Shun-ichi Matsuura

researcher ORCID ID = 0000-0002-1719-0643

Shun-ichi Matsuura is …
instance of (P31):
humanQ5

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P496ORCID iD0000-0002-1719-0643
P1053ResearcherIDG-8529-2012

P108employerNational Institute of Advanced Industrial Science and TechnologyQ1076542
P106occupationresearcherQ1650915

Reverse relations

author (P50)
Q82565581A new DNA combing method for biochemical analysis
Q35119885A new direct single-molecule observation method for DNA synthesis reaction using fluorescent replication protein A.
Q46723779Amphiphilic Organic-Inorganic Hybrid Zeotype Aluminosilicate like a Nanoporous Crystallized Langmuir-Blodgett Film.
Q84311924An enzyme-encapsulated microreactor for efficient theanine synthesis
Q33790887Direct observation method of individual single-stranded DNA molecules using fluorescent replication protein A.
Q34614142Direct observation of fluorescently labeled single-stranded λDNA molecules in a micro-flow channel.
Q36215635Direct single-molecule observations of DNA unwinding by SV40 large tumor antigen under a negative DNA supercoil state.
Q35564168Direct single-molecule observations of local denaturation of a DNA double helix under a negative supercoil state.
Q43255654Enhancement in thermal stability and resistance to denaturants of lipase encapsulated in mesoporous silica with alkyltrimethylammonium (CTAB).
Q54202073Enzyme Immobilization in Mesoporous Silica for Enhancement of Thermostability.
Q74372435Real-time observation of a single DNA digestion by lambda exonuclease under a fluorescence microscope field
Q87722168Real-time single-molecule observations of T7 Exonuclease activity in a microflow channel
Q54778235Single-molecule PCR using water-in-oil emulsion.
Q93200791Successful Mesoporous Silica Encapsulation of Optimally Functional EcDOS (E. coli Direct Oxygen Sensor), a Heme-based O2-Sensing Phosphodiesterase
Q50626917Synthesis of a cagelike hollow aluminosilicate with vermiculate micro-through-holes and its application to ship-in-bottle encapsulation of protein.
Q50655884The ensemble of hetero-proteins in inorganic nanochannels.

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