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1 - 25 of 197 results for author:"Nishikawa S." in Literature citations

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Transmembrane topology and oligomeric structure of the high-affinity choline transporter.

Okuda T., Osawa C., Yamada H., Hayashi K., Nishikawa S., Ushio T., Kubo Y., Satou M., Ogawa H., Haga T.

J. Biol. Chem. 287:42826-42834(2012) · UniProtKB (1)

Phf14, a novel regulator of mesenchyme growth via platelet-derived growth factor (PDGF) receptor-alpha.

Kitagawa M., Takebe A., Ono Y., Imai T., Nakao K., Nishikawa S., Era T.

J. Biol. Chem. 287:27983-27996(2012) · Mapped (54)

Endothelialization and altered hematopoiesis by persistent Etv2 expression in mice.

Hayashi M., Pluchinotta M., Momiyama A., Tanaka Y., Nishikawa S., Kataoka H.

Exp. Hematol. 40:738-750.e11(2012) · Mapped (2)

The transcriptional programme controlled by Runx1 during early embryonic blood development.

Tanaka Y., Joshi A., Wilson N.K., Kinston S., Nishikawa S., Gottgens B.

Dev. Biol. 366:404-419(2012) · Mapped (2)

Dicer 1, ribonuclease type III modulates a reprogramming effect in colorectal cancer cells.

Dewi D.L., Ishii H., Haraguchi N., Nishikawa S., Kano Y., Fukusumi T., Ozaki M., Saito T., Sakai D., Satoh T. et al.

Int. J. Mol. Med. 29:1060-1064(2012) · Mapped (6)

Early ontogenic origin of the hematopoietic stem cell lineage.

Tanaka Y., Hayashi M., Kubota Y., Nagai H., Sheng G., Nishikawa S., Samokhvalov I.M.

Proc. Natl. Acad. Sci. U.S.A. 109:4515-4520(2012) · Mapped (8)

Hypoxia and TP53 deficiency for induced pluripotent stem cell-like properties in gastrointestinal cancer.

Hoshino H., Nagano H., Haraguchi N., Nishikawa S., Tomokuni A., Kano Y., Fukusumi T., Saito T., Ozaki M., Sakai D. et al.

Int. J. Oncol. 40:1423-1430(2012) · Mapped (32)

PKA/CREB signaling triggers initiation of endothelial and hematopoietic cell differentiation via Etv2 induction.

Yamamizu K., Matsunaga T., Katayama S., Kataoka H., Takayama N., Eto K., Nishikawa S., Yamashita J.K.

Stem Cells 30:687-696(2012) · Mapped (15)

Implantation serine proteinase 1 exhibits mixed substrate specificity that silences signaling via proteinase-activated receptors.

Sharma N., Kumar R., Renaux B., Saifeddine M., Nishikawa S., Mihara K., Ramachandran R., Hollenberg M.D., Rancourt D.E.

PLoS ONE 6:e27888-e27888(2011) · Mapped (1)

Molecular basis for Flk1 expression in hemato-cardiovascular progenitors in the mouse.

Ishitobi H., Wakamatsu A., Liu F., Azami T., Hamada M., Matsumoto K., Kataoka H., Kobayashi M., Choi K., Nishikawa S. et al.

Development 138:5357-5368(2011) · Mapped (5)

Etv2/ER71 induces vascular mesoderm from Flk1+PDGFRalpha+ primitive mesoderm.

Kataoka H., Hayashi M., Nakagawa R., Tanaka Y., Izumi N., Nishikawa S., Jakt M.L., Tarui H., Nishikawa S.

Blood 118:6975-6986(2011) · Mapped (31)

Functional characterization of melanocyte stem cells in hair follicles.

Nishikawa-Torikai S., Osawa M., Nishikawa S.

J. Invest. Dermatol. 131:2358-2367(2011) · Mapped (3)

Sema3E-PlexinD1 signaling selectively suppresses disoriented angiogenesis in ischemic retinopathy in mice.

Fukushima Y., Okada M., Kataoka H., Hirashima M., Yoshida Y., Mann F., Gomi F., Nishida K., Nishikawa S., Uemura A.

J. Clin. Invest. 121:1974-1985(2011) · Mapped (27)

Intrinsic transition of embryonic stem-cell differentiation into neural progenitors.

Kamiya D., Banno S., Sasai N., Ohgushi M., Inomata H., Watanabe K., Kawada M., Yakura R., Kiyonari H., Nakao K. et al.

Nature 470:503-509(2011) · Mapped (9)

Switch between large hand-over-hand and small inchworm-like steps in myosin VI.

Nishikawa S., Arimoto I., Ikezaki K., Sugawa M., Ueno H., Komori T., Iwane A.H., Yanagida T.

Cell 142:879-888(2010) · Mapped (3)

TLX activates MASH1 for induction of neuronal lineage commitment of adult hippocampal neuroprogenitors.

Elmi M., Matsumoto Y., Zeng Z.J., Lakshminarasimhan P., Yang W., Uemura A., Nishikawa S., Moshiri A., Tajima N., Agren H. et al.

Mol. Cell. Neurosci. 45:121-131(2010) · Mapped (6)

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)

LAP5 and LAP6 encode anther-specific proteins with similarity to chalcone synthase essential for pollen exine development in Arabidopsis.

Dobritsa A.A., Lei Z., Nishikawa S., Urbanczyk-Wochniak E., Huhman D.V., Preuss D., Sumner L.W.

Plant Physiol. 153:937-955(2010) · Mapped (2)

A vacuolar carboxypeptidase mutant of Arabidopsis thaliana is degraded by the ERAD pathway independently of its N-glycan.

Yamamoto M., Kawanabe M., Hayashi Y., Endo T., Nishikawa S.

Biochem. Biophys. Res. Commun. 393:384-389(2010)

BiP-mediated polar nuclei fusion is essential for the regulation of endosperm nuclei proliferation in Arabidopsis thaliana.

Maruyama D., Endo T., Nishikawa S.

Proc. Natl. Acad. Sci. U.S.A. 107:1684-1689(2010) · UniProtKB (2) · Mapped (1)

LAP3, a novel plant protein required for pollen development, is essential for proper exine formation.

Dobritsa A.A., Nishikawa S., Preuss D., Urbanczyk-Wochniak E., Sumner L.W., Hammond A., Carlson A.L., Swanson R.J.

Sex. Plant Reprod. 22:167-177(2009) · Mapped (1)

Lnk deletion reinforces the function of bone marrow progenitors in promoting neovascularization and astrogliosis following spinal cord injury.

Kamei N., Kwon S.M., Alev C., Ishikawa M., Yokoyama A., Nakanishi K., Yamada K., Horii M., Nishimura H., Takaki S. et al.

Stem Cells 28:365-375(2010) · Mapped (4)

Pressure-mediated hypertrophy and mechanical stretch induces IL-1 release and subsequent IGF-1 generation to maintain compensative hypertrophy by affecting Akt and JNK pathways.

Honsho S., Nishikawa S., Amano K., Zen K., Adachi Y., Kishita E., Matsui A., Katsume A., Yamaguchi S., Nishikawa K. et al.

Circ. Res. 105:1149-1158(2009) · Mapped (10)

Necdin restricts proliferation of hematopoietic stem cells during hematopoietic regeneration.

Kubota Y., Osawa M., Jakt L.M., Yoshikawa K., Nishikawa S.

Blood 114:4383-4392(2009) · Mapped (5)

Roles of Tom70 in import of presequence-containing mitochondrial proteins.

Yamamoto H., Fukui K., Takahashi H., Kitamura S., Shiota T., Terao K., Uchida M., Esaki M., Nishikawa S., Yoshihisa T. et al.

J. Biol. Chem. 284:31635-31646(2009) · Mapped (12)

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