ホーム > 林 良樹/ Hayashi, Yoshiki
林 良樹
ALUMNI
2025年4月現在、筑波大学が主たる所属機関ではありません
Hayashi, Yoshiki
九州大学 , 大学院理学研究院 , 講師 Kyushu University , Faculty of Sciences , Lecturer
関連記事はまだありません。
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1.
Differential heparan sulfate-dependency of the Drosophila glypicans
Eriko Nakato; Keisuke Kamimura; Collin Knudsen; Suzuka Masutani (+3 著者) Hiroshi Nakato
Journal of Biological Chemistry 105544 (2023) Semantic Scholar
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2.
Mechanism underlying retinoic acid-dependent metamorphosis in the starfish
Yamakawa, Shumpei; Hayashi, Yoshiki; Kako, Koichiro; Sasakura, Yasunori (+1 著者) Wada, Hiroshi
Developmental biology (2022) Semantic Scholar
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3.
Biosynthesis of S-adenosyl-methionine enhances aging-related defects in Drosophila oogenesis
Hayashi, Yoshiki; Kashio, Soshiro; Murotomi, Kazutoshi; Hino, Shinjiro (+5 著者) Namihira, Masakazu
Scientific reports 12: 5593 (2022) Semantic Scholar
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4.
Heparan sulfate proteoglycan molecules, syndecan and perlecan, have distinct roles in the maintenance of Drosophila germline stem cells
Hayashi, Yoshiki; Shibata, Arisa; Kamimura, Keisuke; Kobayashi, Satoru
DEVELOPMENT GROWTH & DIFFERENTIATION 63: 295 (2021) Semantic Scholar
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5.
Suppression of Non-Random Fertilization by MHC Class I Antigens
Kamiya, Junki; Kang, Woojin; Yoshida, Keiichi; Takagi, Ryota (+10 著者) Miyado, Kenji
INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES 21: (2020) Semantic Scholar
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6.
Correction: Extra-mitochondrial citrate synthase initiates calcium oscillation and suppresses age-dependent sperm dysfunction.
Woojin Kang; Yuichirou Harada; Kenji Yamatoya; Natsuko Kawano (+9 著者) Kenji Miyado
Laboratory investigation; a journal of technical methods and pathology 100: 665 (2020) Semantic Scholar
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7.
The regulation of Drosophila ovarian stem cell niches by signaling crosstalk
Hayashi, Yoshiki; Yoshinari, Yuto; Kobayashi, Satoru; Niwa, Ryusuke
Current opinion in insect science 37: 23 (2020) Semantic Scholar
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8.
Extra-mitochondrial citrate synthase initiates calcium oscillation and suppresses age-dependent sperm dysfunction
Kang, Woojin; Harada, Yuichirou; Yamatoya, Kenji; Kawano, Natsuko (+9 著者) Miyado, Kenji
Laboratory investigation; a journal of technical methods and pathology 100: 583 (2019) Semantic Scholar
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9.
Autocrine regulation of ecdysone synthesis by β3-octopamine receptor in the prothoracic gland is essential for Drosophila metamorphosis.
Yuya,Ohhara; Yuko,Shimada-Niwa; Ryusuke,Niwa; Yasunari,Kayashima (+4 著者) Satoru,Kobayashi
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA 112: 1452 (2015) Semantic Scholar
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10.
Analysis of Drosophila glucuronyl C5-epimerase: implications for developmental roles of heparan sulfate sulfation compensation and 2-O-sulfated glucuronic acid.
Katsufumi,Dejima; Masahiko,Takemura; Eriko,Nakato; Jesse,Peterson (+3 著者) Hiroshi,Nakato
J Biol Chem. 288: 34384 (2013) Semantic Scholar
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11.
Glypicans regulate JAK/STAT signaling and distribution of the Unpaired morphogen
Yoshiki Hayashi; Travis R. Sexton; Katsufumi Dejima; Dustin W. Perry (+3 著者) Douglas A. Harrison
DEVELOPMENT 139: 4162 (2012) Semantic Scholar
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12.
Expression of β-adrenergic-like octopamine receptors during Drosophila development.
Yuya,Ohhara; Yasunari,Kayashima; Yoshiki,Hayashi; Satoru,KobayashiKimiko,Yamakawa-Kobayashi
ZOOLOGICAL SCIENCE 29: 83 (2012) Semantic Scholar
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13.
Drosophila Sex lethal Gene Initiates Female Development in Germline Progenitors
Kazuya Hashiyama; Yoshiki Hayashi; Satoru Kobayashi
SCIENCE 333: 885 (2011) Semantic Scholar
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14.
ショウジョウバエ生殖幹細胞システムにおける ニッチの場構築の分子機構
林,良樹; 中藤博志; 小林 悟
Cell technology 29: 645 (2010)
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15.
Drosophila heparan sulfate 6-O endosulfatase regulates Wingless morphogen gradient formation
Adam Kleinschmit; Takashi Koyama; Katsufumi Dejima; Yoshiki Hayashi (+1 著者) Hiroshi Nakato
DEVELOPMENTAL BIOLOGY 345: 204 (2010) Semantic Scholar
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16.
Drosophila glypicans regulate the germline stem cell niche
Yoshiki Hayashi; Satoru Kobayashi; Hiroshi Nakato
JOURNAL OF CELL BIOLOGY 187: 473 (2009) Semantic Scholar
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17.
MAMO, a maternal BTB/POZ-Zn-finger protein enriched in germline progenitors is required for the production of functional eggs in Drosophila.
Masanori,Mukai; Yoshiki,Hayashi; Yu,Kitadate; Kayo,AritaSatoru,Kobayashi
Mech. Dev. 124: 570 (2007) Semantic Scholar
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18.
Soma-dependent modulations contribute to divergence of rhomboid expression during evolution of Drosophila eggshell morphology
Yukio Nakamura; Tatsuo Kagesawa; Minori Nishikawa; Yoshiki Hayashi (+2 著者) Kenji Matsuno
DEVELOPMENT 134: 1529 (2007) Semantic Scholar
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19.
Maternal Nanos represses hid/skl-dependent apoptosis to maintain the germ line in Drosophila embryos
Yoshiki,Hayashi; Kimhiro,Sato; Yuichi,Ninomiya; Shuji,Shigenobu (+2 著者) Satoru,Kobayashi
Proc Natl Acad Sci U S A. 104: 7455 (2007)
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20.
The role of mitochondrial rRNAs and nanos protein in germline formation in Drosophila embryos
Satoru,Kobayashi; Kimihiro,Sato; Yoshiki,Hayashi
Zoolog Sci. 22: 943 (2005)
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1.
Reproductive & Developmental Strategies for Life Continuity
Yoshiki, Hayashi; Satoru, Kobayashi
(担当:分担執筆, 範囲:Regulatory mechanism of the germline stem cell niche in Drosophila melanogaster)
Springer Verlag 2018年6月 (ISBN: 9784431566076)
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2.
REPRODUCTIVE AND DEVELOPMENTAL STRATEGIES: THE CONTINUITY OF LIFE
Hayashi, Yoshiki; Kobayashi, Satoru
(担当:分担執筆, 範囲:Regulatory Mechanisms of the Germline Stem Cell Niche in Drosophila melanogaster)
SPRINGER JAPAN KK 2018年 (ISBN: 9784431566090)
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21.
Methionine metabolism regulates retrotransposon expression in germline of Drosophila melanogaster.
林,良樹
第41回日本分子生物学会年会 2018年11月28日
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22.
生殖系列の代謝とその役割ーメチオニン代謝制御によるトランスポソンの発現抑制
林,良樹
日本発生生物学会秋季シンポジウム2018 ー次の10年間の発生生物学の潮流を考えるー 2018年11月23日
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23.
Methionine metabolism regulates retrotransposon expression in germline of Drosophila melanogaster
Hayashi, Yoshiki; Hino, Shinjiro; Sato, Tetsuya; Kashio, Soshiro; Noda, Chiyo; Miura, Masayuki; Nakao, Mitsuyoshi; Kobayashi, Satoru
第41回日本分子生物学会年会 2018年11月
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24.
Role of Methionine Metabolism during Germ-line Development of Drosophila melanogaster.
Hayashi,Yoshiki
Cold Spring Harbor Laboratory meeting on Germ Cells, 2018 2018年10月9日
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25.
Role of Methionine Metabolism during Germ-line Development of Drosophila melanogaster
Hayashi, Yoshiki; Hino, Shinjiro; Kashio, Soshiro; Sato, Tetsuya; Noda, Chiyo; Miura, Masayuki; Nakao, Mitsuyoshi; Kobayashi, Satoru
Cold Spring Harbor Laboratory Meeting 2018年10月
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26.
ショウジョウバエ生殖系列におけるメチオニン代謝制御によるレトロトランスポゾン抑制の仕組み
林, 良樹; 日野信次朗; 樫尾宗志朗; 佐藤哲也; 野田千代; 三浦正幸; 中尾光善; 小林, 悟
第89回日本動物学会大会 2018年9月
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27.
Role of Methionine Metabolism during Germ-line Development of Drosophila melanogaster.
Hayashi,Yoshiki
51st Annual Meeting of Japanese Society of Developmental Biologists 2018年6月5日 日本発生生物学会
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28.
Role of Methionine Metabolism during Germ-line Development of Drosophila melanogaster
Hayashi, Yoshiki; Hino, Shinjiro; Kashio, Soshiro; Sato, Tetsuya; Noda, Chiyo; Miura, Masayuki; Nakao, Mitsuyoshi; Kobayashi, Satoru
第70回日本細胞生物学会 第51回日本発生生物学会合同大会 2018年6月
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29.
Characteristics of Drosophila Germ-line from Metabolic Aspects.-The role of methionine metabolism during germ-line development of Drosophila –
Hayashi,Yoshiki
The International Research Symposium on Germness and Pluripotency of the Planarians in comparison with Fly and Mouse systems. 2018年3月29日 招待有り
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30.
メタボロミクスから見えてきたショウジョウバエ始原生殖細胞の代謝的性質とその役割 〜メチオニン代謝制御によるとランスポソン抑制の仕組み〜
Hayashi,Yoshiki
第6回 生殖若手の会 2018年2月28日 招待有り
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31.
メタボロミクスから見えてきたショウジョウバエ始原生殖細胞の代謝的性質とその役割 〜メチオニン代謝制御によるとランスポソン抑制の仕組み〜
Hayashi,Yoshiki
第5回 植物発生ロジック・メタボロミクス勉強会 2018年2月10日 招待有り
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32.
The role of methionine metabolism during germ-line development of Drosophila melanogaster.
Hayashi,Yoshiki
KEY Forum: The 3rd International Symposium on Stem Cell Traits and Developmental Systems. 2018年1月11日
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33.
メチオニン代謝制御による生殖系列におけるトランスポゾン抑制機構
Hayashi,Yoshiki
日本動物学会 第88回 富山大会2017 2017年9月21日
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34.
The role of methionine metabolism during germ-line development of Drosophila melanogaster.
Hayashi,Yoshiki
The international research symposium on regulation of germ cell development in vivo and in vitro. 2017年7月26日
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35.
The role of methionine metabolism during germline development in Drosophila melanogaster
Yoshiki, Hayashi; Chiyo, Noda; Kobayashi, Satoru
The International Research Symposium on Regulation of Germ Cell Development in vivo and in vitro 2017年7月
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36.
メタボロミクスから見えてきたショウジョウバエ始原生殖細胞の代謝的性質とその役割
Hayashi,Yoshiki
東北大学農学研究科セミナー 2017年6月16日 招待有り
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37.
The role of methionine metabolism during germline development in Drosophila melanogaster.
Hayashi,Yoshiki
50th annual meeting of Japanese Society of Developmental Biologists. 2017年5月10日
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38.
The role of methionine metabolism during germline development in Drosophila melanogaster
Hayashi, Yoshiki; Noda, Chiyo; Kobayashi, Satoru
第50回日本発生生物学会年会 2017年5月
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39.
The role of methionine metabolism during germline development in Drosophila melanogaster.
Hayashi,Yoshiki
The joint meeting of the 22nd International Congress of Zoology and the 87th Meeting of the Zoological Society of Japan 2016年11月14日
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40.
ショウジョウバエ始原生殖細胞の代謝的性質とその役割-生殖系列の品質管理におけるメチオニン代謝の役割ー
Hayashi,Yoshiki
第39回日本分子生物学会年会 2016年11月10日 招待有り
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