Area of research
Molecular Biology · Genetics
Research interest
Research interests include Biology, Archaea, Pyrococcus furiosus, Transcription (linguistics), Biochemistry, and Transcription factor II D.
Displacement of the transcription factor B reader domain during transcription initiation
The Transcriptional Regulator TFB-RF1 Activates Transcription of a Putative ABC Transporter in Pyrococcus furiosus
Chemotaxonomic characterisation of the thaumarchaeal lipidome
Diversity of bacteria and archaea from two shallow marine hydrothermal vents from Vulcano Island
A global analysis of transcription reveals two modes of Spt4/5 recruitment to archaeal RNA polymerase
Genome-wide binding analysis of the transcriptional regulator TrmBL1 in Pyrococcus furiosus
The Proteome and Lipidome of<i>Thermococcus kodakarensis</i>across the Stationary Phase
Respiratory quinones in <scp> <i>A</i> </scp> <i>rchaea</i> : phylogenetic distribution and application as biomarkers in the marine environment
Structural Insights into Nonspecific Binding of DNA by TrmBL2, an Archaeal Chromatin Protein
Thermococcus kodakarensis modulates its polar membrane lipids and elemental composition according to growth stage and phosphate availability
Transcription: Mechanism and Regulation
The TrmB family: a versatile group of transcriptional regulators in Archaea
Activation of a Chimeric Rpb5/RpoH Subunit Using Library Selection
The RNA polymerase trigger loop functions in all three phases of the transcription cycle
Novel Cultivation-Based Approach To Understanding the Miscellaneous Crenarchaeotic Group (MCG) Archaea from Sedimentary Ecosystems
An Extended Network of Genomic Maintenance in the Archaeon Pyrococcus abyssi Highlights Unexpected Associations between Eucaryotic Homologs
Genetic engineering of Pyrococcus furiosus to use chitin as a carbon source
Experimental and computational analysis of the secretome of the hyperthermophilic archaeon Pyrococcus furiosus
Structural basis of highly conserved ribosome recycling in eukaryotes and archaea
Promiscuous behaviour of archaeal ribosomal proteins: Implications for eukaryotic ribosome evolution
Activation of Archaeal Transcription Mediated by Recruitment of Transcription Factor B
Archaeal Life on Tangkuban Perahu-Sampling and Culture Growth in Indonesian Laboratories