研究成果Achievements

2023年

     *equal contribution  #corresponding author

  1. A reliable technique for karyotyping mouse oocytes prepared by a gradual fixation/air-drying method followed by multicolour FISH.
    #Hino T, Kusakabe H. A
    Biol Open. 2023 Dec 15;12(12):bio060188. doi: 10.1242/bio.060188. Epub 2023 Dec 13.

  2. CRISPR screening in human trophoblast stem cells reveals both shared and distinct aspects of human and mouse placental development
    Shimizu T, Oike A, Kobayashi E H, Sekiya A, Kobayashi N, Shibata S, Hamada H, Saito M, Yaegashi N, Suyama M, Arima T, #Okae H.
    PNAS. December 12, 2023;120 (51) e2311372120. doi:org/10.1073/pnas.2311372120
    紹介記事

  3. WIN18,446 enhances spermatogonial stem cell homing and fertility after germ cell transplantation by increasing blood-testis barrier permeability.
    Morimoto H, Kanatsu-Shinohara M, #Shinohara T
    J Reprod Dev. 2023 Dec 8;69(6):347-355. doi: 10.1262/jrd.2023-074. Epub 2023 Oct 27.

  4. Generation of Mouse Primitive Endoderm Stem Cells.
    #Ohinata Y, Saraya A, Koseki H.
    Bio Protoc. 2023 Nov 20;13(22):e4878. doi: 10.21769/BioProtoc.4878.

  5. Intracytoplasmic sperm injection induces transgenerational abnormalities in mice
    Kanatsu-Shinohara M, Shiromoto Y, Ogonuki N, Inoue K, Hattori S, Miura K, Watanabe N, Hasegawa A, Mochida K, Yamamoto T, Miyakawa T, Ogura A, #Shinohara T.
    J Clin Invest. 2023 Nov 15;133(22):e170140. doi: 10.1172/JCI170140.

  6. Nutritional and metabolic control of germ cell fate through O-GlcNAc regulation.
    #Hayashi Y, Tando Y, Ito-Matsuoka Y, Ikuta K, Takehara A, Morino K, Maegawa H, #Matsui Y
    EMBO Rep. 2023 Oct 16:e56845. doi: 10.15252/embr.202356845. Online ahead of print.

  7. A CUG-initiated CATSPERθ functions in the CatSper channel assembly and serves as a checkpoint for flagellar trafficking
    Huang X, Miyata H, Wang H, Mori G, Iida-Norita R, Ikawa M, Percudani R, #Chung JJ.
    Proc Natl Acad Sci U S A. 2023 Sep 26;120(39):e2304409120. doi: 10.1073/pnas.2304409120. Epub 2023 Sep 19.

  8. Phase-separated nuclear bodies of nucleoporin fusions promote condensation of MLL1/CRM1 and rearrangement of 3D genome structure.
    Oka M, Otani M, Miyamoto Y, Oshima R, Adachi J, Tomonaga T, Asally M, Nagaoka Y, Tanaka K, Toyoda A, Ichikawa K, Morishita S, Isono K, Koseki H, Nakato R, Ohkawa Y, Yoneda Y.
    Cell Rep. 2023 Aug 29;42(8):112884. doi: 10.1016/j.celrep.2023.112884. Epub 2023 Jul 29.

  9. Incomplete activation of Alyref and Gabpb1 leads to preimplantation arrest in cloned mouse embryos
    Ihashi S, Hamanaka M, Kaji M, Mori R, Nishizaki S, Mori M, Imasato Y, Inoue K, Matoba S, Ogonuki N, Takasu A, Nakamura M, Matsumoto K, Anzai M, Ogura A, Ikawa M, #Miyamoto K.
    Life Sci Alliance. 2023 Aug 28;6(11):e202302296. doi: 10.26508/lsa.202302296. Print 2023 Nov.

  10. Generation of rat offspring using spermatids produced through in vitro spermatogenesis.
    Matsumura T, Katagiri K, Yao T, Ishikawa-Yamauchi Y, Nagata S, Hashimoto K, Sato T, Kimura H, Shinohara T, Sanbo M, #Hirabayashi M, #Ogawa T.
    Sci Rep. 2023 Jul 26;13(1):12105. doi: 10.1038/s41598-023-39304-1.

  11. Derivation of embryonic stem cells from wild-derived mouse strains by nuclear transfer using peripheral blood cells
    Watanabe N, Hirose M, Hasegawa A, Mochida K, #Ogura A, #Inoue K.
    Sci Rep. 2023 Jul 10;13(1):11175. doi: 10.1038/s41598-023-38341-0.

  12. Epigenetic plasticity safeguards heterochromatin configuration in mammals.
    #Fukuda K, Shimi T, Shimura C, Ono T, Suzuki T, Onoue K, Okayama S, Miura H, Hiratani I, Ikeda K, Okada Y, Dohmae N, Yonemura S, Inoue A, Kimura H, #Shinkai Y.
    Nucleic Acids Res. 2023 Jul 7;51(12):6190-6207. doi: 10.1093/nar/gkad387.

  13. Dynamic nucleosome remodeling mediated by YY1 underlies early mouse development
    Sakamoto M, Abe S, Miki Y, Miyanari Y, Sasaki H, #Ishiuchi T.
    Genes Dev. 2023 Jul 1;37(13-14):590-604. doi: 10.1101/gad.350376.122. Epub 2023 Aug 2.
    紹介記事

  14. Involvement of linker histone variant H1a in the regulation of early preimplantation development in mice.
    #Funaya S, Wang Y, Suzuki MG, Ikawa M, #Aoki F.
    J Reprod Dev. 2023 Jun 6;69(3):178-182. doi: 10.1262/jrd.2023-013. Epub 2023 Apr 17.

  15. UHRF1 is essential for proper cytoplasmic architecture and function of mouse oocytes and derived embryos.
    Uemura S, Maenohara S, Inoue K, Ogonuki N, Matoba S, Ogura A, Kurumizaka M, Yamagata K, Sharif J, Koseki H, Ueda K, Unoki M, Sasaki H. 
    Life Sci Alliance. 2023 May 24;6(8):e202301904. doi: 10.26508/lsa.202301904. 

  16. Functional coordination between transcription factor clustering and gene activity.
    Kawasaki K, #Fukaya T.
    Molecular Cell 83, 1605-1622, May 18, 2023. doi: 10.1016/j.molcel.2023.04.018
    紹介記事

  17. CDYL reinforces male gonadal sex determination through epigenetically repressing Wnt4 transcription in mice
    Okashita N, Maeda R, #Tachibana M
    Proc Natl Acad Sci U S A. 2023 May 16;120(20):e2221499120. doi: 10.1073/pnas.2221499120. Epub 2023 May 8.

  18. A small secreted protein NICOL regulates lumicrine-mediated sperm maturation and male fertility
    #Kiyozumi D, Shimada K, Chalick M, Emori C, Kodani M, Oura S, Noda T, Endo T,  Matzuk MM,  #Wreschner DH, #Ikawa M.
    Nat Commun. 2023 Apr 24;14(1):2354. doi: 10.1038/s41467-023-37984-x.
    紹介記事

  19. Allogeneic offspring produced by induction of PD-L1 in spermatogonial stem cells via self-renewal stimulation.
    Shinohara T, Yamamoto T, Morimoto H, Shiromoto Y, Kanatsu-Shinohara M.
    Stem Cell Reports. 2023 Apr 11;18(4):985-998. doi: 10.1016/j.stemcr.2023.02.008. Epub 2023 Mar 23.

  20. ADAD2 functions in spermiogenesis and piRNA biogenesis in mice.
    Lu Y, Nagamori I, Kobayashi H, Kojima-Kita K, Shirane K, Chang HY, Nishimura T, Koyano T, Yu Z, Castañeda JM, Matsuyama M, #Kuramochi-Miyagawa S, #Matzuk MM, #Ikawa M.
    Andrology. 2023 May;11(4):698-709. doi: 10.1111/andr.13400. Epub 2023 Feb 14.

  21. Monitoring the compaction of single DNA molecules in Xenopus egg extract in real time.
    Sun M, Amiri H, Tong AB, Shintomi K, Hirano T, # Bustamante C, # Heald R.
    Proc Natl Acad Sci U S A. 2023 Mar 21;120(12):e2221309120. doi: 10.1073/pnas.2221309120. Epub 2023 Mar 14. 

  22. TSKS localizes to nuage in spermatids and regulates cytoplasmic elimination during spermiation.
    #Shimada K, Park S, Oura S, Noda T, Morohoshi A, #Matzuk MM, #Ikawa M.
    Proc Natl Acad Sci U S A. 2023 Mar 14;120(11):e2221762120. doi: 10.1073/pnas.2221762120. Epub 2023 Mar 7.
    紹介記事

  23. Glutamine protects mouse spermatogonial stem cells against NOX1-derived ROS for sustaining self-renewal division in vitro.
    Miyazaki T, Kanatsu-Shinohara M, Ogonuki N, Matoba S, Ogura A, Yabe-Nishimura C, Zhang H, Pommier Y, Trumpp A, Shinohara T
    Development. 2023 Oct 15;150(20):dev201157. doi: 10.1242/dev.201157. Epub 2023 Mar 30. 

  24. Transcription of MERVL retrotransposons is required for preimplantation embryo development.
    Sakashita A, Kitano T, Ishizu H, Guo Y, Masuda H, Ariura M, Murano K, #Siomi H.
    Nat Genet. 2023 Mar;55(3):484-495. doi: 10.1038/s41588-023-01324-y. Epub 2023 Mar 2.
    紹介記事

  25. Novel inhibitors of microtubule organization and phragmoplast formation in diverse plant species. Life Sci Alliance.
    Kimata Y, Yamada M, Murata T, Kuwata K, Sato A, Suzuki T, Kurihara D, Hasebe M, Higashiyama T, #Ueda M.
    Life Sci Alliance. 2023 Feb 27;6(5):e202201657. doi: 10.26508/lsa.202201657.

  26. Dynamic interplay between non-coding enhancer transcription and gene activity in development.
    Hamamoto K, Umemura Y, Makino S & #Fukaya T​​​​​​
    Nat Commun. 2023 Feb 20;14(1):826. doi: 10.1038/s41467-023-36485-1.
    紹介記事

  27. 1700029I15Rik orchestrates the biosynthesis of acrosomal membrane proteins required for sperm-egg interaction.
    Lu Y, Shimada K, Tang S, Zhang J, Ogawa Y, Noda T, Shibuya H, #Ikawa M.
    Proc Natl Acad Sci U S A. 2023 Feb 21;120(8):e2207263120. doi: 10.1073/pnas.2207263120. Epub 2023 Feb 14.
    紹介記事

  28. Cellular dynamics of coenocytic endosperm development in Arabidopsis thaliana.
    Ali MF, Shin JM, Fatema U, Kurihara D, Berger F, Yuan L, #Kawashima T. 
    Nat Plants. 2023 Feb;9(2):330-342. doi: 10.1038/s41477-022-01331-7. Epub 2023 Jan 16. 

  29. Editing the Genome of the Golden Hamster (Mesocricetus auratus)
    Hirose M, Tomishima T, #Ogura A. 
    Methods Mol Biol. 2023;2637:247-254. doi: 10.1007/978-1-0716-3016-7_19.

  30. Testis-enriched ferlin, FER1L5, is required for Ca2+-activated acrosome reaction and male fertility.
    *Morohoshi A, #*Miyata H, Tokuhiro K, Iida-Norita R, Noda T, Fujihara Y, #Ikawa M.
    Sci Adv. 2023 Jan 25;9(4):eade7607. doi: 10.1126/sciadv.ade7607. Epub 2023 Jan 25.
    紹介記事

  31. Uterine epithelial Gp130 orchestrates hormone response and epithelial remodeling for successful embryo attachment in mice
    Namiki T, Terakawa J, Karakama H, Noguchi M, Murakami H, Hasegawa Y, Ohara O, Daikoku T, #Ito J, Kashiwazaki N.
    J Sci Rep. 2023 Jan 16;13(1):854.  doi: 10.1038/s41598-023-27859-y.

  32. Signal regulatory protein alpha is a conserved marker for mouse and rat spermatogonial stem cells.
    Miyazaki T, Kanatsu-Shinohara M, Ema M, Shinohara T.
    Biol Reprod. 2023 Apr 11;108(4):682-693. doi: 10.1093/biolre/ioad006.

  33. Testis-specific proteins, TSNAXIP1 and 1700010I14RIK, are important for sperm motility and male fertility in mice.
    Kaneda Y, #Miyata H, Shimada K, Oura S, #Ikawa M.
    Andrology. 2023 Jan 4. doi: 10.1111/andr.13378. Online ahead of print.

  34. Solubilization of Mouse Sperm Chromatin for Sequencing Analyses Using a Chaperon Protein. 
    Fukuda Y, Shintomi K, Yamaguchi K, Fujiwara Y, # Okada Y.
    Methods Mol Biol. 2023;2577:161-173. doi: 10.1007/978-1-0716-2724-2_11. 

  35. Proximity-dependent biotin labeling in testicular germ cells identified TESMIN-associated proteins.
    Oura S, Ninomiya A, Sugihara F, Matzuk MM, #Ikawa M.
    Sci Rep. 2022 Dec 23;12(1):22198. doi: 10.1038/s41598-022-26501-7.

 *equal contribution  #corresponding author

  1. Molecular mechanisms underlying totipotency
    #Ishiuchi T, Sakamoto M.
    Life Sci Alliance. 2023 Sep 4;6(11):e202302225. doi: 10.26508/lsa.202302225.
    紹介記事
     
  2. Enhancer dynamics: Unraveling the mechanism of transcriptional bursting
    #Fukaya T.
    Science Advances Vol 9, Issue 31, 2 August, 2023. doi:10.1126/sciadv.adj3366
     
  3. A Simple and Efficient Method for Generating KO Rats Using In Vitro Fertilized Oocytes. 
    Morita K, Honda A, Asano M. 
    Methods Mol Biol. 2023;2637:233-246. doi: 10.1007/978-1-0716-3016-7_18.
     
  4. Similarities and differences in placental development between humans and cynomolgus monkeys
    Matsumoto S, Okamura E, Muto M, #Ema M
    Reprod Med Biol. 2023 Jun 26;22(1):e12522. doi: 10.1002/rmb2.12522. eCollection 2023 Jan-Dec.
     
  5. Noncanonical imprinting: intergenerational epigenetic inheritance mediated by Polycomb complexes.
    #Inoue A.
    Curr Opin Genet Dev. 2023 Feb;78:102015. doi: 10.1016/j.gde.2022.102015. Epub 2022 Dec 26.
     
  6. The large cytoplasmic volume of oocyte.
    #Kyogoku H, Kitajima TS.
    J Reprod Dev. 2023 Feb 8;69(1):1-9. doi: 10.1262/jrd.2022-101. Epub 2022 Nov 26.
     
  7. Low-Input CUT&RUN for Mouse Oocytes and Preimplantation Embryos.
    Hayashi R, #Inoue A.
    Methods Mol Biol. 2023;2577:83-92. doi: 10.1007/978-1-0716-2724-2_6.

 

  1. Intracytoplasmic sperm injection induces transgenerational abnormalities in mice
    Takashi Shinohara
    stem cell-niche interaction in tissue maintenance and engineering, Hong Kong, 2-3.12.2023
  2. What does nuclear transfer tell us about genomic reprogramming? 
    Atsuo Ogura
    The 46th Annual Meeting of the Molecular Biology Society of Japan, online, 27.11.2023
  3. Mouse embryonic development requires endogenous retrovirus expression
    Haruhiko Shiomi
    2023 Taiwan-Japan Bilateral Meeting on RNA and Biofunctions, National Taiwan University, 27-29.10.2023
  4. Dynamics of chromatin organization at distal enhancers during cell differentiation
    Naoki Kubo
    Human Genetics Asia 2023, Tokyo, 13.10.2023
  5. Testis-enriched genes and their functions during spermatogenesis and sperm function
    Masahito Ikawa
    1st Spermatogenesis Conference, Croatia, 11.10.2023
  6. Development of genetically modified disease models in the marmoset
    Erika Sasaki
    AFLAS Congress 2023,  Korea, 12-15.9.2023
  7. CRISPR/Cas9 mediated-KO screening identified essential genes for fertilization and oocyte activation
    Masahito Ikawa
    ASPIRE (Asia Pacific Initiative on Reproduction), Australia, 8.9.2023
  8. Mouse embryonic development requires transposon expression
    Haruhiko Shiomi
    ASPIRE (Asia Pacific Initiative on Reproduction), Australia, 8.9.2023
  9. Transposable lelements in mouse early embryos
    Haruhiko Shiomi
    Keystone meeting, “Transposable elements at the crossroads of evolution, health and disease,”, Whistler, British Columbia, Canada, 3-6.9.2023
  10. Visualization of transcription hubs in living Drophila embryos
    Takashi Fukaya
    CSHL meeting Mechanisms of Eukaryotic Transcription, USA, 29.8.2023
  11. Visualization of transcription hubs in living Drophila embryos
    Takashi Fukaya
    International conference on biological physics, Korea, 17.8.2023
  12. Reprogramming of nuclear structures for embryonic development in mouse. 
    Kei Miyamoto
    DevStem Seminar, Nantes University, France, 10.8.2023
  13. Understanding the role of genomic imprinting: exploring the physiological functions and molecular mechanisms in mice and stem cell models.
    Shinpei Yamaguchi
    2023 Symposium on Epigenetic Regulation, Beijing, China, 4.8.2023
  14. Testis-enriched genes and their functions​
    Masahito Ikawa
    30 years of (Re) Productive Biology - A Symposium Honoring Professor Martin M. MATZUK at BCM(Baylor College of Medicine), USA, 15.4.2023
  15. Maternal Polycomb complexes regulate imprinted XCI.
    Azusa Inoue
    EMBO Workshop “X-chromosome inactivation: New insights on its 60th anniversary”, Germany, 19-22.6.2023
  16. Molecular mechanism analysis involved in mitochondrial sheath formation and spermiation processes using gene-manipulated mice
    Keisuke Shimada
    Research Institute of Molecular Pathology (IMP), Austria, 16.6.2023
  17. Testis-enriched genes and their functions for spermatogenesis and fertilization
    Masahito Ikawa
    The first Asian Congress for Reproductive Immunology (ACRI 2023), Kobe, 8.4.2023
  18. Nuclear transfer for the study of the developmental epigenetics
    Atsuo Ogura
    The 36th International Mammalian Genome Conference, Tsukuba, 29.03.2023
  19. Dynamics of transcription hubs in the living Drosophila embryo
    Takashi Fukaya
    The 3rd NINS-Princeton Joint Sympodium, USA, 23.03.2023
  20. Mechanical dynamics of early embryonic nuclei
    Yuta Shimamoto
    Genome Biophysics the 3rd semi-annual seminar, online, 15.3.2023
  21. Establishment of mouse stem cells that can recapitulate the developmental potential of primitive endoderm
    Yasuhide Ohinata
    RIKEN BDR-CuSTOM Joint Organoid Symposium, Kobe, 15.02.2023
  22. Generation and evaluation of genetically modified marmosets for the development of disease models.
    Erika Sasaki
    University of Exeter LSI seminar, UK, 17.01.2023
  23. Genomic imprinting mediated by maternal histone modifications.
    Azusa Inoue
    The 2nd Subhash Mukhopadhyay Symposium (WEB),  13-15.01.2023
  1. Impact of the nuclear DNA -to-cytoplasmic ratio in mammalian preimplantation development
    大杉美穂
    第45回日本分子生物学会年会  2023.11.28
  2. Spatiotemporal dynamics of nuclear lamins during early embryonic development
    島本勇太
    第61回日本生物物理学会年会 2023.11.14.
  3. オートファジーを介した初期胚核の構造・力学リモデリング
    島本勇太
    第96回日本生化学会大会 2023.10.31.
  4. Elucidation of imprinted genes responsible for hyperplasia in somatic cell nuclear transferred placentas
    井上貴美子
    第64回日本卵子学会学術集会 2023.09.14
  5. Development of spatial multi-omics for understanding skeletal muscle aging
    Yasuyuki Ohkawa
    1st Symposium on "Skeletal muscle cells in Growth and Disease"  2023.05.01
  6. Mechanical dynamics of the nucleus in early mouse embryos
    島本勇太
    日本生理学会第100回記念大会 2023.03.15
  7. ゲノム編集を通して見る受精メカニズム
    伊川 正人
    第28回日本臨床エンブリオロジスト学会 2023.01.08
  8. CRISPR スクリーニングを用いたヒト胎盤の発生制御機構の解明
    大池 輝
    熊本大学発生医学研究所セミナー 2023.01.12
  9. Unlocking the mysteries of pregnancy with stem cells
    岡江 寛明
    熊本大学発生医学研究所セミナー 2023.01.24
  10. 卵子形成機構の包括的理解にむけた取り組み
    石内 崇士
    第1回甲信⽣殖発⽣研究会 2023.02.21
  11. 細胞分化における遠位エンハンサーとクロマチン構造変化の役割
    久保 直樹
    第1回甲信⽣殖発⽣研究会 2023.02.21
  12. Functional coordination between transcription hub assembly and gene activity in living Drosophila embryos
    深谷 雄志 
    第4回ゲノム生物物理学セミナー (WEB) 2023.03.06
  13. 顕微鏡下で命をつくる ー 核移植クローンと顕微授精 ー
    小倉 淳郎
    第12回日本マーモセット研究会 (WEB) 2023.03.07
  14. C19MC confers differentiation potential into trophoblast lineages upon human PSCs
    岡江 寛明
    熊本大学発生医学研究所セミナー 2023.03.9
  15. 有性生殖の裏技:体細胞クローン法 
    的場 章悟
    第三回有性生殖研究会「生殖の多様性」2023.03.10
  1. Best Science Pitch Award "THE EMBO JOURNAL Award"(第46回日本分子生物学会年会)
    東 真里奈 2023.12.08
  2. 最優秀ポスター賞(第一回細胞生物コロキウム)
    島袋航弥 2023.11.12
  3. 大阪大学賞(若手教員部門)
    江森 千紘 2023.11
  4. RMB優秀論文賞(基礎部門)(2023年度日本生殖医学会)
    大山 裕貴 2023.11
  5. 優秀発表賞(第38回 日本生殖免疫学会総会・学術集会)
    飯田 理恵 2023.11
  6. 優秀発表賞(第2回細胞分裂研究会 )
    梶谷碧 2023.7.27
  7. ベストプレゼン賞(口頭発表部門)(第4回若手勉強会2023)
    坂本 瑞季、東 真里奈 2023.7
  8. ベストプレゼン賞(ポスター発表部門)(第4回若手勉強会2023)
    松若 正篤、松村 昌樹、阪野 亜美、寺井 康徳、廣野 尚暉 2023.7
  9. 優秀ポスター賞(第22回東京大学生命科学シンポジウム)
    梶谷碧 2023.6.17
  10. 優秀発表賞(第70回実験動物学会総会 )
    岸本 恵子 2023.5.25
  11. 令和5年度 科学技術分野の文部科学大臣表彰 科学技術賞(研究部門)
    大川 恭行 2023.04.19
  12. 令和5年度 科学技術分野の文部科学大臣表彰 科学技術賞(研究部門)
    伊川 正人 2023.04.19
  13. The 1st Asian Congress for Reproductive Immunology (ACRI) Outstanding Award
    大山 裕貴 2023.4
  14. 優秀発表賞(日本動物学会関東支部第46回大会)
    梶谷碧 2023.7
  15. 2022年度内藤記念科学奨励金・研究助成 (2022年度 内藤記念科学振興財団 贈呈式)
    宮本 圭 2023.03.16
  1. 体外受精の「リスク」は子や孫世代に伝わるのか
    篠原 隆司 
    週刊ダイヤモンド 2023.12.23
  2. 性別はグラデーション
    立花 誠
    信濃毎日新聞 2022.11.13
  3. ISSでマウス受精卵成長、哺乳類発育に可能性…山梨大など「胎児まで成長できるか研究必要」 
    伊川 正人
    読売新聞オンライン 2023.11.09
  4. Mouse Embryos Grown in Space for First Time
    小倉 敦郎 2023.10.30
  5. ISSでマウスの胚発生成功=微小重力下で、哺乳類初―山梨大など
    小倉 敦郎 
    時事通信社会ニュース、時事ドットコム 2023.10.28
  6. 哺乳類は宇宙で繁殖も、マウス受精卵の成長確認 山梨大
    小倉 敦郎 
    日本経済新聞 2023.10.28
  7. Japan Researcher Succeed in Growing Mouse Embryos in Space 
    小倉 敦郎
    Jiji Press English News Service 2023.10.28
  8. Researchers Grow Mouse Embryos in Space
    小倉 敦郎
    Times of Japan 2023.10.29
  9. クローン動物作製技術、障壁の一因解明 近畿大
    宮本 圭 
    日刊工業新聞 2023.08.31
  10. 実験用サル 遺伝的多様性守る
    佐々木 えりか
    読売新聞 2023.8.31
  11. クローン胚が早期発生停止となる原因遺伝子を発見
    宮本 圭
    NEWS CAST 2023.08.28
  12. 受精卵ゲノム構造 省コストで解析
    石内 崇士
    北國新聞 2023.08.09
  13. 精子成熟のタンパク質発見 阪大、男性不妊解明に期待
    伊川 正人
    産経新聞(夕刊6面)、東京新聞 2023.05.30
  14. 正常な精子形成 遺伝子発見 阪大などチーム、マウス実験で
    伊川 正人
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  15. 阪大など 精子の働き制御のたんぱく質を特
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  16. 精子成熟に不可欠なたんぱく質=マウスで発見―大阪大 
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  17. 精子の形作る遺伝子発見
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  18. More Jobs for “Junk” DNA
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  19. Junk DNA Has Yet Another Job – Keeping Mouse Embryos Alive
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  20. 大阪大、精子の形作る遺伝子発見
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  21. 遺伝子暴走防ぐ仕組み解明
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  22. Study: FER1L5 protein essential for sperm to undergo acrosome reaction and male fertility
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  23. 精子の受精能獲得に重要なタンパク質を解明
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  24. 精子の受精能力獲得の鍵となるタンパク質を発見 大阪大
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  25. 大阪大、受精に関わる精子遺伝子を特定
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  26. 受精に必須の遺伝子 大阪大チームが特定 不妊治療など期待
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  28. 受精必須遺伝子 マウスで特定
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  29. 男性不妊の治療に希望か 受精に欠かせない遺伝子発見
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  30. 男性不妊の解明に一歩 精子の「キャップ」外す遺伝子、マウスで発見
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  31. マウス実験で受精に関わる精子の遺伝子を発見…阪大の研究チーム 
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