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DNA methylation dynamics underlie metamorphic gene regulation programs in Xenopus tadpole brain. , Kyono Y, Raj S, Sifuentes CJ, Buisine N , Sachs L , Denver RJ ., Dev Biol. June 15, 2020; 462 (2): 180-196.
NEIL1 and NEIL2 DNA glycosylases protect neural crest development against mitochondrial oxidative stress. , Han D, Schomacher L, Schüle KM, Mallick M, Musheev MU, Karaulanov E, Krebs L, von Seggern A, Niehrs C ., Elife. September 30, 2019; 8
Nucleosomes and the three glycosylases: High, medium, and low levels of excision by the uracil DNA glycosylase superfamily. , Tarantino ME, Dow BJ, Drohat AC, Delaney S., DNA Repair (Amst). December 1, 2018; 72 56-63.
Neil DNA glycosylases promote substrate turnover by Tdg during DNA demethylation. , Schomacher L, Han D, Musheev MU, Arab K, Kienhöfer S, von Seggern A, Niehrs C ., Nat Struct Mol Biol. February 1, 2016; 23 (2): 116-124.
Thymine DNA glycosylase is a CRL4Cdt2 substrate. , Slenn TJ, Morris B, Havens CG, Freeman RM, Takahashi TS, Walter JC ., J Biol Chem. August 15, 2014; 289 (33): 23043-23055.
Defective development of the craniofacial/digestive complex of Xenopus laevis after treatment with endogenous galactoside-binding lectin or its hapten inhibitor thiodigalactoside. , Varma PV, Frunchak YN, Evanson JE, Milos NC., J Craniofac Genet Dev Biol. January 1, 1994; 14 (3): 177-91.
Alterations of heart development in Xenopus laevis by galactoside-binding lectin or its sugar hapten inhibitor. , Frunchak YN, Martha GN, McFadden KD, Milos NC., Anat Embryol (Berl). March 1, 1993; 187 (3): 299-316.
Studies on cellular adhesion of Xenopus laevis melanophores: pigment pattern formation and alteration in vivo by endogenous galactoside-binding lectin or its sugar hapten inhibitor. , Frunchak YN, Milos NC., Pigment Cell Res. January 1, 1990; 3 (2): 101-14.
Involvement of endogenous galactoside-binding lectin of Xenopus laevis in pattern formation of Xenopus neurites in vitro. , Milos NC, Ma YL, Frunchak YN., Cell Differ Dev. December 1, 1989; 28 (3): 203-9.