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Items: 1 to 50 of 100

1.

Studying YAP-Mediated 3D Morphogenesis Using Fish Embryos and Human Spheroids.

Asaoka Y, Morita H, Furumoto H, Heisenberg CP, Furutani-Seiki M.

Methods Mol Biol. 2019;1893:167-181. doi: 10.1007/978-1-4939-8910-2_14.

PMID:
30565134
2.

Assessment of high-fat-diet-induced fatty liver in medaka.

Fujisawa K, Takami T, Fukui Y, Nagatomo T, Saeki I, Matsumoto T, Hidaka I, Yamamoto N, Okamoto T, Furutani-Seiki M, Sakaida I.

Biol Open. 2018 Nov 22;7(11). pii: bio031534. doi: 10.1242/bio.031534.

3.

Effect of histidine on sorafenib-induced vascular damage: Analysis using novel medaka fish model.

Shinagawa-Kobayashi Y, Kamimura K, Goto R, Ogawa K, Inoue R, Yokoo T, Sakai N, Nagoya T, Sakamaki A, Abe S, Sugitani S, Yanagi M, Fujisawa K, Nozawa Y, Koyama N, Nishina H, Furutani-Seiki M, Sakaida I, Terai S.

Biochem Biophys Res Commun. 2018 Feb 5;496(2):556-561. doi: 10.1016/j.bbrc.2018.01.057. Epub 2018 Jan 10.

PMID:
29331379
4.

YAP mediated mechano-homeostasis - conditioning 3D animal body shape.

Asaoka Y, Furutani-Seiki M.

Curr Opin Cell Biol. 2017 Dec;49:64-70. doi: 10.1016/j.ceb.2017.11.013. Epub 2017 Dec 15. Review.

PMID:
29253723
6.

YAP is essential for 3D organogenesis withstanding gravity.

Asaoka Y, Nishina H, Furutani-Seiki M.

Dev Growth Differ. 2017 Jan;59(1):52-58. doi: 10.1111/dgd.12338. Epub 2017 Jan 16. Review.

PMID:
28093734
7.

Enhancement of protein production via the strong DIT1 terminator and two RNA-binding proteins in Saccharomyces cerevisiae.

Ito Y, Kitagawa T, Yamanishi M, Katahira S, Izawa S, Irie K, Furutani-Seiki M, Matsuyama T.

Sci Rep. 2016 Nov 15;6:36997. doi: 10.1038/srep36997.

8.

SLC7 family transporters control the establishment of left-right asymmetry during organogenesis in medaka by activating mTOR signaling.

Asaoka Y, Nagai Y, Namae M, Furutani-Seiki M, Nishina H.

Biochem Biophys Res Commun. 2016 May 20;474(1):146-153. doi: 10.1016/j.bbrc.2016.04.087. Epub 2016 Apr 20.

PMID:
27105919
9.

Hippo pathway elements Co-localize with Occludin: A possible sensor system in pancreatic epithelial cells.

Cravo AS, Carter E, Erkan M, Harvey E, Furutani-Seiki M, Mrsny R.

Tissue Barriers. 2015 May 1;3(3):e1037948. doi: 10.1080/21688370.2015.1037948. eCollection 2015 Jul-Sep.

10.

Correction: Evidence for a Role of the Transcriptional Regulator Maid in Tumorigenesis and Aging.

Fujisawa K, Terai S, Matsumoto T, Takami T, Yamamoto N, Nishina H, Furutani-Seiki M, Sakaida I.

PLoS One. 2015 Aug 25;10(8):e0137156. doi: 10.1371/journal.pone.0137156. eCollection 2015. No abstract available.

11.

Evidence for a Role of the Transcriptional Regulator Maid in Tumorigenesis and Aging.

Fujisawa K, Terai S, Matsumoto T, Takami T, Yamamoto N, Nishina H, Furutani-Seiki M, Sakaida I.

PLoS One. 2015 Jun 24;10(6):e0129950. doi: 10.1371/journal.pone.0129950. eCollection 2015. Erratum in: PLoS One. 2015;10(8):e0137156.

12.

YAP is essential for tissue tension to ensure vertebrate 3D body shape.

Porazinski S, Wang H, Asaoka Y, Behrndt M, Miyamoto T, Morita H, Hata S, Sasaki T, Krens SFG, Osada Y, Asaka S, Momoi A, Linton S, Miesfeld JB, Link BA, Senga T, Shimizu N, Nagase H, Matsuura S, Bagby S, Kondoh H, Nishina H, Heisenberg CP, Furutani-Seiki M.

Nature. 2015 May 14;521(7551):217-221. doi: 10.1038/nature14215. Epub 2015 Mar 16.

13.

The Hippo pathway controls a switch between retinal progenitor cell proliferation and photoreceptor cell differentiation in zebrafish.

Asaoka Y, Hata S, Namae M, Furutani-Seiki M, Nishina H.

PLoS One. 2014 May 14;9(5):e97365. doi: 10.1371/journal.pone.0097365. eCollection 2014.

14.

Xmrk-induced melanoma progression is affected by Sdf1 signals through Cxcr7.

Liedtke D, Erhard I, Abe K, Furutani-Seiki M, Kondoh H, Schartl M.

Pigment Cell Melanoma Res. 2014 Mar;27(2):221-33. doi: 10.1111/pcmr.12188. Epub 2013 Nov 27.

PMID:
24279354
15.

YAP and TAZ regulate skin wound healing.

Lee MJ, Byun MR, Furutani-Seiki M, Hong JH, Jung HS.

J Invest Dermatol. 2014 Feb;134(2):518-525. doi: 10.1038/jid.2013.339. Epub 2013 Aug 9.

16.

The Hippo pathway: key interaction and catalytic domains in organ growth control, stem cell self-renewal and tissue regeneration.

Cherrett C, Furutani-Seiki M, Bagby S.

Essays Biochem. 2012;53:111-27. doi: 10.1042/bse0530111. Review.

PMID:
22928512
17.

A novel acetylation cycle of transcription co-activator Yes-associated protein that is downstream of Hippo pathway is triggered in response to SN2 alkylating agents.

Hata S, Hirayama J, Kajiho H, Nakagawa K, Hata Y, Katada T, Furutani-Seiki M, Nishina H.

J Biol Chem. 2012 Jun 22;287(26):22089-98. doi: 10.1074/jbc.M111.334714. Epub 2012 Apr 27.

18.
19.

In vivo imaging of tight junctions using claudin-EGFP transgenic medaka.

Miyamoto T, Furuse M, Furutani-Seiki M.

Methods Mol Biol. 2011;762:171-8. doi: 10.1007/978-1-61779-185-7_12.

PMID:
21717356
20.

Structural features and ligand binding properties of tandem WW domains from YAP and TAZ, nuclear effectors of the Hippo pathway.

Webb C, Upadhyay A, Giuntini F, Eggleston I, Furutani-Seiki M, Ishima R, Bagby S.

Biochemistry. 2011 Apr 26;50(16):3300-9. doi: 10.1021/bi2001888. Epub 2011 Mar 31.

PMID:
21417403
21.

Insufficiency of BUBR1, a mitotic spindle checkpoint regulator, causes impaired ciliogenesis in vertebrates.

Miyamoto T, Porazinski S, Wang H, Borovina A, Ciruna B, Shimizu A, Kajii T, Kikuchi A, Furutani-Seiki M, Matsuura S.

Hum Mol Genet. 2011 May 15;20(10):2058-70. doi: 10.1093/hmg/ddr090. Epub 2011 Mar 9.

PMID:
21389084
22.

Dechorionation of medaka embryos and cell transplantation for the generation of chimeras.

Porazinski SR, Wang H, Furutani-Seiki M.

J Vis Exp. 2010 Dec 22;(46). pii: 2055. doi: 10.3791/2055.

23.

Microinjection of medaka embryos for use as a model genetic organism.

Porazinski SR, Wang H, Furutani-Seiki M.

J Vis Exp. 2010 Dec 22;(46). pii: 1937. doi: 10.3791/1937.

24.

Negative regulation of wnt11 expression by Jnk signaling during zebrafish gastrulation.

Seo J, Asaoka Y, Nagai Y, Hirayama J, Yamasaki T, Namae M, Ohata S, Shimizu N, Negishi T, Kitagawa D, Kondoh H, Furutani-Seiki M, Penninger JM, Katada T, Nishina H.

J Cell Biochem. 2010 Jul 1;110(4):1022-37. doi: 10.1002/jcb.22616.

PMID:
20564202
25.

The LIM protein Ajuba is required for ciliogenesis and left-right axis determination in medaka.

Nagai Y, Asaoka Y, Namae M, Saito K, Momose H, Mitani H, Furutani-Seiki M, Katada T, Nishina H.

Biochem Biophys Res Commun. 2010 Jun 11;396(4):887-93. doi: 10.1016/j.bbrc.2010.05.017. Epub 2010 May 10.

PMID:
20457130
26.

Medaka as a model for human nonalcoholic steatohepatitis.

Matsumoto T, Terai S, Oishi T, Kuwashiro S, Fujisawa K, Yamamoto N, Fujita Y, Hamamoto Y, Furutani-Seiki M, Nishina H, Sakaida I.

Dis Model Mech. 2010 Jul-Aug;3(7-8):431-40. doi: 10.1242/dmm.002311. Epub 2010 Apr 6.

27.

Retinoic acid signaling positively regulates liver specification by inducing wnt2bb gene expression in medaka.

Negishi T, Nagai Y, Asaoka Y, Ohno M, Namae M, Mitani H, Sasaki T, Shimizu N, Terai S, Sakaida I, Kondoh H, Katada T, Furutani-Seiki M, Nishina H.

Hepatology. 2010 Mar;51(3):1037-45. doi: 10.1002/hep.23387.

PMID:
19957374
28.

Ethylnitrosourea-induced thymus-defective mutants identify roles of KIAA1440, TRRAP, and SKIV2L2 in teleost organ development.

Iwanami N, Okada M, Hoa VQ, Seo Y, Mitani H, Sasaki T, Shimizu N, Kondoh H, Furutani-Seiki M, Takahama Y.

Eur J Immunol. 2009 Sep;39(9):2606-16. doi: 10.1002/eji.200939362.

29.

Generation of transgenic medaka expressing claudin7-EGFP for imaging of tight junctions in living medaka embryos.

Miyamoto T, Momoi A, Kato K, Kondoh H, Tsukita S, Furuse M, Furutani-Seiki M.

Cell Tissue Res. 2009 Feb;335(2):465-71. doi: 10.1007/s00441-008-0726-1. Epub 2008 Nov 27.

PMID:
19037661
30.

WDR55 is a nucleolar modulator of ribosomal RNA synthesis, cell cycle progression, and teleost organ development.

Iwanami N, Higuchi T, Sasano Y, Fujiwara T, Hoa VQ, Okada M, Talukder SR, Kunimatsu S, Li J, Saito F, Bhattacharya C, Matin A, Sasaki T, Shimizu N, Mitani H, Himmelbauer H, Momoi A, Kondoh H, Furutani-Seiki M, Takahama Y.

PLoS Genet. 2008 Aug 29;4(8):e1000171. doi: 10.1371/journal.pgen.1000171. Erratum in: PLoS Genet. 2008 Sep;4(9). doi: 10.1371/annotation/6683988c-4647-4550-88e3-e8ba052f7916.

31.

Distinct contributions of CXCR4b and CXCR7/RDC1 receptor systems in regulation of PGC migration revealed by medaka mutants kazura and yanagi.

Sasado T, Yasuoka A, Abe K, Mitani H, Furutani-Seiki M, Tanaka M, Kondoh H.

Dev Biol. 2008 Aug 15;320(2):328-39. doi: 10.1016/j.ydbio.2008.05.544. Epub 2008 May 29.

32.

Proliferation of germ cells during gonadal sex differentiation in medaka: Insights from germ cell-depleted mutant zenzai.

Saito D, Morinaga C, Aoki Y, Nakamura S, Mitani H, Furutani-Seiki M, Kondoh H, Tanaka M.

Dev Biol. 2007 Oct 15;310(2):280-90. Epub 2007 Aug 7.

33.

Noninvasive intravital imaging of thymocyte dynamics in medaka.

Li J, Iwanami N, Hoa VQ, Furutani-Seiki M, Takahama Y.

J Immunol. 2007 Aug 1;179(3):1605-15.

34.

Radiation hybrid maps of Medaka chromosomes LG 12, 17, and 22.

Su F, Osada Y, Ekker M, Chevrette M, Shimizu A, Asakawa S, Shiohama A, Sasaki T, Shimizu N, Yamanaka T, Sasado T, Mitani H, Geisler R, Kondoh H, Furutani-Seiki M.

DNA Res. 2007 Jun 30;14(3):135-40. Epub 2007 Jun 25.

35.

The hotei mutation of medaka in the anti-Mullerian hormone receptor causes the dysregulation of germ cell and sexual development.

Morinaga C, Saito D, Nakamura S, Sasaki T, Asakawa S, Shimizu N, Mitani H, Furutani-Seiki M, Tanaka M, Kondoh H.

Proc Natl Acad Sci U S A. 2007 Jun 5;104(23):9691-6. Epub 2007 May 29.

36.

Conserved function of caspase-8 in apoptosis during bony fish evolution.

Sakata S, Yan Y, Satou Y, Momoi A, Ngo-Hazelett P, Nozaki M, Furutani-Seiki M, Postlethwait JH, Yonehara S, Sakamaki K.

Gene. 2007 Jul 1;396(1):134-48. Epub 2007 Mar 27.

37.

Generation of medaka gene knockout models by target-selected mutagenesis.

Taniguchi Y, Takeda S, Furutani-Seiki M, Kamei Y, Todo T, Sasado T, Deguchi T, Kondoh H, Mudde J, Yamazoe M, Hidaka M, Mitani H, Toyoda A, Sakaki Y, Plasterk RH, Cuppen E.

Genome Biol. 2006;7(12):R116.

38.

The DNA sequence of medaka chromosome LG22.

Sasaki T, Shimizu A, Ishikawa SK, Imai S, Asakawa S, Murayama Y, Khorasani MZ, Mitani H, Furutani-Seiki M, Kondoh H, Nanda I, Schmid M, Schartl M, Nonaka M, Takeda H, Hori H, Himmelbauer H, Shima A, Shimizu N.

Genomics. 2007 Jan;89(1):124-33. Epub 2006 Oct 24.

39.

Transgenic labeling of taste receptor cells in model fish under the control of the 5'-upstream region of medaka phospholipase C-beta 2 gene.

Aihara Y, Yasuoka A, Yoshida Y, Ohmoto M, Shimizu-Ibuka A, Misaka T, Furutani-Seiki M, Matsumoto I, Abe K.

Gene Expr Patterns. 2007 Jan;7(1-2):149-57. Epub 2006 Jun 28.

PMID:
16920036
40.

Comparative genomics of medaka and fugu.

Shimizu N, Sasaki T, Asakawa S, Shimizu A, Ishikawa SK, Imai S, Murayama Y, Himmelbauer H, Mitani H, Furutani-Seiki M, Kondoh H, Schartl M, Nonaka M, Takeda H, Hori H, Shima A.

Comp Biochem Physiol Part D Genomics Proteomics. 2006 Mar;1(1):6-12. doi: 10.1016/j.cbd.2005.10.008. Epub 2006 Feb 2.

PMID:
20483229
41.

Comparative genomic and expression analysis of group B1 sox genes in zebrafish indicates their diversification during vertebrate evolution.

Okuda Y, Yoda H, Uchikawa M, Furutani-Seiki M, Takeda H, Kondoh H, Kamachi Y.

Dev Dyn. 2006 Mar;235(3):811-25.

42.

Integrinalpha5-dependent fibronectin accumulation for maintenance of somite boundaries in zebrafish embryos.

Koshida S, Kishimoto Y, Ustumi H, Shimizu T, Furutani-Seiki M, Kondoh H, Takada S.

Dev Cell. 2005 Apr;8(4):587-98.

43.

Current status of medaka genetics and genomics. The Medaka Genome Initiative (MGI).

Schartl M, Nanda I, Kondo M, Schmid M, Asakawa S, Sasaki T, Shimizu N, Henrich T, Wittbrodt J, Furutani-Seiki M, Kondoh H, Himmelbauer H, Hong Y, Koga A, Nonaka M, Mitani H, Shima A.

Methods Cell Biol. 2004;77:173-99. No abstract available.

PMID:
15602912
44.

GSD: a genetic screen database.

Henrich T, Ramialison M, Segerdell E, Westerfield M, Furutani-Seiki M, Wittbrodt J, Kondoh H.

Mech Dev. 2004 Jul;121(7-8):959-63.

45.

Identification of radiation-sensitive mutants in the Medaka, Oryzias latipes.

Aizawa K, Mitani H, Kogure N, Shimada A, Hirose Y, Sasado T, Morinaga C, Yasuoka A, Yoda H, Watanabe T, Iwanami N, Kunimatsu S, Osakada M, Suwa H, Niwa K, Deguchi T, Hennrich T, Todo T, Shima A, Kondoh H, Furutani-Seiki M.

Mech Dev. 2004 Jul;121(7-8):895-902.

46.

The Tomita collection of medaka pigmentation mutants as a resource for understanding neural crest cell development.

Kelsh RN, Inoue C, Momoi A, Kondoh H, Furutani-Seiki M, Ozato K, Wakamatsu Y.

Mech Dev. 2004 Jul;121(7-8):841-59.

47.

Mutations affecting gonadal development in Medaka, Oryzias latipes.

Morinaga C, Tomonaga T, Sasado T, Suwa H, Niwa K, Yasuoka A, Henrich T, Watanabe T, Deguchi T, Yoda H, Hirose Y, Iwanami N, Kunimatsu S, Okamoto Y, Yamanaka T, Shinomiya A, Tanaka M, Kondoh H, Furutani-Seiki M.

Mech Dev. 2004 Jul;121(7-8):829-39.

48.

Mutations affecting early distribution of primordial germ cells in Medaka (Oryzias latipes) embryo.

Sasado T, Morinaga C, Niwa K, Shinomiya A, Yasuoka A, Suwa H, Hirose Y, Yoda H, Henrich T, Deguchi T, Iwanami N, Watanabe T, Kunimatsu S, Osakada M, Okamoto Y, Kota Y, Yamanaka T, Tanaka M, Kondoh H, Furutani-Seiki M.

Mech Dev. 2004 Jul;121(7-8):817-28.

49.

Mutations affecting liver development and function in Medaka, Oryzias latipes, screened by multiple criteria.

Watanabe T, Asaka S, Kitagawa D, Saito K, Kurashige R, Sasado T, Morinaga C, Suwa H, Niwa K, Henrich T, Hirose Y, Yasuoka A, Yoda H, Deguchi T, Iwanami N, Kunimatsu S, Osakada M, Loosli F, Quiring R, Carl M, Grabher C, Winkler S, Del Bene F, Wittbrodt J, Abe K, Takahama Y, Takahashi K, Katada T, Nishina H, Kondoh H, Furutani-Seiki M.

Mech Dev. 2004 Jul;121(7-8):791-802.

50.

Mutations affecting thymus organogenesis in Medaka, Oryzias latipes.

Iwanami N, Takahama Y, Kunimatsu S, Li J, Takei R, Ishikura Y, Suwa H, Niwa K, Sasado T, Morinaga C, Yasuoka A, Deguchi T, Hirose Y, Yoda H, Henrich T, Ohara O, Kondoh H, Furutani-Seiki M.

Mech Dev. 2004 Jul;121(7-8):779-89.

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