Atsunari Tanaka
The Wistar Institute(US)
Publications by Year
Research Areas
Hemoglobin structure and function, Heme Oxygenase-1 and Carbon Monoxide, Genomics and Chromatin Dynamics, Fungal and yeast genetics research, Neonatal Health and Biochemistry
Most-Cited Works
- → Mapping of long-range associations throughout the fission yeast genome reveals global genome organization linked to transcriptional regulation(2010)217 cited
- → Centromeric Localization of Dispersed Pol III Genes in Fission Yeast(2009)117 cited
- → Important Roles of Tyr43 at the Putative Heme Distal Side in the Oxygen Recognition and Stability of the Fe(II)−O2 Complex of YddV, a Globin-Coupled Heme-Based Oxygen Sensor Diguanylate Cyclase(2010)78 cited
- → Epigenetic Regulation of Condensin-Mediated Genome Organization during the Cell Cycle and upon DNA Damage through Histone H3 Lysine 56 Acetylation(2012)73 cited
- → Critical Role of the Heme Axial Ligand, Met95, in Locking Catalysis of the Phosphodiesterase from Escherichia coli (Ec DOS) toward Cyclic diGMP(2007)68 cited
- → Interaction between TBP and Condensin Drives the Organization and Faithful Segregation of Mitotic Chromosomes(2015)50 cited
- → Arg97 at the Heme-Distal Side of the Isolated Heme-Bound PAS Domain of a Heme-Based Oxygen Sensor from Escherichia coli (Ec DOS) Plays Critical Roles in Autoxidation and Binding to Gases, Particularly O2(2008)42 cited
- → Roles of the Heme Distal Residues of FixL in O2 Sensing: A Single Convergent Structure of the Heme Moiety Is Relevant to the Downregulation of Kinase Activity(2006)28 cited
- → Ligand Binding to the Fe(III)-Protoporphyrin IX Complex of Phosphodiesterase from Escherichia coli (Ec DOS) Markedly Enhances Catalysis of Cyclic di-GMP: Roles of Met95, Arg97, and Phe113 of the Putative Heme Distal Side in Catalytic Regulation and Ligand Binding(2008)28 cited
- → O2-specific regulation of the ferrous heme-based sensor kinase FixL from Sinorhizobium meliloti and its aberrant inactivation in the ferric form(2003)27 cited