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TypeTitleAuthor(s)YearViews
A region at the C-terminus of the Escherichia coli global transcription factor FNR negatively mediates its degradation by the ClpXP proteasePan, Q; Shan, Y; Yan, A201263
 
Covalently linking the Escherichia coli global anaerobic regulator FNR in tandem allows it to function as an oxygen stable dimerShan, Y; Pan, Q; Liu, J; Huang, F; Sun, H; Nishino, K; Yan, A2012126
 
SOAPdenovo2: an empirically improved memory-efficient short-read de novo assemblerLuo, R; Liu, B; Xie, Y; Li, Z; Huang, W; Yuan, J; He, G; Chen, Y; Pan, Q; Liu, Y; Tang, J; Wu, G; Zhang, H; Shi, Y; Liu, Y; Yu, C; Wang, B; Lu, Y; Han, C; Cheung, DWL; Yiu, SM; Peng, S; Zhu, X; Liu, G; Liao, X; Li, Y; Yang, H; Wang, J; Lam, TW; Wang, J201248
 
Molecular engineering of the global transcription regulator FNR to generate E. coli variants with altered capability in sensing and responding to environmental O2Pan, Q; Yan, A201064
 
Synthesis, structure and magnetic property of a new organo-templated mixed-valent iron(ii, iii) borophosphateYang, W; Li, J; Pan, Q; Xing, H; Chen, Y; Yu, J; Xu, R2009127
 
The N- and C- terminal regions of E. coli global transcription factor FNR participate in regulation of FNR protein levelsYan, A; Pan, Q2009189
 
Effect of cryopreservation on metabolic activities of hepatocytesPan, Q; Chen, Y; Mei, L; Dai, R-K2008119
 
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