Abstract
Many proteins that can assemble into higher order structures termed amyloids can also concentrate into cytoplasmic inclusions via liquid-liquid phase separation. Here, we study the assembly of human Golgi-Associated plant Pathogenesis Related protein 1 (GAPR-1), an amyloidogenic protein of the Cysteine-rich secretory proteins, Antigen 5, and Pathogenesis-related 1 proteins (CAP) protein superfamily, into cytosolic inclusions in Saccharomyces cerevisiae. Overexpression of GAPR-1-GFP results in the formation GAPR-1 oligomers and fluorescent inclusions in yeast cytosol. These cytosolic inclusions are dynamic and reversible organelles that gradually increase during time of overexpression and decrease after promoter shut-off. Inclusion formation is, however, a regulated process that is influenced by factors other than protein expression levels. We identified N-myristoylation of GAPR-1 as an important determinant at early stages of inclusion formation. In addition, mutations in the conserved metal-binding site (His54 and His103) enhanced inclusion formation, suggesting that these residues prevent uncontrolled protein sequestration. In agreement with this, we find that addition of Zn2+ metal ions enhances inclusion formation. Furthermore, Zn2+ reduces GAPR-1 protein degradation, which indicates stabilization of GAPR-1 in inclusions. We propose that the properties underlying both the amyloidogenic properties and the reversible sequestration of GAPR-1 into inclusions play a role in the biological function of GAPR-1 and other CAP family members.
Original language | English |
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Article number | 167162 |
Pages (from-to) | 1-16 |
Number of pages | 16 |
Journal | Journal of Molecular Biology |
Volume | 433 |
Issue number | 19 |
DOIs | |
Publication status | Published - 17 Sept 2021 |
Bibliographical note
Funding Information:We thank Ruud Eerland and IlseM. Lagerwaard for technical support, Richard Wubbolts and Ilya Grigoriev (Anna Akhmanova) for help with fluorescence microscopy. GB acknowledges the financial support of Deutsche Forschungsgemeinschaft (DFG: BR1502/18-1).
Funding Information:
We thank Ruud Eerland and IlseM. Lagerwaard for technical support, Richard Wubbolts and Ilya Grigoriev (Anna Akhmanova) for help with fluorescence microscopy. GB acknowledges the financial support of Deutsche Forschungsgemeinschaft (DFG: BR1502/18-1). The authors declare that they have no known competing financial interests or personal relationships that could have appeared to influence the work reported in this paper.
Publisher Copyright:
© 2021 The Author(s)
Keywords
- GLIPR-2
- amyloids
- condensates
- myristoylation
- zinc