Kihang Choi
고려대학교 생명과학과 · 화학
Kihang Choi 교수의 연구실은 주로 생체 분자 인식과 생체 내 환경 모니터링을 위한 새로운 분석 도구 개발에 초점을 맞추고 있습니다. 특히, 아미노쿠마린 유도체를 활용한 라티오메트릭 플루오레스센스 프로브를 통해 간세포 내 글루타티온 농도의 동적 변화와 이질성을 실시간으로 관찰하는 데 성공했으며, 이는 간세포의 복제 능력과 관련된 산화환원 상태를 이해하는 데 기여합니다. 또한, 특정 이온을 선택적으로 감지할 수 있는 매크로사이클 화합물의 설계 및 기작 해석을 통해 고감도 이온 센서의 원리를 규명하고 있습니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
Supersized pores: A new mesoporous metal–organic framework that is mainly composed of Tb3+ ions and tripodal carboxylate ligands has cages of 3.9 and 4.7 nm in diameter (see picture). The evacuated framework is robust and can accommodate gases or ferrocene molecules, as verified by gas-sorption measurements and luminescence studies.
Transglutaminase 2 (TG2) is a multifunctional mammalian protein with transamidase and signaling properties. Using selective TG2 inhibitors and tagged nucleophilic amine substrates, we show that the majority of extracellular TG2 is inactive under normal physiological conditions in cell culture and in vivo. However, abundant TG2 activity was detected around the wound in a standard cultured fibroblast scratch assay. To demonstrate wounding-induced activation of TG2 in vivo, the toll-like receptor 3
A macrocycle containing an aminocoumarin fluorophore showed two different fluorescence emission bands on binding with certain anions. Proton transfer from the fluorophore excited state occurred depending on the basicity of the bound anion (see scheme, A<sup>-</sup> : anion) and this new pathway makes more-sensitive anion sensing possible.
Ni nanoparticles embedded in the pores of a mesoporous MOF (MesMOF-1) act as a catalyst for hydrogenolysis of nitrobenzene or hydrogenation of styrene.
The cyclic triamide of 3'-amino-3-biphenylcarboxlic acid is readily synthesized in a stepwise manner and represents a novel class of anion receptors with a large central cavity. This macrocycle binds more strongly to tetrahedral anions than spherical or planar anions in organic solvents. The binding stoichiometries for anions with symmetrical charge distribution depend on the solvent polarity, while tetrahedral p-tosylate binds to the macrocycle with 1:1 stoichiometry in all solvents studied. Th
The core functions of stem cells (SCs) are critically regulated by their cellular redox status. Glutathione is the most abundant non-protein thiol functioning as an antioxidant and a redox regulator. However, an investigation into the relationship between glutathione-mediated redox capacity and SC activities is hindered by lack of probe. Here, we demonstrate that cyanoacrylamide-based coumarin derivatives are ratiometric probes suitable for the real-time monitoring of glutathione levels in livin
As part of a programme to investigate the path of the nascent peptide through the large ribosomal subunit, peptides of different lengths (up to 30 amino acids), corresponding to the signal peptide sequence and N-terminal region of the Escherichia coli ompA protein, were synthesized in situ on E.coli ribosomes. The peptides each carried a diazirine moiety attached to their N-terminus which, after peptide synthesis, was photoactivated so as to induce cross-links to the 23S rRNA. The results showed
Ein Makrocyclus mit einem Aminocumarin-Fluorophor zeigt nach Bindung bestimmter Anionen zwei Fluoreszenzemissionsbanden. Ein Protonentransfer vom angeregten Zustand des Fluorophors erfolgt in Abhängigkeit von der Basizität des gebundenen Anions (siehe Schema, A− = Anion), was einen empfindlicheren Anionennachweis ermöglicht. Supporting information for this article is available on the WWW under http://www.angewandte.com or from the author. Please note: The publisher is not responsible for the con
New chiral derivatizing agents have been prepared through a simple, short-step synthesis. The absolute configuration of α-chiral carboxylic acids can be assigned on the basis of the NMR chemical shift difference between diastereomeric esters. Because of the modular structures of the agents, the anisotropic effect could be easily manipulated to afford large chemical shift differences even in polar solvents.