MorabitoRM, TatarakisD, SwickR, et al.The ratio of Wnt signaling activity to Sox2 transcription factor levels predicts neuromesodermal fate potential. Development2025;152(22):dev204661; doi: 10.1242/dev.204661
2.
NishimuraK, FukagawaT, TakisawaH, KakimotoT, KanemakiM. An auxin-based degron system for the rapid depletion of proteins in nonplant cells. Nat Methods2009;6(12):917–922; doi: 10.1038/nmeth.1401
3.
YesbolatovaA, SaitoY, KitamotoN, et al.The auxin-inducible degron 2 technology provides sharp degradation control in yeast, mammalian cells, and mice. Nat Commun2020;11(1):5701; doi: 10.1038/s41467-020-19532-z
4.
YuH, MossBL, JangSS, et al.Mutations in the TIR1 auxin receptor that increase affinity for auxin/indole-3-acetic acid proteins result in auxin hypersensitivity. Plant Physiol2013;162(1):295–303; doi: 10.1104/pp.113.215582
5.
HalloranMC, Sato-MaedaM, WarrenJT, et al.Laser-induced gene expression in specific cells of transgenic zebrafish. Development2000;127(9):1953–1960.
6.
MosimannC, KaufmanCK, LiP, et al.Ubiquitous transgene expression and Cre-based recombination driven by the ubiquitin promoter in zebrafish. Development2011;138(1):169–177; doi: 10.1242/dev.059345
7.
LiS, PrasannaX, SaloVT, VattulainenI, IkonenE. An efficient auxin-inducible degron system with low basal degradation in human cells. Nat Methods2019;16(9):866–869; doi: 10.1038/s41592-019-0512-x