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Methods in Molecular Biology (Clifton, N.J.)|October 19, 2014
Genetic approaches in the study of heparan sulfate functions in DrosophilaMasahiko Takemura, Hiroshi NakatoBiochimica Et Biophysica Acta|November 6, 2002
Heparan sulfate fine structure and specificity of proteoglycan functionsHiroshi Nakato, Koji KimataJournal of Cell Science|November 27, 2016
Drosophila Sulf1 is required for the termination of intestinal stem cell division during regenerationMasahiko Takemura, Hiroshi NakatoGlycobiology|October 26, 2017
Loss of heparan sulfate in the niche leads to tumor-like germ cell growth in the Drosophila testisDaniel C Levings, Hiroshi NakatoMethods in Molecular Biology (Clifton, N.J.)|October 9, 2021
Generation of Drosophila Heparan Sulfate Mutant Cell Lines from Existing Fly StrainsEriko Nakato, Nanako Bowden, Hiroshi NakatoGlycobiology|December 15, 2010
In vivo manipulation of heparan sulfate structure and its effect on Drosophila developmentKeisuke Kamimura, Nobuaki Maeda, Hiroshi NakatoThe Journal of Cell Biology|December 2, 2009
Drosophila glypicans regulate the germline stem cell nicheYoshiki Hayashi, Satoru Kobayashi, Hiroshi NakatoInsect Biochemistry and Molecular Biology|October 12, 2004
Analysis of the chitin recognition mechanism of cuticle proteins from the soft cuticle of the silkworm, Bombyx moriToru Togawa, Hiroshi Nakato, Susumu IzumiMethods in Molecular Biology (Clifton, N.J.)|October 9, 2021
Molecular Genetic Techniques for the Proteoglycan Functions in DrosophilaNanako Bowden, Masahiko Takemura, Hiroshi NakatoJournal of Cell Science|January 22, 2002
dally, a Drosophila member of the glypican family of integral membrane proteoglycans, affects cell cycle progression and morphogenesis via a Cyclin A-mediated processHiroshi Nakato, Bethany Fox, Scott B SelleckPageof 5