Related Experiment Video
Updated: Jun 29, 2025

Strategies for Study of Neuroprotection from Cold-preconditioning
Published on: September 2, 2010
Cold-induced FOXO1 nuclear transport aids cold survival and tissue storage
Xiaomei Zhang1,2,3, Lihao Ge4, Guanghui Jin1,2,5
1Department of Hepatic Surgery and Liver transplantation Center of the Third Affiliated Hospital, Organ Transplantation Institute, Sun Yat-sen University, Guangzhou, China.
Abstract:
Cold-induced injuries severely limit opportunities and outcomes of hypothermic therapies and organ preservation, calling for better understanding of cold adaptation. Here, by surveying cold-altered chromatin accessibility and integrated CUT&Tag/RNA-seq analyses in human stem cells, we reveal forkhead box O1 (FOXO1) as a key transcription factor for autonomous cold adaptation. Accordingly, we find a nonconventional, temperature-sensitive FOXO1 transport mechanism involving the nuclear pore complex protein RANBP2, SUMO-modification of transporter proteins Importin-7 and Exportin-1, and a SUMO-interacting motif on FOXO1. Our conclusions are supported by cold survival experiments with human cell models and zebrafish larvae. Promoting FOXO1 nuclear entry by the Exportin-1 inhibitor KPT-330 enhances cold tolerance in pre-diabetic obese mice, and greatly prolongs the shelf-life of human and mouse pancreatic tissues and islets. Transplantation of mouse islets cold-stored for 14 days reestablishes normoglycemia in diabetic mice. Our findings uncover a regulatory network and potential therapeutic targets to boost spontaneous cold adaptation.
Related Concept Videos
Decreased Body Temperature
Nuclear Export of mRNA
Regulation of Nuclear Protein Sorting
Nuclear Export
NES are of three types- the canonical 10-residue long leucine-rich signal and other...
Regulation of the Unfolded Protein Response
Nuclear Localization Signals and Import

