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1 - 25 of 79 results for author:"Hosokawa M." in Literature citations

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A role for Fkbp6 and the chaperone machinery in piRNA amplification and transposon silencing.

Xiol J., Cora E., Koglgruber R., Chuma S., Subramanian S., Hosokawa M., Reuter M., Yang Z., Berninger P., Palencia A. et al.

Mol. Cell 47:970-979(2012) · Mapped (26)

Loss of multidrug and toxin extrusion 1 (MATE1) is associated with metformin-induced lactic acidosis.

Toyama K., Yonezawa A., Masuda S., Osawa R., Hosokawa M., Fujimoto S., Inagaki N., Inui K., Katsura T.

Br. J. Pharmacol. 166:1183-1191(2012) · Mapped (7)

Human PSF concentrates DNA and stimulates duplex capture in DMC1-mediated homologous pairing.

Morozumi Y., Ino R., Takaku M., Hosokawa M., Chuma S., Kurumizaka H.

Nucleic Acids Res. 40:3031-3041(2012) · Mapped (9)

Miwi catalysis is required for piRNA amplification-independent LINE1 transposon silencing.

Reuter M., Berninger P., Chuma S., Shah H., Hosokawa M., Funaya C., Antony C., Sachidanandam R., Pillai R.S.

Nature 480:264-267(2011) · Mapped (1)

Tudor domain containing 7 (Tdrd7) is essential for dynamic ribonucleoprotein (RNP) remodeling of chromatoid bodies during spermatogenesis.

Tanaka T., Hosokawa M., Vagin V.V., Reuter M., Hayashi E., Mochizuki A.L., Kitamura K., Yamanaka H., Kondoh G., Okawa K. et al.

Proc. Natl. Acad. Sci. U.S.A. 108:10579-10584(2011) · Mapped (8)

Tissue culture-induced flower-color changes in Saintpaulia caused by excision of the transposon inserted in the flavonoid 3', 5' hydroxylase (F3'5'H) promoter.

Sato M., Kawabe T., Hosokawa M., Tatsuzawa F., Doi M.

Plant Cell Rep. 30:929-939(2011) · UniProtKB (6)

The effect of gastric inhibitory polypeptide on intestinal glucose absorption and intestinal motility in mice.

Ogawa E., Hosokawa M., Harada N., Yamane S., Hamasaki A., Toyoda K., Fujimoto S., Fujita Y., Fukuda K., Tsukiyama K. et al.

Biochem. Biophys. Res. Commun. 404:115-120(2011) · Mapped (6)

Preferential localization of prostamide/prostaglandin F synthase in myelin sheaths of the central nervous system.

Yoshikawa K., Takei S., Hasegawa-Ishii S., Chiba Y., Furukawa A., Kawamura N., Hosokawa M., Woodward D.F., Watanabe K., Shimada A.

Brain Res. 1367:22-32(2011) · UniProtKB (1) · Mapped (9)

The critical role of neutral cholesterol ester hydrolase 1 in cholesterol removal from human macrophages.

Igarashi M., Osuga J., Uozaki H., Sekiya M., Nagashima S., Takahashi M., Takase S., Takanashi M., Li Y., Ohta K. et al.

Circ. Res. 107:1387-1395(2010) · Mapped (3)

Recommended nomenclature for five mammalian carboxylesterase gene families: human, mouse, and rat genes and proteins.

Holmes R.S., Wright M.W., Laulederkind S.J., Cox L.A., Hosokawa M., Imai T., Ishibashi S., Lehner R., Miyazaki M., Perkins E.J. et al.

Mamm. Genome 21:427-441(2010) · Mapped (66)

Association of carboxylesterase 1A genotypes with irinotecan pharmacokinetics in Japanese cancer patients.

Sai K., Saito Y., Tatewaki N., Hosokawa M., Kaniwa N., Nishimaki-Mogami T., Naito M., Sawada J., Shirao K., Hamaguchi T. et al.

Br J Clin Pharmacol 70:222-233(2010) · Mapped (15)

Fucoxanthin regulates adipocytokine mRNA expression in white adipose tissue of diabetic/obese KK-Ay mice.

Hosokawa M., Miyashita T., Nishikawa S., Emi S., Tsukui T., Beppu F., Okada T., Miyashita K.

Arch. Biochem. Biophys. 504:17-25(2010) · Mapped (3)

Metformin suppresses hepatic gluconeogenesis and lowers fasting blood glucose levels through reactive nitrogen species in mice.

Fujita Y., Hosokawa M., Fujimoto S., Mukai E., Abudukadier A., Obara A., Ogura M., Nakamura Y., Toyoda K., Nagashima K. et al.

Diabetologia 53:1472-1481(2010) · Mapped (3)

The TDRD9-MIWI2 complex is essential for piRNA-mediated retrotransposon silencing in the mouse male germline.

Shoji M., Tanaka T., Hosokawa M., Reuter M., Stark A., Kato Y., Kondoh G., Okawa K., Chujo T., Suzuki T. et al.

Dev. Cell 17:775-787(2009) · UniProtKB (1) · Mapped (61)

Heterozygous variants of multidrug and toxin extrusions (MATE1 and MATE2-K) have little influence on the disposition of metformin in diabetic patients.

Toyama K., Yonezawa A., Tsuda M., Masuda S., Yano I., Terada T., Osawa R., Katsura T., Hosokawa M., Fujimoto S. et al.

Pharmacogenet. Genomics 20:135-138(2010) · Mapped (8)

A genome-wide association study identifies three new susceptibility loci for ulcerative colitis in the Japanese population.

Asano K., Matsushita T., Umeno J., Hosono N., Takahashi A., Kawaguchi T., Matsumoto T., Matsui T., Kakuta Y., Kinouchi Y. et al.

Nat. Genet. 41:1325-1329(2009) · Mapped (22)

A novel method, digital genome scanning detects KRAS gene amplification in gastric cancers: involvement of overexpressed wild-type KRAS in downstream signaling and cancer cell growth.

Mita H., Toyota M., Aoki F., Akashi H., Maruyama R., Sasaki Y., Suzuki H., Idogawa M., Kashima L., Yanagihara K. et al.

BMC Cancer 9:198-198(2009) · Mapped (7)

Genetic variants in surfactant, pulmonary-associated protein D (SFTPD) and Japanese susceptibility to ulcerative colitis.

Tanaka M., Arimura Y., Goto A., Hosokawa M., Nagaishi K., Yamashita K., Yamamoto H., Sonoda T., Nomura M., Motoya S. et al.

Inflamm. Bowel Dis. 15:918-925(2009) · Mapped (1)

Identification of C2orf18, termed ANT2BP (ANT2-binding protein), as one of the key molecules involved in pancreatic carcinogenesis.

Kashiwaya K., Hosokawa M., Eguchi H., Ohigashi H., Ishikawa O., Shinomura Y., Nakamura Y., Nakagawa H.

Cancer Sci. 100:457-464(2009) · UniProtKB (1) · Mapped (3)

Crystallization and structural analysis of cytochrome c(6) from the diatom Phaeodactylum tricornutum at 1.5 A resolution.

Akazaki H., Kawai F., Hosokawa M., Hama T., Chida H., Hirano T., Lim B.K., Sakurai N., Hakamata W., Park S.Y. et al.

Biosci. Biotechnol. Biochem. 73:189-191(2009) · UniProtKB (1)

Involvement of epithelial cell transforming sequence-2 oncoantigen in lung and esophageal cancer progression.

Hirata D., Yamabuki T., Miki D., Ito T., Tsuchiya E., Fujita M., Hosokawa M., Chayama K., Nakamura Y., Daigo Y.

Clin. Cancer Res. 15:256-266(2009) · Mapped (4)

Over-expression of cysteine proteinase inhibitor cystatin 6 promotes pancreatic cancer growth.

Hosokawa M., Kashiwaya K., Eguchi H., Ohigashi H., Ishikawa O., Furihata M., Shinomura Y., Imai K., Nakamura Y., Nakagawa H.

Cancer Sci. 99:1626-1632(2008) · Mapped (2)

Functional polymorphisms in carboxylesterase1A2 (CES1A2) gene involves specific protein 1 (Sp1) binding sites.

Yoshimura M., Kimura T., Ishii M., Ishii K., Matsuura T., Geshi E., Hosokawa M., Muramatsu M.

Biochem. Biophys. Res. Commun. 369:939-942(2008) · Mapped (11)

Structural organization and characterization of the regulatory element of the human carboxylesterase (CES1A1 and CES1A2) genes.

Hosokawa M., Furihata T., Yaginuma Y., Yamamoto N., Watanabe N., Tsukada E., Ohhata Y., Kobayashi K., Satoh T., Chiba K.

Drug Metab. Pharmacokinet. 23:73-84(2008) · Mapped (9)

Cancer-testis antigen lymphocyte antigen 6 complex locus K is a serologic biomarker and a therapeutic target for lung and esophageal carcinomas.

Ishikawa N., Takano A., Yasui W., Inai K., Nishimura H., Ito H., Miyagi Y., Nakayama H., Fujita M., Hosokawa M. et al.

Cancer Res. 67:11601-11611(2007) · UniProtKB (1)

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