Hiroaki Niki

Affiliations: 
University of Tokyo, Bunkyō-ku, Tōkyō-to, Japan 
Area:
prefrontal cortex
Google:
"Hiroaki Niki"
Mean distance: 13.09 (cluster 17)
 
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Publications

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Nozaki S, Furuya K, Niki H. (2018) The Ras1-Cdc42 pathway is involved in hyphal development of Schizosaccharomyces japonicus. Fems Yeast Research
Aoki K, Niki H. (2017) Release of condensin from mitotic chromosomes requires the Ran-GTP gradient in the reorganized nucleus. Biology Open
Aoki K, Furuya K, Niki H. (2017) Schizosaccharomyces japonicus: A Distinct Dimorphic Yeast Among the Fission Yeasts. Cold Spring Harbor Protocols
Aoki K, Niki H. (2017) Transformation of Schizosaccharomyces japonicus. Cold Spring Harbor Protocols
Furuya K, Niki H. (2017) Mating, Spore Dissection, and Selection of Diploid Cells in Schizosaccharomyces japonicus. Cold Spring Harbor Protocols
Ide S, Takahashi T, Takamatsu Y, et al. (2016) Distinct roles of opioid and dopamine systems in lateral hypothalamic intracranial self-stimulation. The International Journal of Neuropsychopharmacology
Monteiro DC, Patel V, Bartlett CP, et al. (2015) The structure of the PanD/PanZ protein complex reveals negative feedback regulation of pantothenate biosynthesis by coenzyme A. Chemistry & Biology. 22: 492-503
Niki H. (2014) Schizosaccharomyces japonicus: the fission yeast is a fusion of yeast and hyphae. Yeast (Chichester, England). 31: 83-90
Keyamura K, Sakaguchi C, Kubota Y, et al. (2013) RecA protein recruits structural maintenance of chromosomes (SMC)-like RecN protein to DNA double-strand breaks. The Journal of Biological Chemistry. 288: 29229-37
Yano K, Wada T, Suzuki S, et al. (2013) Multiple rRNA operons are essential for efficient cell growth and sporulation as well as outgrowth in Bacillus subtilis. Microbiology (Reading, England). 159: 2225-36
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