김지훈 교수
Ji-Hoon Kim
경희대학교 약과학과 · 생화학·유전·분자생물학
연구실 소개
김지훈 교수의 연구실은 항생제 내성 문제 해결을 위한 신규 항균 펩타이드 개발과 함께, 암 및 신경질환 관련 타겟 단백질의 구조 기반 기전 해명에 초점을 맞추고 있습니다. 특히 미토콘드리아 칼슘 유입을 조절하는 MCU 단백질 복합체의 고해상도 구조 규명과 함께, 신경발달장애 환자에서의 유전적 원인 규명을 위한 NGS 기반 진단 플랫폼 개발도 진행 중입니다. 또한, 신경모방 회로 소자에 응용 가능한 전기형성 자유 메모리 소재 개발을 통해 바이오-전자 통합 기술의 기반을 마련하고자 합니다.
연구 현황
연구 성과 추이
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주요 논문
15Antimicrobial peptides (AMPs) have been considered as potential therapeutic sources of future antibiotics because of their broad-spectrum activities and different mechanisms of action compared to conventional antibiotics. Although AMPs possess considerable benefits as new generation antibiotics, their clinical and commercial development still have some limitations, such as potential toxicity, susceptibility to proteases, and high cost of peptide production. In order to overcome those obstacles,
The mitochondrial calcium uniporter (MCU) is responsible for mitochondrial calcium uptake and homeostasis. It is also a target for the regulation of cellular anti‐/pro‐apoptosis and necrosis by several oncogenes and tumour suppressors. Herein, we report the crystal structure of the MCU N‐terminal domain (NTD) at a resolution of 1.50 Å in a novel fold and the S92A MCU mutant at 2.75 Å resolution; the residue S92 is a predicted CaMKII phosphorylation site. The assembly of the mitochondrial calcium
BACKGROUND: We intended to evaluate diagnostic utility of a targeted gene sequencing by using next generation sequencing (NGS) panel in patients with intractable early-onset epilepsy (EOE) and find the efficient analytical step for increasing the diagnosis rate. METHODS: We assessed 74 patients with EOE whose seizures started before 3 years of age using a customized NGS panel that included 172 genes. Single nucleotide variants (SNVs) and exonic and chromosomal copy number variations (CNVs) were
The thin-film growth conditions in a plasma-enhanced atomic layer deposition for the (3.0-4.5) nm thick HfO<sub>2</sub> film were optimized to use the film as the resistive switching element in a neuromorphic circuit. The film was intended to be used as a feasible synapse with analog-type conductance-tuning capability. The 4.5 nm thick HfO<sub>2</sub> films on both conventional TiN and a new RuO<sub>2</sub> bottom electrode required the electroforming process for them to operate as a feasible re
Abstract: The probabilistic roadmap (PRM) method, which is a popular path planning scheme, for a manipulator, can find a collision-free path by connecting the start and goal poses through a roadmap constructed by drawing random nodes in the free configuration space. PRM exhibits robust performance for static environments, but its performance is poor for dynamic environments. On the other hand, reinforcement learning, a behavior-based control technique, can deal with uncertainties in the environm
Heterologous production of recombinant proteins is gaining increasing interest in biotechnology with respect to productivity, scalability, and wide applicability. The members of genus Streptomyces have been proposed as remarkable hosts for heterologous production due to their versatile nature of expressing various secondary metabolite biosynthetic gene clusters and secretory enzymes. However, there are several issues that limit their use, including low yield, difficulty in genetic manipulation,
The demand for discovering novel microbial secondary metabolites is growing to address the limitations in bioactivities such as antibacterial, antifungal, anticancer, anthelmintic, and immunosuppressive functions. Among microbes, the genus Streptomyces holds particular significance for secondary metabolite discovery. Each Streptomyces species typically encodes approximately 30 secondary metabolite biosynthetic gene clusters (smBGCs) within its genome, which are mostly uncharacterized in terms of
The integration of membrane proteins into "lipid raft" membrane domains influences many biochemical processes. The intrinsic structural properties of membrane proteins are thought to mediate their partitioning between membrane domains. However, whether membrane topology influences the targeting of proteins to rafts remains unclear. To address this question, we examined the domain preference of three putative raft-associated membrane proteins with widely different topologies: human caveolin-3, C9
In electronic bipolar resistive switching (eBRS), the electron trapping and detrapping at the defect sites within the switching layer, such as the highly defective TiO<sub>1.7</sub> in this study, constitute the switching mechanism. It is an appealing candidate solution to the nonuniformity issue of resistive switching memory. However, TiO<sub>1.7</sub>-based eBRS has suffered from a lack of endurance and retention. In this study, a 7 nm-thick stoichiometric TiO<sub>2</sub> layer is interposed b
Using in-situ> X-ray and UV photoemission spectroscopy (XPS and UPS, respectively), we have investigated the electronic energy level alignment at the interface formed between a strongly electron withdrawing molecule 1,4,5,8,9,11-hexaazatriphenylene-hexacarbonitrile (HAT-CN) and indium-tin-oxide (ITO). The HAT-CN is an effective material in organic light emitting diodes for hole injection layer and ITO is widely used as an anode electrode. The deposition of a small amount of HAT-CN caused surface
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