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  1. 1.   Noncoding Y RNAs regulate the levels, subcellular distribution and protein interactions of their Ro60 autoantigen partner
  2. Leng,Yuanyuan; Sim,Soyeong; Magidson,Valentin; Wolin,Sandra
  3. Nucleic acids research. 2020, JUL 9; 48(12): 6919-6930.
  1. 2.   A Systems Chemoproteomic Analysis of Acyl-CoA/Protein Interaction Networks
  2. Levy, Michaella J; Montgomery, David C; Sardiu, Mihaela E; Montano,Jose; Bergholtz, Sarah E; Nance,Kellie; Thorpe,Abbey; Fox,Stephen; Lin, Qishan; Andresson,Thorkell; Florens, Laurence; Washburn, Michael P; Meier,Jordan
  3. Cell chemical biology. 2020, MAR 19; 27(3): 322-+.
  1. 3.   Metabolic Regulation of the Epitranscriptome
  2. Thomas,Justin; Batista, Pedro J.; Meier,Jordan
  3. ACS CHEMICAL BIOLOGY. 2019, MAR; 14(3): 316-324.
  1. 4.   Acetylation of Cytidine in mRNA Promotes Translation Efficiency
  2. Arango, Daniel; Sturgill, David; Alhusaini, Najwa; Dillman, Allissa A.; Sweet, Thomas J.; Hanson, Gavin; Hosogane, Masaki; Sinclair, Wilson R.; Nanan, Kyster K.; Mandler, Mariana D.; Fox,Stephen; Zengeya, Thomas T.; Andresson,Thorkell; Meier,Jordan; Coller, Jeffery; Oberdoerffer, Shalini
  3. CELL. 2018, Dec 13; 175(7): 1872-1886.e24.
  1. 5.   Growth rate regulation in Escherichia coli
  2. Jin, D. J.; Cagliero, C.; Zhou, Y. N.
  3. FEMS Microbiology Reviews. 2012, Mar; 36(2): 269-287.
  1. 6.   Structural genomic changes during mammalian ontogeny: a new dimension
  2. Shiao, Y. H.; Anderson, L. M.
  3. Epigenomics. 2012, Feb; 4(1): 1-4.
  1. 7.   Structural basis for RNA recognition by NusB and NusE in the initiation of transcription antitermination
  2. Stagno, J. R.; Altieri, A. S.; Bubunenko, M.; Tarasov, S. G.; Li, J.; Court, D. L.; Byrd, R. A.; Ji, X. H.
  3. Nucleic Acids Research. 2011, Sep; 39(17): 7803-7815.
  1. 8.   Ontogeny-Driven rDNA Rearrangement, Methylation, and Transcription, and Paternal Influence
  2. Shiao, Y. H.; Leighty, R. M.; Wang, C. J.; Ge, X.; Crawford, E. B.; Spurrier, J. M.; McCann, S. D.; Fields, J. R.; Fornwald, L.; Riffle, L.; Driver, C.; Quinones, O. A.; Wilson, R. E.; Kasprzak, K. S.; Travlos, G. S.; Alvord, W. G.; Anderson, L. M.
  3. Plos One. 2011, Jul; 6(7): 10.
  1. 9.   Impact of synchrotron radiation on macromolecular crystallography: a personal view
  2. Dauter, Z.; Jaskolski, M.; Wlodawer, A.
  3. Journal of Synchrotron Radiation. 2010, Jul; 17: 433-444.
  1. 10.   Structural Basis for Binding of RNA and Cofactor by a KsgA Methyltransferase
  2. Tu, C.; Tropea, J. E.; Austin, B. P.; Court, D. L.; Waugh, D. S.; Ji, X. H.
  3. Structure. 2009 17(3): 374-385.
  1. 11.   Transcription profiling of the stringent response in Escherichia coli
  2. Durfee, T.; Hansen, A. M.; Zhi, H.; Blattner, F. R.; Jin, D. J.
  3. Journal of Bacteriology. 2008 190(3): 1084-1096.
  1. 12.   Structural and Functional Analysis of the E. coli NusB-S10 Transcription Antitermination Complex
  2. Luo, X.; Hsiao, H. H.; Bubunenko, M.; Weber, G.; Court, D. L.; Gottesman, M. E.; Urlaub, H.; Wahl, M. C.
  3. Molecular Cell. 2008 32(6): 791-802.
  1. 13.   Induction of apoptosis in human cancer cells by candidaspongiolide, a novel sponge polyketide
  2. Trisciuoglio, D.; Uranchimeg, B.; Cardellina, J. H.; Meragelman, T. L.; Matsunaga, S.; Fusetani, N.; Del Bufalo, D.; Shoemaker, R. H.; Melillo, G.
  3. Journal of the National Cancer Institute. 2008 100(17): 1233-1246.
  1. 14.   Biomedicinals from the phytosymbionts of marine invertebrates: A molecular approach
  2. Dunlap, W. C.; Battershill, C. N.; Liptrot, C. H.; Cobb, R. E.; Bourne, D. G.; Jaspars, M.; Long, P. F.; Newman, D. J.
  3. Methods. 2007, Aug; 42(4): 358-376.
  1. 15.   The structure of free L11 and functional dynamics of L11 in free, L11-rRNA(58 nt) binary and L11-rRNA(58 nt)-thiostrepton ternary complexes
  2. Lee, D.; Walsh, J. D.; Yu, P.; Markus, M. A.; Choli-Papadopoulou, T.; Schwieters, C. D.; Krueger, S.; Draper, D. E.; Wang, Y. X.
  3. Journal of Molecular Biology. 2007, Apr; 367(4): 1007-1022.
  1. 16.   Graphical exploratory data analysis of RNA secondary structure dynamics predicted by the massively parallel genetic algorithm
  2. Shapiro, B. A.; Kasprzak, W.; Grunewald, C.; Aman, J.
  3. Journal of Molecular Graphics & Modelling. 2006, Dec; 25(4): 514-531.
  1. 17.   Structural and dynamical classification of RNA single-base bulges for nanostructure design
  2. Hastings, W. A.; Yingling, Y. G.; Chirikjian, G. S.; Shapiro, B. A.
  3. Journal of Computational and Theoretical Nanoscience. 2006, FEB; 3(1): 63-77.
  1. 18.   Evolutionary analysis of a large mtDNA translocation (numt) into the nuclear genome of the Panthera genus species
  2. Kim, J. H.; Antunes, A.; Luo, S. J.; Menninger, J.; Nash, W. G.; O'Brien, S. J.; Johnson, W. E.
  3. Gene. 2006, Feb; 366(2): 292-302.
  1. 19.   A family portrait of the RIO kinases
  2. Laronde-Leblanc, N.; Wlodawer, A.
  3. Journal of Biological Chemistry. 2005, NOV 11; 280(45): 37297-37300.
  1. 20.   Allele-specific germ cell epimutation in the spacer promoter of the 45S ribosomal RNA gene after Cr(III) exposure
  2. Shiao, Y. H.; Crawford, E. B.; Anderson, L. M.; Patel, P.; Ko, K.
  3. Toxicology and Applied Pharmacology. 2005, JUN 15; 205(3): 290-296.
  1. 21.   Small molecule inhibitors of HDM2 ubiquitin ligase activity stabilize and activate p53 in cells
  2. Yang, Y. L.; Ludwig, R. L.; Jensen, J. P.; Pierre, S. A.; Medaglia, M. V.; Davydov, I. V.; Safiran, Y. J.; Oberoi, P.; Kenten, J. H.; Phillips, A. C.; Weissman, A. M.; Vousden, K. H.
  3. Cancer Cell. 2005, JUN; 7(6): 547-559.
  1. 22.   Autophosphorylation of Archaeoglobus fulgidus Rio2 and crystal structures of its nucleotide-metal ion complexes
  2. Laronde-Leblanc, N.; Guszczynski, T.; Copeland, T.; Wlodawer, A.
  3. Febs Journal. 2005, JUN; 272(11): 2800-2810.
  1. 23.   Assay for ubiquitin ligase activity: High-throughput screen for inhibitors of HDM2
  2. Davydov, I. V.; Woods, D.; Safiran, Y. J.; Oberoi, P.; Fearnhead, H. O.; Fang, S.; Jensen, J. P.; Weissman, A. M.; Kenten, J. H.; Vousden, K. H.
  3. Journal of Biomolecular Screening. 2004, DEC; 9(8): 695-703.
  1. 24.   Crystal structure of A-fulgidus Rio2 defines a new family of serine protein kinases
  2. Laronde-Leblanc, N.; Wlodawer, A.
  3. Structure. 2004, SEP; 12(9): 1585-1594.
  1. 25.   Epigenetic and gene expression changes related to transgenerational carcinogenesis
  2. Cheng, R. Y. S.; Hockman, T.; Crawford, E.; Anderson, L. M.; Shiao, Y. H.
  3. Molecular Carcinogenesis. 2004 40(1): 1-11.
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