bioRxiv · 10.64898/2026.09.23.753896
Chaperone isoform and interactome mapping reveals functional diversification of DNAJA2-DNAJA4 complexes via stress-regulated isoforms
Abstract
The human HSP70 chaperone network maintains cellular proteostasis through a diverse repertoire of HSP70s and co-chaperones. Here we examine alternative isoforms and co-chaperone hetero-complexes as additional sources of network complexity. To that end, we systematically mapped the isoform, tissue-expression, and interaction landscapes of the human HSP70 network, revealing a modular interactome containing known and novel DNAJ-DNAJ interactions. We found both tissue-expression isoform divergence as well as widespread alternative-canonical isoform co-expression, suggesting additional modes of functional diversification. Focusing on the uncharacterized DNAJA2-DNAJA4 hetero-complex, we identified the stress-inducible isoform DNAJA4-CTD-II. DNAJA4-CTD-II formed hetero-complexes with DNAJA2 and DNAJA4, with both interactions enhanced following sodium arsenite stress. Functionally, DNAJA4-CTD-II co-localized with TDP-43 aggregates and significantly suppressed their accumulation in a DNAJA2-dependent manner. Together, our data reveal extensive, uncharted isoform and interaction complexity within the HSP70 network, and uncover isoform-dependent hetero-complex remodeling as a new layer of chaperone network regulation.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Kadah, T., Akaree, N., Brodov-Nevo, A., Meller, A., Levy-Adam, F., Shalgi, R.. 2026-09-24. Chaperone isoform and interactome mapping reveals functional diversification of DNAJA2-DNAJA4 complexes via stress-regulated isoforms. https://doi.org/10.64898/2026.09.23.753896
Cite the original work for its findings. Save a collection to share your selection of sources.