Kyushu University · 생화학·유전·분자생물학
Yosuke Taniguchi 교수의 연구실은 핵산 및 비정상적 뉴클레오타이드의 구조-기능 관계를 중심으로, 산화적 손상 DNA 염기, 8-oxo-dG와 같은 손상 체크 포인트를 선택적으로 탐지하고 안정화하는 비정상적 뉴클레오시드 유도체의 설계 및 응용을 주요 연구 분야로 삼고 있습니다. 특히, 형광성 비정상 뉴클레오시드(예: Adap 유도체)를 활용한 DNA 손상의 비침습적 탐지 및, 삼중체 DNA 형성에 기여하는 새로운 뉴클레오시드 유사체(예: WNA, N-기능화 이소시티딘 유도체)의 개발을 통해 유전자 기반 진단 및 약물 설계에 기여하고자 합니다. 이는 산화적 스트레스에 의한 유전자 변이 메커니즘을 규명하고, 정밀의료와 암 연구에 응용 가능한 기초 기술을 확보하는 데 초점이 맞춰져 있습니다.
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The effect of pressure on the trans–gauche equilibrium of 1,2-dichloroethane in n-hexane solution and of 1,2-dibromoethane in 2-methylbutane and acetonitrile solutions has been measured by the Raman spectrum. The relative integrated intensities of the carbon–halogen stretching vibrations of the two conformers has been taken as a measure of their relative concentrations. The volume change at the trans–gauche transformation for 1,2-dichloroethane is −3.8 ± ∼0.2 and −3.5 ± ∼0.2 cm3 mol−1, respectiv
The selective detection of 8-oxo-2'-deoxyguanosine (8-oxo-dG) in DNA without chemical or enzymatic treatment is an attractive tool for genomic research. We designed and synthesized the non-natural nucleoside analogue, the adenosine-1,3-diazaphenoxazine (Adap) derivative, for selective recognition of 8-oxo-dG in DNA. This study clearly showed that Adap has a highly selective stabilizing effect on the duplex containing the Adap-8-oxo-dG base pair. Furthermore, the fluorescent property of Adap was
The selective detection of 8-oxo-2′-deoxyguanosine (8-oxo-dG) in DNA without chemical or enzymatic treatment is an attractive tool for genomic research. We designed and synthesized the non-natural nucleoside analogue, the adenosine-1,3-diazaphenoxazine (Adap) derivative, for selective recognition of 8-oxo-dG in DNA. This study clearly showed that Adap has a highly selective stabilizing effect on the duplex containing the Adap–8-oxo-dG base pair. Furthermore, the fluorescent property of Adap was
Triplex-forming oligonucleotides (TFOs) are sequence-specific DNA-binding agents, but their target duplexes are limited to homopurine/homopyrimidine sequences because of interruption of the pyrimidines bases in the purine region. This problem has not been fully solved despite a wide variety of studies. Recently, we have developed a bicyclic system as a novel scaffold for nucleoside analogues (WNA, W-shaped nucleoside analogues) and determined two useful compounds, WNA-betaT (2) and WNA-betaC (5)
A substantial fraction of mutations that arise in the cell comes from oxidative damage to DNA bases. Oxidation of purine bases at the 8-position, yielding 8-oxo-G and 8-oxo-A, results in conformational changes (from anti to syn) that cause miscoding during DNA replication. Here we describe the synthesis and biophysical and biochemical properties of low-polarity shape mimics of 8-oxopurines, and we report that these new analogues exhibit remarkable mimicry of the mutagenic properties of the natur
The development of novel nucleoside analogues for the formation of triplex DNA containing pyrimidine-purine inversion sites has been a challenging field. In this paper, we describe the design and synthesis of non-natural nucleoside analogues, N-substituted-2'-deoxy-5-methylisocytidine derivatives, and their evaluation for triplex formation. It has been shown that N-(guanidinoethyl)-2'-deoxy-5-methylisocytidine exhibits selective recognition of a CG interrupting site and potentiates the formation
Some reports have described pleural lavage cytology (PLC) to be a prognostic factor for non-small cell lung cancer (NSCLC) patients. However, there have only been a few reports describing the findings both immediately after thoracotomy (PLC after thoracotomy) and before the closure of the chest (PLC before closure). From April 2002 to April 2008, both PLC after thoracotomy and PLC before closure were performed in 296 consecutive patients who underwent resections for NSCLC. PLC after thoracotomy
Sequence-specific recognition of duplex DNA mediated by triple helix formation offers a potential basis for oligonucleotide therapy and biotechnology. However, triplex formation is limited mostly to homopurine strands, due to poor stabilization at CG or TA base pairs in the target duplex DNA sequences. Several non-natural nucleosides have been designed for the recognition of CG or TA base pairs within an antiparallel triplex DNA. Nevertheless, problems including low selectivity and high dependen