九州大学 · 生化学・遺伝学・分子生物学
Yoshiki Katayama教授の研究室では、生体分子の反応をリアルタイムで可視化・制御するための新規バイオセンサーや、シグナル伝達分子を標的にしたスマート高分子材料の開発を進めています。特に、プロテインキナーゼAやキャパスセイド-3をターゲットとした遺伝子発現制御系や、ノ一酸化酸素(NO)を特異的に検出する蛍光プローブの開発が特徴です。これらの技術は、がんや神経疾患のメカニズム解明や、個別化医療に応用可能な次世代バイオセンシング技術の基盤を提供します。
Figures are computed from collected data and may differ slightly.
New polymer−peptide conjugates, NIPAM−PEP and NIPAM−PEPEP, were designed and synthesized. These graft-type polymers contained a substrate peptide of protein kinase A (PKA), which forms one of the most important intracellular signals in cellular signal transduction. The NIPAM−PEP containing the N-isopropylacrylamide unit and the substrate peptide unit raised its lower critical solution temperature (LCST) from 36.7 to 40 °C in response to phosphorylation by activated PKA. The NIPAM−PEPEP containin
A fluorescent probe using a novel 'spin exchange' concept was developed for monitoring nitric oxide (NO) production. The probe is composed of 2,2,6,6-tetramethylpiperidine-N-oxyl (TEMPO) labeled with acridine and N-dithiocarboxysarcosine (DTCS)-Fe(II) complex. When the non-fluorescent acridine-TEMPO was incubated with DTCS-Fe(II) complex in buffer solution, the nitroxide radical in the acridine-TEMPO interacted with the Fe(II) through a redox interaction. This interaction recovered the fluoresce
We describe two types of artificial gene-regulation systems responding to cyclic AMP-dependent protein kinase (PKA) or caspase-3. These molecular systems use newly synthesized cationic polymers, PAK and PAC. The PAK polymer includes substrate oligopeptide for PKA, ARRASLG, as receptor of PKA signal, while the PAC polymer possesses oligopeptide that is comprised of a substrate sequence of caspase-3, DEVD, and a cationic oligolysine, KKKKKK. These polymers formed stable complexes with DNA to total
The purpose of this study was to find protein kinase C (PKC) isozyme-specific peptides. A peptide library containing 1772 sequences was designed using Scansite and screened by MALDI-TOF MS and kinase activity assays for PKC isozyme-specificity. A peptide (Alphatomega; H-FKKQGSFAKKK-NH(2)) with high specificity for PKC alpha relative to other isozymes was identified. The peptide was phosphorylated to a greater extent by tissue lysates from B16 melanoma, HepG2, and human breast cancer, which had h
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