유진하 교수
Jin-ha Yoo
이화여자대학교 약학과 · 생화학·유전·분자생물학
연구실 소개
유진하 교수의 연구실은 주로 아데노신 수용체, 특히 A3 아데노신 수용체를 타겟으로 한 신약 개발에 초점을 맞추고 있습니다. 4'-셀레노화된 핵산 유도체를 핵심으로 하여, 수용체의 활성화 및 억제 작용을 조절하는 생물학적 활성 물질의 합성과 기전 규명을 진행하고 있으며, 특히 셀레늄 치환을 통해 수용체 선택성과 약리적 특성을 높이는 전략을 펼치고 있습니다. 이와 더불어, 세포 내 대사 경로와 관련된 효소 억제 작용 및 암세포 성장 억제 효과를 규명하는 기초 연구도 함께 진행되고 있습니다.
연구 현황
연구 성과 추이
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
주요 논문
15The P2Y<sub>14</sub> receptor (P2Y<sub>14</sub>R) mediates inflammatory activity by activating neutrophil motility, but few classes of antagonists are known. We have explored the structure-activity relationship of a 3-(4-phenyl-1 H-1,2,3-triazol-1-yl)-5-(aryl)benzoic acid antagonist scaffold, assisted by docking and molecular dynamics (MD) simulation at a P2Y<sub>14</sub>R homology model. A computational pipeline using the High Throughput MD Python environment guided the analogue design. Selecti
Writer's blocks: The first synthesis of RNA purine building blocks, 4'-selenoadenosine and 4'-selenoguanosine was achieved from D-ribose by regioisomeric rearrangement, which was confirmed by X-ray crystallography. 4'-Selenoadenosine exists in an unusual mixture of north and south conformers in the solid state.
A 3 adenosine receptor (AR) ligands including A 3 AR agonist, N 6 -(3-iodobenzyl)adenosine-5′- N -methyluronamide ( 1a, IB-MECA) were examined for adiponectin production in human bone marrow mesenchymal stem cells (hBM-MSCs). In this model, 1a significantly increased adiponectin production, which is associated with improved insulin sensitivity. However, A 3 AR antagonists also promoted adiponectin production in hBM-MSCs, indicating that the A 3 AR pathway may not be directly involved in the adip
Potent and selective A 3 adenosine receptor (AR) agonists were identified by the replacement of 4′-oxo- or 4′-thionucleosides with bioisosteric selenium. Unlike previous agonists, 4′-seleno analogues preferred a glycosidic syn conformation and South sugar puckering, as shown in the X-ray crystal structure of 5′- N -methylcarbamoyl derivative 3p . Among the compounds tested, N 6 -3-iodobenzyl analogue 3d was found to be the most potent A 3 AR full agonist ( K i = 0.57 nM), which was ≥800- and 190
BACKGROUND: 4'-seleno-homonucleosides were synthesized as next-generation nucleosides, and their cellular phosphorylation was studied to confirm the hypothesis that bulky selenium atom can sterically hinder the approach of cellular nucleoside kinase to the 5'-OH for phosphorylation. RESULTS: 4'-seleno-homonucleosides (n = 2), with one-carbon homologation, were synthesized through a tandem seleno-Michael addition-SN2 ring cyclization. LC-MS analysis demonstrated that they were phosphorylated by c
A new series of 4′-selenoadenosine-5′-N,N-dimethyluronamide derivatives as highly potent and selective human A3 adenosine receptor (hA3AR) antagonists, is described. The highly selective A3AR agonists, 4′-selenoadenosine-5′-N-methyluronamides were successfully converted into selective antagonists by adding a second N-methyl group to the 5′-uronamide position. All the synthesized compounds showed medium to high binding affinity at the hA3AR. Among the synthesized compounds, 2-H-N6-3-iodobenzylami
Adenines that incorporate known agonist affinity-enhancing substituents are A <sub>3</sub> AR-selective antagonists.
Adenosine mediates various physiological activities in the body. Adenosine receptors (ARs) are widely expressed in tumors and the tumor microenvironment (TME), and they induce tumor proliferation and suppress immune cell function. There are four types of human adenosine receptor (hARs): hA1, hA2A, hA2B, and hA3. Both hA1 and hA3 AR play an important role in tumor proliferation. We designed and synthesized novel 1,3,5-triazine derivatives through amination and Suzuki coupling, and evaluated them
Abstract Based on bioisosteric rationale, fluorinated analogues of MLN4924, which is a selective NEDD8‐activating enzyme inhibitor, were designed and their asymmetric syntheses were accomplished via stereoselective reduction, regioselective isopropylidene cleavage and diethylaminosulfur trifluoride (DAST) fluorination as key steps.
Adenosine receptors (ARs) play crucial roles in various physiological processes, making them significant targets for therapeutic intervention. This study focuses on the design, synthesis, and evaluation of N 6‐substituted‐ C 2‐alkynyl‐4′‐thioadenosine and truncated 4′‐thioadenosine derivatives as selective ligands for the human A 3 adenosine receptor (hA 3 AR). Binding affinity assays demonstrated that modifications at the C 2‐alkyne and N 6‐amine positions significantly influenced receptor sele
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