2023年

  1. Primordial Germ Cell Cryopreservation and Revival of Drosophila Strains.

    K. Nishimura, M. Asaoka, Y. Sakamaki, T. Fukumoto, D. Tanaka, S. Kobayashi

    Journal of Visualized Experiments. DOI: 10.3791/65985

  2. Bioproduction of n-3 Polyunsaturated Fatty Acids by Nematode Fatty Acid Desaturases and Elongase in Drosophila melanogaster.

    M. Sato, R. Ota, S. Kobayashi, K. Yamakawa-Kobayashi, T. Miura, A. Ido and Y. Ohhara

    Transgenic Research. 32, 411-421. DOI: 10.1007/s11248-023-00363-9

  3. An ancient split of germline and somatic stem cell lineages in Hydra.

    C. Nishimiya-Fujisawa, H. Petersen, T. CT. Koubková-Yu, C. Noda, S. Shigenobu, J. Bageritz, T. Fujisawa, O. Simakov*, S. Kobayashi*, T. W. Holstein*

    bioRxiv. DOI: 10.1016/j.gep.2023.119321

  4. Identification of novel candidate genes leading to sex differenciation in primordial germ cells of Drosophila.

    R. Ota*, H. Miura, M. Masukawa, M. Hayashi, S. Kobayashi

    Gene expression patterns. 48, 119321. 10.1016/j.gep.2023.119321

2022年

  1. Biosynthesis of S-adenosyl-methionine enhances aging-related defects in Drosophila oogenesis.

    Y. Hayashi*, S. Kashio, K. Morotomi, S. Hino, W. Kang, K. Miyado, M. Nakano, M. Miura, S. Kobayashi, M. Namihira

    Scientific Reports. 12, 5593. https://doi.org/10.1038/s41598-022-09424-1

  2. Dual role of Ovol2 on the germ cell lineage segregation during gastrulation in mouse embryogenesis.

    Y. Naitou, G. Nagamatsu, N. Hamazaki, K. Shirane, M. Hayashi, M. Hayashi, S. Kobayashi, K. Hayashi

    Development. 149, 1-13. dev200319. https://doi.org/10.1242/dev.200319

2021年

  1. Male-biased protein expression in primordial germ cells, identified through a comparative study of UAS vectors in Drosophila.

    M. Masukawa, Y. Ishizaki, H. Miura, M. Hayashi, R. Ota and S. Kobayashi

    Scientific Reports 11:21482. https://doi.org/10.1038/s41598-021-00729-1.
    プレスリリース(TSUKUBA JOURNAL)

  2. Offspring production from cryopreserved primordial germ cells in Drosophila.

    M. Asaoka, Y. Sakamaki, T. Fukumoto, K. Nishimura, M. Tomaru, T. Takano-Shimizu, D. Tanaka and S. Kobayashi

    Communications Biology 4:1159 プレスリリース(TSUKUBA JOURNAL)

  3. Heparan sulfate proteoglycan molecules, syndecan and perlecan, have distinct roles in the maintenance of Drosophila germline stem cells.

    Y. Hayashi*, A. Shibata, K. Kamimura and S. Kobayashi

    Develop. Growth Differ. 63:295-305.

  4. Absence of X-chromosome dosage compensation in the primordial germ cells of Drosophila embryos.

    R. Ota, M. Hayashi, S. Morita, H. Miura and S. Kobayashi

    Sci Rep 11, 4890. プレスリリース(TSUKUBA JOURNAL)

2020年

  1. Myc plays an important role in Drosophila PM-hybrid dysgenesis to eliminate germline cells with genetic damage.

    R. Ota and S. Kobayashi

    Communications Biology 3, 185 プレスリリース(TSUKUBA JOURNAL)

  2. Repression of G1/S transition by transient inhibition of miR-10404 expression in Drosophila primordial germ cells.

    S. Morita, R. Ota, M. Hayashi and S. Kobayashi

    iScience 23, 100950 プレスリリース(TSUKUBA JOURNAL)

2019年

  1. A truncated form of a transcription factor Mamo activates vasa in Drosophila embryos.

    S. Nakamura, S. Hira, M. Fujiwara, N. Miyagata, T. Tsuji, A. Kondo, H. Kimura, Y. Shinozuka, M. Hayashi, S. Kobayashi, M. Mukai

    Communications Biology, 2: 422.

  2. Competition for mitogens regulates spermatogenic stem cell homeostasis in an open niche.

    Y. Kitadate, D. Jörg, M. Tokue, A. Maruyama, R. Ichikawa, S. Tsuchiya, E. Segi-Nishida, T. Nakagawa, A. Uchida, C. Kimura-Yoshida, S. Mizuno, F. Sugiyama, T. Azami, M. Ema, C. Noda, S. Kobayashi, I. Matsuo, Y. Kanai, T. Nagasawa, Y. Sugimoto, S. Takahashi, B. Simons and S. Yoshida

    Cell Stem Cell, 24, 79-92.e6.

  3. Maternal Nanos inhibits Importin-a2/Pendulin-dependent nuclear import to prevent somatic gene expression in the Drosophila germline.

    M. Asaoka, K. Hanyu-Nakamura, A. Nakamura and S. Kobayashi

    PLoS Genetics, 15, e1008090. プレスリリース(TSUKUBA JOURNAL)

  4. Exaggeration and co-option of innate immunity for social defence.

    M. Kutsukake, M. Moriyama, S. Shigenobu, X-Y Meng, N. Nikoh, C. Noda, S. Kobayashi and T. Fukatsu

    Proc. Natl. Acad. Sci. USA., 116, 8950-8959.

2018年

  1. Downregulation of NHP2 promotes proper cyst formation in Drosophila ovary.

    Shumpei Morita, Ryoma Ota, S. Kobayashi

    Dev. Growth. Differ. 60, 248-259.

  2. Adult-specific insulin-producing neurons in Drosophila melanogaster.

    Y. Ohhara, S. Kobayashi, K. Yamakawa-Kobayashi, N. Yamanaka

    Journal of Comparative Neurology, 526, 1351-1367.

  3. Maternal Nanos-dependent RNA stabilization in the primordial germ cells of Drosophila embryos.

    S. Sugimori, Y. Kumata, and S. Kobayashi

    Dev. Growth. Differ. 60, 63-75.

2017年

  1. Transcriptome characterization of male accessory glands in ants to identify molecules involved in their reproductive success.

    A. Gotoh, S. Shigenobu, K. Yamaguchi, S. Kobayashi, F. Ito and K.Tsuji

    Insect Molecular Biology,27, 212-220.

  2. The transcripts immunoprecipitated with Sxl protein in the primordial germ cells of Drosophila embryos.

    Ryoma Ota, Shumpei Morita, Masanao Sato, Shuji Shigenobu, Makoto Hayashi and Satoru Kobayashi

    Dev. Growth. Differ. 59, 713-723.

  3. Transcriptome profiling of the spermatheca identifies genes potentially involved in the long-term sperm storage of ant queens.

    A. Gotoh, S. Shigenobu, K. Yamaguchi, S. Kobayashi, F. Ito and K. Tsuji

    Sci. Rep. 7:5972.

  4. SHISA6 confers resistance to differentiation-promoting Wnt/β-catenin signaling in mouse spermatogenic stem cells.

    M. Tokue, K. Ikami, S. Mizuno, C. Takagi, A. Miyagi, R. Takada, C. Noda, Y. Kitadate, K. Hara, H. Mizuguchi, T. Sato, M. M. Taketo, F. Sugiyama, T. Ogawa, S. Kobayashi, N. Ueno, S. Takahashi, S. Takada and S. Yoshida

    Stem Cell Reports 8, 561-575.

  5. Nutrient-Dependent Endocycling in Steroidogenic Tissue Dictates Timing of Metamorphosis in Drosophila melanogaster.

    Y. Ohhara, S. Kobayashi, K. Yamakawa-Kobayashi, N. Yamanaka

    Journal of Comparative Neurology, 526, 1351-1367.

  6. Conserved role of Ovo in germline development in mouse and Drosophila.

    Y. Ohhara, S. Kobayashi and N. Yamanaka

    PLOS Genetics,13-1, e1006583

  7. Different populations of Wnt-containing vesicles are individually released from polarized epithelial cells.

    QH. Chen, R. Takada, C. Noda, S. Kobayashi, S. Takada

    Sci. Rep. 6, 35562.

2015年

  1. foxl3 is a germ cell-intrinsic factor involved in sperm-egg fate decision in medaka.

    T. Nishimura, T. Sato, Y. Yamamoto, I. Watakabe, Y. Ohkawa, M. Suyama, S. Kobayashi and M. Tanaka

    Science, 349, 328-331.

  2. Hierarchical differentiation competence in response to retinoic acid ensures stem cell maintenance during mouse spermatogenesis.

    K. Ikami, M. Tokue, R. Sugimoto, C. Noda, S. Kobayashi, K. Hara and S. Yoshida

    Development, 142, 1582-1592.

  3. Autocrine regulation of ecdysone synthesis by β3-octopamine receptor in the prothoracic gland is essential for Drosophila metamorphosis.

    Y. Ohhara, Y. Shimada-Niwa, R. Niwa, Y. Kayashima, Y. Hayashi, K. Akagi, H. Ueda, K. Yamakawa-Kobayashi and S. Kobayashi

    Proc. Natl. Acad. Sci. USA., 112, 1452-1457.

  4. H3K36 trimethylation-mediated epigenetic regulation is activated by Bam and promotes germ cell differentiation during early oogenesis in Drosophila.

    M. Mukai, S. Hira, K. Nakamura, S. Nakamura, H. Kimura, M. Sato, and S. Kobayashi

    Biology Open, 4, 119-124.

2014年

  1. gone early, a Novel Germline Factor, Ensures the Proper Size of the Stem Cell Precursor Pool in the Drosophila Ovary.

    S. Matsuoka, S.Gupta, E. Suzuki, Y. Hiromi, M. Asaoka

    PLoS One, e113423.

  2. Pri peptides are mediators of ecdysone for the temporal control of development.

    H. Chanut-Delalande, Y. Hashimoto, A. Pélissier-Monier, R. Spokony, A. Dib, T. Kondo, J. Bohère, K. Niimi, Y. Latapie, S. Inagaki, L. Dubois, P. Valenti, C. Polesello, S. Kobayashi, B. Moussian, K. White, S. Plaza, Y. Kageyama, and F. Payre

    Nature Cell Biol., 16, 1035-44.

  3. Analysis of a novel gene, Sdgc, reveals sex chromosome-dependent differences of medaka germ cells prior to gonad formation.

    T. Nishimura, A. Herpin, T. Kimura, I. Hara, T. Kawasaki, S. Nakamura, Y. Yamamoto, T. Saito, J. Yoshimura, S. Morishita, T. Tsukahara, S. Kobayashi, K. Naruse, S. Shigenobu, N. Sakai, M. Schartl, and M. Tanaka

    Development, 141, 3363-9.

  4. Enrichment of spermatogonial stem cells using side population in teleost.

    M. Hayashi, M. Sato, Y. Iwasaki, T. Onozawa, N. Katayama, Y. Nagasaka, S. Sadaie, S. Kobayashi and G. Yoshizaki

    Biology of Reproduction, 91, 1-8.

  5. Analysis of Hydra PIWI proteins and piRNAs uncover early evolutionary origins of the piRNA pathway.

    R. S M Lim, A. Anand, C. Nishimiya-Fujisawa, S. Kobayashi and T. Kai

    Dev. Biol., 386, 237-251.

2013年

  1. Binding of Drosophila maternal Mamo protein to chromatin and specific DNA sequences.

    S. Hira, T. Okamoto, M. Fujiwara, H. Kita, S. Kobayashi, M. Mukai

    Biochem Biophys Res Commun, 438, 156-160.

  2. Analysys of Drosophila glucuronyl C-5 epimerase: implication of developmental roles of heparan sulfate sulfation compensation and 2-O sulfated glucuronic acid.

    K. Dejima, M. Takemura, E. Nakato, J. Peterson, Y. Hayashi, A. Toyoda, H. Toyoda and H. Nakato

    J. Biol. Chem., 288, 34384-34393.

2012年

  1. Glypicans regulate JAK/STAT signaling and distribution of the Unpaired morphogen.

    Y. Hayashi, TR. Sexton, K. Dejima, DW. Perry, M. Takemura, S. Kobayashi, H. Nakato, DA. Harriso

    Development, 139, 4162-71.

  2. Expression of β-adrenergic-like octopamine receptors during Drosophila development.

    Y. Ohhara, Y. Kayashima, Y. Hayashi, S. Kobayashi and K. Yamakawa-Kobayashi

    Zoological Science, 29, 83-89.

2011年

  1. Innexin2 gap junctions in somatic support cells are required for cyst formation and for egg chamber formation in Drosophila.

    M. Mukai, K. Kato, S. Hira, K. Nakamura, H. Kita and S. Kobayashi

    Mech. Dev., 128, 510-523.

  2. Drosophila Sex lethal Gene Initiates Female Development in Germline Progenitors.

    K. Hashiyama, Y. Hayashi, S. Kobayashi

    Science, 333, 885-888. Highlighted in This week in Science (Science 333, 801)
    Perspectives (Science 333, 829)

2010年

  1. Notch and Egfr signaling act antagonistically to regulate germline stem cell niche formation in Drosophila male embryonic gonads.

    Y. Kitadate and S. Kobayashi

    Proc. Natl. Acad. Sci. USA., 107, 14241-14246.

  2. Small Peptides Switch the Transcriptional Activity of Shavenbaby During Drosophila Embryogenesis.

    T. Kondo, S. Plaza, J. Zanet, E. Benrabah, P. Valenti, Y. Hashimoto, S. Kobayashi, F. Payre, Y.Kageyama

    Science, 329, 336-339.

  3. Non-molting glossy/shroud encodes a short-chain dehydrogenase/reductase that functions in the “Black Box” of the ecdysteroid biosynthesis pathway.

    R. Niwa, K. Ito, T. Namiki, Y. Shimada-Niwa, M. Kiuchi, S. Kawaoka, T. Kayukawa, Y. Banno, Y. Fujimoto, S. Shigenobu, S. Kobayashi, T. Shimada, S. Katsuma, and T. Shinoda

    Development, 137, 1991-1999.

2009年

  1. Drosophila glypicans regulate the germline stem cell niche.

    Y. Hayashi, S. Kobayashi and H. Nakato

    J. Cell Biol., 187, 473-480.

  2. Expression of the apoptosis inducer gene head involution defective in primordial germ cells of the Drosophila embryo requires eiger, p53 and loki function.

    T.Maezawa, K. Arita, S. Shigenobu and S. Kobayashi

    Develop, Growth and Differ., 51, 453-461.

  3. Expression of genes involved in sumoylation in the Drosophila germline.

    K. Hashiyama and S. Kobayashi

    Gene Expression Patterns, 9, 50-53.

2008年

  1. Identification of maternal RNAs encoding transcription factors required for germline-specific gene expression in Drosophila embryos.

    J. Yatsu, M. Hayashi, M. Mukai, K. Arita, S. Shigenobu and S. Kobayashi

    Int. J. Dev. Biol., 52, 913-923.

2007年

  1. Boss/Sev signaling from germline to soma restricts germline-stem-cell-niche formation in the anterior region of Drosophila male gonad.

    Y. Kitadate, S. Shigenobu, K. Arita and S. Kobayashi

    Dev. Cell, 13, 151-159. evaluated by Faculty of 1000 Biology
    Developmental Cell Paper Picks

  2. MAMO, a maternal BTB/POZ-Zn-finger protein enriched in germline progenitors is required for the production of functional eggs in Drosophila.

    M. Mukai, Y. Hayashi, Y. Kitadate, S. Shigenobu, K. Arita and S. Kobayashi

    Mech. Dev., 124, 570-583.

  3. Maternal Nanos represses hid/skl-dependent apoptosis to maintain the germ line in Drosophila embryos.

    K. Sato, Y. Hayashi, Y. Ninomiya, S. Shigenobu, K. Arita, M. Mukai and S. Kobayashi

    Proc. Natl. Acad. Sci. USA., 104, 7455-7460.

  4. Soma-dependent modulations contribute to divergence of rhomboid expression during evolution of Drosophila eggshell morphology.

    Y. Nakamura, T. Kagesawa, M. Nishikawa, Y. Hayashi, S. Kobayashi, T. Niimi and K. Matsuno

    Development, 134, 1529-1537.

2006年

  1. Identification and origin of the germline stem cells as revealed by the expression of nanos-related gene in planarians.

    K. Sato, N. Shibata, H. Orii, R. Amikura, T. Sakurai, K. Agata, S. Kobayashi and K. Watanabe

    Develop. Growth Differ., 48, 615-628.

  2. Molecular characterization of embryonic gonads by gene expression profiling in Drosophila melanogaster.

    S. Shigenobu, Y. Kitadate, C. Noda and S. Kobayashi

    Proc. Natl. Acad. Sci., USA., 103, 13728-13733.
    evaluated by Faculty of 1000 Biology

  3. Structural Basis for RNA Unwinding by the DEAD-Box Protein Drosophila Vasa.

    T. Sengoku, O. Nureki, A. Nakamura, S. Kobayashi and S. Yokoyama

    Cell, 125, 287-300.
    evaluated by Faculty of 1000 Biology

  4. Isolation of germline cells from Drosophila embryos by flow cytometry.

    S. Shigenobu, K. Arita, Y. Kitadate, C. Noda and S. Kobayashi

    Develop. Growth Differ., 48, 49-57.

  5. Expression of meiotic genes in the germline progenitors of Drosophila embryos.

    M. Mukai, Y. Kitadate, K. Arita, S. Shigenobu and S. Kobayashi

    Gene Expr. Patterns, 6, 256-266.

2005年

  1. Left-right asymmetry in the alimentary canal of the Drosophila embryo.

    M. Hayashi, H. Aono, J. Ishihara, S. Oshima, H. Yamamoto, Y. Makazato and S. Kobayashi

    Develop. Growth Differ., 47, 457-460.

  2. Role of mitochondrial ribosome-dependent translation in germline formation in Drosophila embryos.

    R. Amikura, K. Sato and S. Kobayashi

    Mech. Dev., 122, 1087-1093.

2004年

  1. Characterization of the isoforms of MOVO zinc finger protein, a mouse homologue of Drosophila ovo, as transcription factors.

    S. Unezaki, M. Nishizawa, E. Okuda-Ashitaka, Y. Masu, M. Mukai, S. Kobayashi, K. Sawamoto, H. Okano and S. Ito

    Gene, 336, 47-58.

  2. Intrinsic and extrinsic lipid phosphate phosphatase defines cell viability that promotes directional migration of Drosophila germ cells

    K. Hanyu-Nakamura, S. Kobayashi and A. Nakamura

    Development, 131, 4545-4553.

  3. Nanos suppresses somatic cell fate in Drosophila germline.

    Y. Hayashi, M. Hayashi and S. Kobayashi

    Proc. Natl. Acad. Sci. USA., 101, 10338-10342.

2003年

  1. Conserved role of nanos proteins in germ cell development.

    M. Tsuda, Y. Sasaoka, M. Kiso, K. Abe, S. Haraguchi, S. Kobayashi and Y. Saga

    Science, 301, 1239-1241.
    evaluated by Faculty of 1000 Biology

2002年

  1. A Role for the Drosophila Fragile X-Related Gene in Circadian Output.

    S. B. Inoue, M. Shimoda, I. Nishinokubi, M. C. Siomi, M. Okamura, A. Nakamura, S. Kobayashi, N. Ishida and H. Siomi

    Current Biology, 12, 1331-1335.

  2. Identification of a transcriptional regulatory region for germline-specific expression of vasa gene in Drosophila melanogaster.

    H. Sano, A. Nakamura and S. Kobayashi

    Mech. Dev., 112, 129-139.

2001年

  1. Maternal Nanos and Pumilio regulate zygotic vasa expression autonomously in the germline progenitors of Drosophila embryos.

    H. Sano, M. Mukai and S. Kobayashi

    Develop. Growth Differ., 43, 545-552.

  2. Me31B silences translation of oocyte-localizing RNAs through the formation of cytoplasmic RNP complex during Drosophila oogenesis.

    A. Nakamura, R. Amikura, K. Hanyu and S. Kobayashi

    Development, 128, 3233-3242.
    evaluated by Faculty of 1000 Biology

  3. Tudor protein is essential for the localization of mitochondrial ribosomal RNAs in polar granules in germ plasm of Drosophila embryos.

    R. Amikura, K. Hanyu, M. Kashikawa and S. Kobayashi

    Mech. Dev. 107,, 97-104.

  4. Presence of mitochondrial-type ribosomes outside mitochondria in germ plasm of Drosophila embryos..

    R. Amikura, M. Kashikawa, A. Nakamura and S. Kobayashi

    Proc. Natl. Acad. Sci. USA., 98, 9133-9138.

  5. Mitochondrial small ribosomal RNA is a component of germinal granules in Xenopus embryos.

    M. Kashikawa, R. Amikura and S. Kobayashi

    Mech. Dev., 101, 71-77.

2000年

  1. Expression and evolutionary conservation of nanos-related genes in Hydra.

    K. Mochizuki, H. Sano, S. Kobayashi, C. Nishiyama-Fujisawa and T. Fujisawa

    Develop. Genes and Evolution., 210, 591-602.

  2. Delocalization of polar plasm components caused by grandchildless mutations, gs(1)N26 and gs(1)N441 in Drosophila melanogaster.

    T. Iida and S. Kobayashi

    Develop. Growth Differ., 42, 53-60.

1999年

  1. Maternal Pumilio acts together with Nanos in germline development in Drosophila embryos.

    M. Asaoka-Taguchi, M. Yamada1, A. Nakamura, K. Hanyu and S. Kobayashi

    Nature Cell Biol., 1, 431-437.

  2. Spatial expression of Drosophila Glitatione-S-transferase-D1 in the alimentary canal is regulated by the overlying visceral mesoderm.

    A. Nakamura, I. Yoshizaki and S. Kobayashi

    Develop. Growth Differ., 41, 699-702.

  3. Asymmetrical distribution of mitochondrial rRNA into small micromeres of sea urchin embryos.

    M. Ogawa, R. Amikura, K. Akasaka, T. Kinoshita, S. Kobayashi, and H. Shimada

    Zoological Science, 16, 445-451.

  4. Delocalization of polar plasm components caused by grandchildless mutations, gs(1)N26 and gs(1)N441 in Drosophila melanogaster.

    T. Iida and S. Kobayashi

    Develop. Growth Differ., 42, 53-60.

  5. Induction of indora expression in pole cells by the mesoderm is required for female germ-line development in Drosophila melanogaster.

    M. Mukai, M. Kashikawa and S. Kobayashi

    Development, 126, 1023-1029.

  6. Localization of mitochondrial large ribosomal RNA in myoplasm of the early ascidian embryo.

    T. Oka, R. Amikura, S. Kobayashi, H. Yamamoto and H. Nishida

    Develop. Growth Differ., 41, 1-8.

1998年

  1. Maternal Nanos regulates zygotic gene expression in germline progenitors of Drosophila melanogaster.

    M. Asaoka, H. Sano and S. Kobayashi

    Mech. Dev., 73, 153-158.

  2. Localization of mitochondrial large ribosomal RNA in germ plasm of Xenopus embryos.

    S. Kobayashi, R. Amikura, and M. Mukai

    Current Biology, 8, 1117-1120.

  3. Essential role of mitochondrially-encoded large rRNA for germ line formation in Drosophila embryos.

    T. Iida and S. Kobayashi

    Proc. Natl. Acad. Sci. USA., 95, 11274-11278.

  4. Genomic organization of Drosophila Poly(ADP-ribose) Polymerase and distribution of Its mRNA during development.

    S. Hanai, M. Uchida, S. Kobayashi and M. Miwa and K. Uchida

    J. Biol. Chem., 273,11881-11886.

1997年

  1. Mdes: a mouse homologue of the Drosophila degenerative spermatocyte gene is expressed during mouse spermatogenesis.

    K. Endo, Y. Matsuda and S. Kobayashi

    Develop. Growth Differ., 39, 399-403.

1996年

  1. Requirement for noncoding RNA in Drosophila polar granules for germ cell establishment.

    A. Nakamura, R. Amikura, M. Mukai, S. Kobayashi and P. F. Lasko

    Science, 274, 2075-2079.

  2. MesP1: A novel basic helix-loop-helix protein expressed in the nascent mesodermal cells during mouse gastrulation.

    Y. Saga, N. Hata, S. Kobayashi, T. Magnuson, M. F. Seldin and M. Taketo

    Development, 122, 2769-2778.

  3. Degenerative spermatocyte, a novel gene encoding a transmembrane protein required for the initiation of meiosis in Drosophila spermatogenesis.

    K. Endo, T. Akiyama, S. Kobayashi and M. Okada

    Mol. Gen. Genet, 253, 157-165.

  4. Changes in subcellular localization of mtlrRNA outside mitochondria in oogenesis and early embryogenesis of Drosophila melanogaster.

    R. Amikura, S. Kobayashi , H. Saito and M. Okada

    Develop. Growth Differ., 38, 489-498.

  5. Regional expression of the transcript encoding sterol carrier protein X-related thiolase and its regulation by homeotic genes in the midgut of Drosophila embryos.

    T. Kitamura, S. Kobayashi and M. Okada

    Develop. Growth Differ., 38, 373-381.

  6. Essential role of the posterior morphogen nanos for germline development in Drosophila.

    S. Kobayashi, M. Yamada, M. Asaoka and T. Kitamura

    Nature, 380, 708-711.

1995年

  1. Analysis of biological function of poly(ADP-ribosyl) ation in Drosophila melanogaster.

    M. Miwa, S. Hanai, H. Masuda, Y. Koyama, T. Hayashi, Y. Yoshida, O. Poltroni, K. Maeshima, S. Kobayashi and M. Okada

    Biochemie., 77, 466-471.

  2. Mislocalization of oskar product in the anterior pole results in ectopic localization of mitochondrial large rRNA in Drosophila embryos.

    S. Kobayashi, R. Amikura, A. Nakamura, H. Saito and M. Okada

    Develop. Biol., 169, 384-386.

1995年

  1. A simplified and efficient method for in situ hybridization to whole Drosophila embryos, using electrophoresis for removing non-hybridized probes.

    S. Kobayashi, H. Saito and M. Okada

    Develop. Growth Differ., 36, 629-632.

1993年

  1. Nonradioactive in situ hybridization methods for Drosophila embryos detecting signals by immuno-silver or immunoperoxidase method for electron microscopy.

    R. Amikura, S. Kobayashi, K. Endo and M. Okada

    Develop. Growth Differ., 35, 617-623.

  2. Presence of mitochondrial large ribosomal RNA outside mitochondria in germ plasm of Drosophila melanogaster.

    S. Kobayashi, R. Amikura and M. Okada

    Science, 260, 1521-1524.

  3. Developmentally regulated splicing of the third intron of P-element in somatic tissues in Drosophila embryos.

    T. Kitamura, S. Kobayashi and M. Okada

    Develop. Growth Differ., 35, 67-73.

  4. Two types of pole cells present in the Drosophila embryo, one with and one without splicing activity for the third P-element intron.

    S. Kobayashi, T. Kitamura, H. Sasaki and M. Okada

    Development, 117, 885-893.

  5. A double staining technique using 5-bromo, 4-chloro-3-indolyl- gal and immunoperoxidase in whole Drosophila embryos.

    S. Kobayashi and M. Okada

    Biotechnic Histochemistry, 68, 237-239.

1990年

  1. Complete cDNA sequence encoding mitochondrial large ribosomal RNA of Drosophila melanogaster.

    S. Kobayashi and M. Okada

    Nucleic Acids Res., 18, 4592.

1989年

  1. Restoration of pole-cell-forming ability to u.v.-irradiated Drosophila embryos by injection of mitochondrial lrRNA.

    S. Kobayashi and M. Okada

    Development, 107, 733-742.

1988年

  1. Accumulation and distribution of poly(A)+RNA in oocytes and early embryos of Drosophila melanogaster.

    S. Kobayashi, H. Mizuno and M. Okada

    Develop. Growth Differ., 30, 251-260.

1986年

  1. Functions of maternal mRNA as a cytoplasmic factor responsible for pole cell formation in Drosophila embryos.

    S. Togashi, S. Kobayashi and M. Okada

    Develop. Biol., 118, 352-360.