Identification of subfunctionalized aggregate-remodeling J-domain proteins in Arabidopsis thaliana

Author:

Tak Yogesh1,Lal Silviya S1,Gopan Shilpa1,Balakrishnan Madhumitha1,Satheesh Gouri1,Biswal Anup K1,Verma Amit K1,Cole Sierra J2,Brown Rebecca E2ORCID,Hayward Rachel E2,Hines Justin K2,Sahi Chandan1ORCID

Affiliation:

1. Department of Biological Sciences, Indian Institute of Science Education and Research Bhopal , India

2. Department of Chemistry, Lafayette College , Easton, PA , USA

Abstract

Abstract J-domain proteins (JDPs) are critical components of the cellular protein quality control machinery, playing crucial roles in preventing the formation and, solubilization of cytotoxic protein aggregates. Bacteria, yeast, and plants additionally have large, multimeric heat shock protein 100 (Hsp100)-class disaggregases that resolubilize protein aggregates. JDPs interact with aggregated proteins and specify the aggregate-remodeling activities of Hsp70s and Hsp100s. However, the aggregate-remodeling properties of plant JDPs are not well understood. Here we identify eight orthologs of Sis1 (an evolutionarily conserved Class II JDP of budding yeast) in Arabidopsis thaliana with distinct aggregate-remodeling functionalities. Six of these JDPs associate with heat-induced protein aggregates in vivo and co-localize with Hsp101 at heat-induced protein aggregate centers. Consistent with a role in solubilizing cytotoxic protein aggregates, an atDjB3 mutant had defects in both solubilizing heat-induced aggregates and acquired thermotolerance as compared with wild-type seedlings. Next, we used yeast prions as protein aggregate models to show that the six JDPs have distinct aggregate-remodeling properties. Results presented in this study, as well as findings from phylogenetic analysis, demonstrate that plants harbor multiple, evolutionarily conserved JDPs with capacity to process a variety of protein aggregate conformers induced by heat and other stressors.

Funder

Science and Engineering Research Board

Indian Institute of Science Education and Research Bhopal

National Institute of General Medical Sciences

National Institutes of Health

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Physiology

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