TER aggregation pathway. Circular dichroism revealed that metal binding does not impair the formation of β-sheets, though metal-specific tertiary structure modifications were observed. Through intrinsic and extrinsic fluorescence, we found that metal cations differently affect C-TERb and C-TERa. Cu 2+ and Ni 2+ have a strong inhibitory effect on the aggregation of both isoforms, whereas Mg 2+ impedes C-TERb fibrillation and, on the contrary, enhances that of C-TERa. Upon Zn 2+ binding, C-TERb aggregation is also hindered, and the amyloid autofluorescence of C-TERa is remarkably red-shifted. Using electron microscopy, we confirmed that the metal-induced spectral changes are related to the morphological diversity of the aggregates. While metal-treated C-TERb formed breakable and fragmented filaments, C-TERa fibrils retained their flexibility and packing properties in the presence of Mg 2+ and Zn 2+ cations.

Translated title of the contributionCaractérisation des propriétés d'agrégation métal-dépendantes de la région C-terminale des isoformes amyloïdogènes intrinsèquement désordonnées DPF3b et DPF3a
Original languageEnglish
Article number15291
Number of pages29
JournalInternational Journal of Molecular Sciences
Volume23
Issue number23
DOIs
Publication statusPublished - 4 Dec 2022

Keywords

  • Double-PHD fingers 3 (DPF3)
  • Intrinsically disordered protein
  • Neurodegenerative disease
  • Aggregation
  • Amyloid fibrillation
  • Metal cations
  • Spectroscopy
  • Deep-blue autofluorescence
  • Electron microscopy
  • intrinsically disordered protein
  • amyloid fibrillation
  • aggregation
  • neurodegenerative diseases
  • metal cations
  • spectroscopy
  • electron microscopy
  • double-PHD fingers 3 (DPF3)
  • deep-blue autofluorescence

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