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전체 논문

555

71

MTA1 is a novel regulator of autophagy that induces tamoxifen resistance in breast cancer cells.
Lee MH, Koh D, Na H, Ka NL, Kim S, Kim HJ, Hong S, Shin YK, Seong JK, Lee MO
Autophagy., 2017.11

72

PDX-MI: Minimal Information for Patient-Derived Tumor Xenograft Models.
Meehan TF, Conte N, Goldstein T, Inghirami G, Murakami MA, Brabetz S, Gu Z, Wiser JA, Dunn P, Begley DA, Krupke DM, Bertotti A, Bruna A, Brush MH, Byrne AT, Caldas C, Christie AL, Clark DA, Dowst H, Dry JR, Doroshow JH, Duchamp O, Evrard YA, Ferretti S, Frese KK, Goodwin NC, Greenawalt D, Haendel MA, Hermans E, Houghton PJ, Jonkers J, Kemper K, Khor TO, Lewis MT, Lloyd KCK, Mason J, Medico E, Neuhauser SB, Olson JM, Peeper DS, Rueda OM, Seong JK, Trusolino L, Vinolo E, Wechsler-Reya RJ, Weinstock DM, Welm A, Weroha SJ, Amant F, Pfister SM, Kool M, Parkinson H, Butte AJ, Bult CJ
Cancer Res., 2017.11

73

Pyridoxine improves hippocampal cognitive function via increases of serotonin turnover and tyrosine hydroxylase, and its association with CB1 cannabinoid receptor-interacting protein and the CB1 cannabinoid receptor pathway.
Jung HY, Kim DW, Nam SM, Kim JW, Chung JY, Won MH, Seong JK, Yoon YS, Yoo DY, Hwang IK
Biochim Biophys Acta., 2017.09

74

Daurinol blocks breast and lung cancer metastasis and development by inhibition of focal adhesion kinase (FAK).
Woo JK, Jung HJ, Park JY, Kang JH, Lee BI, Shin D, Nho CW, Cho SY, Seong JK, Oh SH
Oncotarget., 2017.07

75

RORα controls hepatic lipid homeostasis via negative regulation of PPARγ transcriptional network.
Kim K, Boo K, Yu YS, Oh SK, Kim H, Jeon Y, Bhin J, Hwang D, Kim KI, Lee JS, Im SS, Yoon SG, Kim IY, Seong JK, Lee H, Fang S, Baek SH
Nat Commun., 2017.07

76

Pharbitis Nil (PN) induces apoptosis and autophagy in lung cancer cells and autophagy Inhibition enhances PN-induced apoptosis.
Jung HJ, Kang JH, Choi S, Son YK, Lee KR, Seong JK, Kim SY, Oh SH
J Ethnopharmacol., 2017.08

77

Palmitic Acid-BSA enhances Amyloid-β production through GPR40-mediated dual pathways in neuronal cells: Involvement of the Akt/mTOR/HIF-1α and Akt/NF-κB pathways.
Kim JY, Lee HJ, Lee SJ, Jung YH, Yoo DY, Hwang IK, Seong JK, Ryu JM, Han HJ
Sci Rep., 2017.06

78

Disease model discovery from 3,328 gene knockouts by The International Mouse Phenotyping Consortium.
Meehan TF, Conte N, West DB, Jacobsen JO, Mason J, Warren J, Chen CK, Tudose I, Relac M, Matthews P, Karp N, Santos L, Fiegel T, Ring N, Westerberg H, Greenaway S, Sneddon D, Morgan H, Codner GF, Stewart ME, Brown J, Horner N; International Mouse Phenotyping Consortium, Haendel M, Washington N, Mungall CJ, Reynolds CL, Gallegos J, Gailus-Durner V, Sorg T, Pavlovic G, Bower LR, Moore M, Morse I, Gao X, Tocchini-Valentini GP, Obata Y, Cho SY, Seong JK, Seavitt J, Beaudet AL, Dickinson ME, Herault Y, Wurst W, de Angelis MH, Lloyd KCK, Flenniken AM, Nutter LMJ, Newbigging S, McKerlie C, Justice MJ, Murray SA, Svenson KL, Braun RE, White JK, Bradley A, Flicek P, Wells S, Skarnes WC, Adams DJ, Parkinson H, Mallon AM, Brown SDM, Smedley D
Nat Genet., 2017.08

79

Lipidomic analysis of skeletal muscle tissues of p53 knockout mice by nUPLC-ESI-MS/MS.
Park SM, Byeon SK, Lee H, Sung H, Kim IY, Seong JK, Moon MH
Sci Rep., 2017.06

80

Proteomic approach to detect changes in hippocampal protein levels in an animal model of type 2 diabetes.
Nam SM, Yoo DY, Kwon HJ, Kim JW, Jung HY, Kim DW, Han HJ, Won MH, Seong JK, Hwang IK, Yoon YS
Neurochem Int, 2017.09