화학공학소재연구정보센터
검색결과 : 11건
No. Article
1 Insights into the limitations of transient expression systems for the functional study of p53 acetylation site and oncogenic mutants
Bruer M, Reinhardt D, Welte K, Thakur BK
Biochemical and Biophysical Research Communications, 524(4), 990, 2020
2 SOX9 is controlled by the BRD4 inhibitor JQ1 via multiple regulation mechanisms
Hong SH, You JS
Biochemical and Biophysical Research Communications, 511(4), 746, 2019
3 The histone acetyltransferase Mst2 sustains the biological control potential of a fungal insect pathogen through transcriptional regulation
Wang JJ, Cai Q, Qiu L, Ying SH, Feng MG
Applied Microbiology and Biotechnology, 102(3), 1343, 2018
4 Aspirin increases mitochondrial fatty acid oxidation
Uppala R, Dudiak B, Beck ME, Bharathi SS, Zhang YX, Stolz DB, Goetzman ES
Biochemical and Biophysical Research Communications, 482(2), 346, 2017
5 Global proteomic analysis of lysine acetylation in zebrafish (Danio rerio) embryos
Kwon OK, Kim S, Lee S
Electrophoresis, 37(23-24), 3137, 2016
6 Characterization of novel mechanisms for steatosis from global protein hyperacetylation in ethanol-induced mouse hepatocytes
Kim SJ, Kwon OK, Ki SH, Jeong TC, Lee S
Biochemical and Biophysical Research Communications, 463(4), 832, 2015
7 Proteomics Analysis of Cellular Proteins Co-Immunoprecipitated with Nucleoprotein of Influenza A Virus (H7N9)
Sun NN, Sun WC, Li SM, Yang JB, Yang LF, Quan GH, Gao X, Wang ZJ, Cheng X, Li ZH, Peng QS, Liu N
International Journal of Molecular Sciences, 16(11), 25982, 2015
8 Differential roles of Sirt1 in HIF-1 alpha and HIF-2 alpha mediated hypoxic responses
Yoon H, Shin SH, Shin DH, Chun YS, Park JW
Biochemical and Biophysical Research Communications, 444(1), 36, 2014
9 Dynamics and regulation of lysine-acetylation during one-cell stage mouse embryos
Matsubara K, Lee AR, Kishigami S, Ito A, Matsumoto K, Chi HF, Nishino N, Yoshida M, Hosoi Y
Biochemical and Biophysical Research Communications, 434(1), 1, 2013
10 Mitochondrial localization of fission yeast manganese superoxide dismutase is required for its lysine acetylation and for cellular stress resistance and respiratory growth
Takahashi H, Suzuki T, Shirai A, Matsuyama A, Dohmae N, Yoshida M
Biochemical and Biophysical Research Communications, 406(1), 42, 2011