Highly cooperative chimeric super-SOX induces naive pluripotency across species

Publication date

2024-01-04

Authors

MacCarthy, Caitlin M.
Wu, Guangming
Malik, Vikas
Menuchin-Lasowski, Yotam
Velychko, Taras
Keshet, Gal
Fan, Rui
Bedzhov, Ivan
Church, George M.
Jauch, Ralf

Editors

Advisors

Supervisors

Document Type

Article
Open Access logo

License

cc_by

Abstract

Our understanding of pluripotency remains limited: iPSC generation has only been established for a few model species, pluripotent stem cell lines exhibit inconsistent developmental potential, and germline transmission has only been demonstrated for mice and rats. By swapping structural elements between Sox2 and Sox17, we built a chimeric super-SOX factor, Sox2-17, that enhanced iPSC generation in five tested species: mouse, human, cynomolgus monkey, cow, and pig. A swap of alanine to valine at the interface between Sox2 and Oct4 delivered a gain of function by stabilizing Sox2/Oct4 dimerization on DNA, enabling generation of high-quality OSKM iPSCs capable of supporting the development of healthy all-iPSC mice. Sox2/Oct4 dimerization emerged as the core driver of naive pluripotency with its levels diminished upon priming. Transient overexpression of the SK cocktail (Sox+Klf4) restored the dimerization and boosted the developmental potential of pluripotent stem cells across species, providing a universal method for naive reset in mammals.

Keywords

bovine, developmental potential, engineered transcription factor, human, iPSC, mouse, naive pluripotency, non-human primate, Oct4, porcine, POU linker, reprogramming, reset, Sox17, Sox2, Sox2/Oct4 heterodimer structure, super-SOX, tetraploid complementation, Molecular Medicine, Genetics, Cell Biology, SDG 3 - Good Health and Well-being

Citation

MacCarthy, C M, Wu, G, Malik, V, Menuchin-Lasowski, Y, Velychko, T, Keshet, G, Fan, R, Bedzhov, I, Church, G M, Jauch, R, Cojocaru, V, Schöler, H R & Velychko, S 2024, 'Highly cooperative chimeric super-SOX induces naive pluripotency across species', Cell Stem Cell, vol. 31, no. 1, pp. 127-147.e9. https://doi.org/10.1016/j.stem.2023.11.010