1 - 25 of 36 results for author:"Takemori H." in Literature citations
Results Customize
› Repeat search in UniProtKB (34)
| Involvement of SIK3 in glucose and lipid homeostasis in mice. Uebi T., Itoh Y., Hatano O., Kumagai A., Sanosaka M., Sasaki T., Sasagawa S., Doi J., Tatsumi K., Mitamura K. et al. PLoS ONE 7:e37803-e37803(2012) · Mapped (6) |
| Novel repressor regulates insulin sensitivity through interaction with Foxo1. Nakae J., Cao Y., Hakuno F., Takemori H., Kawano Y., Sekioka R., Abe T., Kiyonari H., Tanaka T., Sakai J. et al. |
| SIK3 is essential for chondrocyte hypertrophy during skeletal development in mice. Sasagawa S., Takemori H., Uebi T., Ikegami D., Hiramatsu K., Ikegawa S., Yoshikawa H., Tsumaki N. Development 139:1153-1163(2012) · Mapped (88) |
| Carbohydrate metabolism is perturbed in peroxisome-deficient hepatocytes due to mitochondrial dysfunction, AMP-activated protein kinase (AMPK) activation, and peroxisome proliferator-activated receptor gamma coactivator 1alpha (PGC-1alpha) suppression. Peeters A., Fraisl P., van den Berg S., Ver Loren van Themaat E., Van Kampen A., Rider M.H., Takemori H., van Dijk K.W., Van Veldhoven P.P., Carmeliet P. et al. J. Biol. Chem. 286:42162-42179(2011) · Mapped (11) |
| Salt-inducible kinase 1 is present in lung alveolar epithelial cells and regulates active sodium transport. Eneling K., Chen J., Welch L.C., Takemori H., Sznajder J.I., Bertorello A.M. Biochem. Biophys. Res. Commun. 409:28-33(2011) · Mapped (4) |
| SIK2 is a key regulator for neuronal survival after ischemia via TORC1-CREB. Sasaki T., Takemori H., Yagita Y., Terasaki Y., Uebi T., Horike N., Takagi H., Susumu T., Teraoka H., Kusano K. et al. Neuron 69:106-119(2011) · Mapped (15) |
| Downregulation of SIK2 expression promotes the melanogenic program in mice. Horike N., Kumagai A., Shimono Y., Onishi T., Itoh Y., Sasaki T., Kitagawa K., Hatano O., Takagi H., Susumu T. et al. Pigment Cell Melanoma Res 23:809-819(2010) · Mapped (4) |
| Involvement of SIK2/TORC2 signaling cascade in the regulation of insulin-induced PGC-1alpha and UCP-1 gene expression in brown adipocytes. Muraoka M., Fukushima A., Viengchareun S., Lombes M., Kishi F., Miyauchi A., Kanematsu M., Doi J., Kajimura J., Nakai R. et al. Am. J. Physiol. Endocrinol. Metab. 296:E1430-9(2009) · Mapped (24) |
| TORC1 regulates activity-dependent CREB-target gene transcription and dendritic growth of developing cortical neurons. Li S., Zhang C., Takemori H., Zhou Y., Xiong Z.Q. J. Neurosci. 29:2334-2343(2009) · UniProtKB (2) |
| Inactivation of HDAC5 by SIK1 in AICAR-treated C2C12 myoblasts. Takemori H., Katoh Hashimoto Y., Nakae J., Olson E.N., Okamoto M. |
| Importance of autophosphorylation at Ser186 in the A-loop of salt inducible kinase 1 for its sustained kinase activity. Hashimoto Y.K., Satoh T., Okamoto M., Takemori H. J. Cell. Biochem. 104:1724-1739(2008) · UniProtKB (2) |
| SIK2 can be activated by deprivation of nutrition and it inhibits expression of lipogenic genes in adipocytes. Du J., Chen Q., Takemori H., Xu H. Obesity (Silver Spring) 16:531-538(2008) · Mapped (4) |
| SIK1 is part of a cell sodium-sensing network that regulates active sodium transport through a calcium-dependent process. Sjostrom M., Stenstrom K., Eneling K., Zwiller J., Katz A.I., Takemori H., Bertorello A.M. Proc. Natl. Acad. Sci. U.S.A. 104:16922-16927(2007) · UniProtKB (3) · Mapped (1) |
| TORC-SIK cascade regulates CREB activity through the basic leucine zipper domain. Takemori H., Kajimura J., Okamoto M. FEBS J. 274:3202-3209(2007) · Mapped (12) |
| SIK1 is a class II HDAC kinase that promotes survival of skeletal myocytes. Berdeaux R., Goebel N., Banaszynski L., Takemori H., Wandless T., Shelton G.D., Montminy M. |
| Dephosphorylation of TORC initiates expression of the StAR gene. Takemori H., Kanematsu M., Kajimura J., Hatano O., Katoh Y., Lin X.-Z., Min L., Yamazaki T., Doi J., Okamoto M. Mol. Cell. Endocrinol. 265:196-204(2007) · UniProtKB (3) |
| Silencing the constitutive active transcription factor CREB by the LKB1-SIK signaling cascade. Katoh Y., Takemori H., Lin X.-Z., Tamura M., Muraoka M., Satoh T., Tsuchiya Y., Min L., Doi J., Miyauchi A. et al. |
| The CREB coactivator TORC2 is a key regulator of fasting glucose metabolism. Koo S.-H., Flechner L., Qi L., Zhang X., Screaton R.A., Jeffries S., Hedrick S., Xu W., Boussouar F., Brindle P. et al. |
| Manganese superoxide dismutase activity in the rat adrenal. Raza F.S., Okamoto M., Takemori H., Vinson G.P. J. Endocrinol. 184:77-84(2005) · Mapped (2) |
| Salt-inducible kinase-1 represses cAMP response element-binding protein activity both in the nucleus and in the cytoplasm. Katoh Y., Takemori H., Min L., Muraoka M., Doi J., Horike N., Okamoto M. Eur. J. Biochem. 271:4307-4319(2004) · UniProtKB (1) · Mapped (13) |
| The CREB coactivator TORC2 functions as a calcium- and cAMP-sensitive coincidence detector. Screaton R.A., Conkright M.D., Katoh Y., Best J.L., Canettieri G., Jeffries S., Guzman E., Niessen S., Yates J.R. III, Takemori H. et al. Cell 119:61-74(2004) · UniProtKB (7) |
| Adipose-specific expression, phosphorylation of Ser794 in insulin receptor substrate-1, and activation in diabetic animals of salt-inducible kinase-2. Horike N., Takemori H., Katoh Y., Doi J., Min L., Asano T., Sun X.J., Yamamoto H., Kasayama S., Muraoka M. et al. J. Biol. Chem. 278:18440-18447(2003) · UniProtKB (2) · Mapped (8) |
| Identification of the nuclear localization domain of salt-inducible kinase. Katoh Y., Takemori H., Doi J., Okamoto M. Endocr. Res. 28:315-318(2002) · Mapped (1) |
| ACTH-induced nucleocytoplasmic translocation of salt-inducible kinase. Implication in the protein kinase A-activated gene transcription in mouse adrenocortical tumor cells. Takemori H., Katoh Y., Horike N., Doi J., Okamoto M. J. Biol. Chem. 277:42334-42343(2002) · UniProtKB (1) · Mapped (7) |
| Salt-inducible kinase represses cAMP-dependent protein kinase-mediated activation of human cholesterol side chain cleavage cytochrome P450 promoter through the CREB basic leucine zipper domain. Doi J., Takemori H., Lin X.Z., Horike N., Katoh Y., Okamoto M. J. Biol. Chem. 277:15629-15637(2002) · Mapped (6) |

