Keio University · 의학
마사루 타케시타 교수의 연구실은 DNA 손상 및 복구 메커니즘을 중심으로, 특히 아바식 사이트(abasic sites)의 구조적 특성과 그가 유전자 돌연변이를 유도하는 메커니즘을 체계적으로 연구하고 있습니다. 항생제인 블로미신, 네오카르지노스타틴 등이 유도하는 DNA 절단의 염기서열 특이성과 관련된 분자 생물학적 기전을 규명하며, 암과 자가면역질환 등 질병의 분자 기전을 밝혀내는 데 기여하고 있습니다. 또한, SARS-CoV-2 감염 환자에서의 항체 반응을 분석함으로써 감염의 경과와 면역 반응의 상관관계를 규명하는 임상 분야의 연구도 수행하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
A synthetic procedure has been developed by which stable abasic sites are introduced into oligodeoxynucleotides at any desired position in the sequence. A modified tetrahydrofuran moiety, isosteric with 2'-deoxyribofuranose, serves as a structural analog of the natural apurinic/apyrimidinic site. We have also prepared oligodeoxynucleotides that lack cyclic structure at the abasic site but retain the carbon atoms of the phosphodiester backbone. These synthetic oligodeoxynucleotides are cleaved on
The sequence of oligonucleotides produced by the action of bleomycin and ferrous ion on double- and single-stranded DNA has been determined. In the presence of ferrous ion, bleomycin promotes cleavage at G-T and G-C sequences, while high concentrations of ferrous ion alone result in strand scission that is not base specific. In the presence of bleomycin and ferrous ion, pyrimidine bases located to the 3' side of guanosine are released preferentially and a low molecular weight product that forms
The nucleotide sequence specificity of neocarzinostatin (NCS), auromomycin (AUR), bleomycin (Blm), phleomycin (Phlm), and tallysomycin (Tlm) has been determined by using these antibiotics and their associated chromophores to create strand scissions in end-labeled restriction fragments of DNA and then determining the base sequence of the oligonucleotides formed. NCS and the NCS chromophore induce similar patterns of cleavage in DNA fragments labeled at the 5' terminus. The pattern produced by the
Our multi-dimensional investigation identified disease relevant T-cell subsets and gene signatures deeply involved in pathogenesis of RA. These findings could aid in our understanding of essential roles of T cells in RA and will facilitate to development better diagnostic and therapeutic interventions.
Mutagenesis at abasic sites was investigated in E.coli and simian kidney (COS) cells using a duplex shuttle vector containing synthetic analogs of deoxyribose on the phosphodiester backbone. Lesions were positioned on opposite strands of the vector. When the tetrahydrofuranyl analog was used as the abasic site, AT or TA pairs (65-80%) were introduced at the site of the bistrand lesion. Mutagenesis occurred in the absence of SOS induction. Single base deletions (> 80%) dominated the mutational sp
The pandemic of COVID-19 is still ongoing, and many studies on serum antibodies have been reported, however, there are few studies about asymptomatic and mild patients. In this study, we enrolled 44 COVID-19 patients with relatively mild disease and 48 pre-pandemic controls. We measured serum antibodies against extracellular domain, S1 domain, and receptor-binding domain of Spike and N protein, examined neutralization titers by authentic virus neutralization assay and newly-developed bead/cell-b
Abstract Salmonella mutants defective in the biosynthesis of the central R core portion of cell wall lipopolysaccharide accumulate the peripheral side portion of lipopolysaccharide in a form presumably linked to the lipid carrier. When such an O side chain polysaccharide was isolated from a core-defective mutant derived from a Salmonella typhimurium strain originally producing O antigen 122, the polysaccharide was found to possess the full determinant group for 122 antigen, i.e. short side chain
This is the first report of a glycoprotein biomarker using glycan change at a local lesion to assess disease activity in autoimmune diseases. Differences in the degree of serum MMP-3 α-2,6-sialylation may be a useful index for estimating disease activity.
We showed direct evidences of antigen-driven maturation of anti-SSA/SSB antibody and ACA in SS lesion. ACA recognises centromere 'complex' rather than individual protein, and this feature is common among patients with SS, SSc and PBC.