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FEBS Letters|May 13, 2014
Does a shift to limited glucose activate checkpoint control in fission yeast?Shigeaki Saitoh, Mitsuhiro YanagidaG3 (Bethesda, Md.)|March 28, 2019
Isolation of Fission Yeast Condensin Temperature-Sensitive Mutants with Single Amino Acid Substitutions Targeted to Hinge DomainXingya Xu, Mitsuhiro YanagidaProceedings of the Japan Academy. Series B, Physical and Biological Sciences|March 13, 2023
Cohesin organization, dynamics, and subdomain functions revealed by genetic suppressor screeningXingya Xu, Mitsuhiro YanagidaCell|July 30, 1993
Fission yeast cut5+, required for S phase onset and M phase restraint, is identical to the radiation-damage repair gene rad4+Y Saka, M Yanagida[Osaka Daigaku Shigaku Zasshi] the Journal of Osaka University Dental Society|June 1, 1990
[Statistical studies on numerical anomalies of teeth in children using orthopantomograms. Congenital coexistence of hyperdontia and hypodontia]I Yanagida, S MoriJournal of Cell Science|August 1, 1997
Evidence for cell cycle-specific, spindle pole body-mediated, nuclear positioning in the fission yeast Schizosaccharomyces pombeI Hagan, M YanagidaRinsho Byori. the Japanese Journal of Clinical Pathology|May 26, 1999
[Clinical evaluation of serum cytokine from patients with collagen diseases]H Ishida, H YanagidaThe Journal of Cell Biology|December 1, 1992
Functional dissection of the phosphorylated termini of fission yeast DNA topoisomerase IIK Shiozaki, M YanagidaThe Journal of Cell Biology|May 1, 1995
The product of the spindle formation gene sad1+ associates with the fission yeast spindle pole body and is essential for viabilityI Hagan, M YanagidaPageof 7,287