이형호 교수
Hyung Ho Lee
서울대학교 화학부 · 생화학·유전·분자생물학
연구실 소개
이형호 교수의 연구실은 주로 세포 내 막 분리 및 세포분열 과정에서 핵심적인 역할을 하는 단백질 복합체, 특히 ESCRT 시스템과 관련된 단백질 구조 및 기능을 중심으로 연구를 진행하고 있습니다. 특히 HIV-1의 탈출, 세포분열의 마지막 단계인 cytokinesis, 그리고 전기적 시냅스 형성에 관여하는 커넥신 단백질의 구조 기반 기능 해석에도 깊이 관여하고 있습니다. 또한 림포소마와 같은 세포소기관 형성에 관여하는 BLOC-1 복합체나 세균의 세포분열 기구인 디비조드 등 다양한 생물학적 과정을 규명하기 위한 고해상도 구조 생물학적 접근을 활용하고 있습니다.
연구 현황
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주요 논문
15The ESCRT (endosomal sorting complex required for transport) machinery is required for the scission of membrane necks in processes including the budding of HIV-1 and cytokinesis. An essential step in cytokinesis is recruitment of the ESCRT-I complex and the ESCRT-associated protein ALIX to the midbody (the structure that tethers two daughter cells) by the protein CEP55. Biochemical experiments show that peptides from ALIX and the ESCRT-I subunit TSG101 compete for binding to the ESCRT and ALIX-b
Human nucleophosmin (NPM; also known as B23, NO38, or numatrin), encoded by the NPM1 gene, is an abundant phosphoprotein in nucleoli.1-3 It is primarily localized to nucleolus but has been shown to shuttle between the cytoplasm and nucleus.4 Two isoforms of NPM, designated B23.1 and B23.2,5 consist of 294 and 259 amino acid residues, respectively, with B23.1 being the prevalent form in all tissues.5, 6 The C-terminal 35 amino acids of B23.1 are missing from B23.2 and the N-terminal 257 residues
BLOC-1 (biogenesis of lysosome-related organelles complex-1) is critical for melanosome biogenesis and has also been implicated in neurological function and disease. We show that BLOC-1 is an elongated complex that contains one copy each of the eight subunits pallidin, Cappuccino, dysbindin, Snapin, Muted, BLOS1, BLOS2, and BLOS3. The complex appears as a linear chain of eight globular domains, ∼300 Å long and ∼30 Å in diameter. The individual domains are flexibly connected such that the linear
Connexin 36 (Cx36) is responsible for signal transmission in electrical synapses by forming interneuronal gap junctions. Despite the critical role of Cx36 in normal brain function, the molecular architecture of the Cx36 gap junction channel (GJC) is unknown. Here, we determine cryo-electron microscopy structures of Cx36 GJC at 2.2-3.6 Å resolutions, revealing a dynamic equilibrium between its closed and open states. In the closed state, channel pores are obstructed by lipids, while N-terminal he
Bacterial cell division is a fundamental process that results in the physical separation of a mother cell into two daughter cells and involves a set of proteins known as the divisome. Among them, the FtsQ/FtsB/FtsL complex was known as a scaffold protein complex, but its overall structure and exact function is not precisely known. In this study, we have determined the crystal structure of the periplasmic domain of FtsQ in complex with the C-terminal fragment of FtsB, and showed that the C-termin
The glycine cleavage system catalyzes the oxidative decarboxylation of glycine in bacteria and in mitochondria of animals and plants. Its deficiency in human causes nonketotic hyperglycinemia, an inborn error of glycine metabolism. T-protein, one of the four componentsoftheglycinecleavagesystem,isatetrahydrofolatedependent aminomethyltransferase. It catalyzes the transfer of the methylene carbon unit to tetrahydrofolate from the methylamine group covalently attached to the lipoamide arm of H-pro
Abstract G-protein coupled receptors (GPCRs) and ion channels serve as key molecular switches through which extracellular stimuli are transformed into intracellular effects, and it has long been postulated that ion channels are direct effector molecules of the alpha subunit of G-proteins (Gα). However, no complete structural evidence supporting the direct interaction between Gα and ion channels is available. Here, we present the cryo-electron microscopy structures of the human transient receptor
Enoyl-ACP reductase (ENR; EC 1.3.1.9), encoded by the fabI gene, is a key enzyme of the Type II fatty-acid biosynthetic system in prokaryotes and plants. It uses NADH or NADPH as the cofactor to reduce the double bond between C2 and C3 positions of a fatty acyl chain bound to the acyl carrier protein in the terminal rate-limiting step of the fatty acid chain elongation cycle.1 Because it shows low overall sequence homology with mammalian enzymes, it is a potential target for antibacterial discov
Assembly of the peptidoglycan is crucial in maintaining viability of bacteria and in defining bacterial cell shapes, both of which are important for existence in the ecological niche that the organism occupies. Here, eight crystal structures for a member of the cell-shape-determining class of Campylobacter jejuni, the peptidoglycan peptidase 3 (Pgp3), are reported. Characterization of the turnover chemistry of Pgp3 reveals cell wall D,D-endopeptidase and D,D-carboxypeptidase activities. Catalysi
Alopecia induced by aging or side effects of medications affects millions of people worldwide and impairs the quality of life; however, there is a limit to the current medications. Here, we identify a small transdermally deliverable 5-mer peptide (GLYYF; P5) that activates adiponectin receptor 1 (AdipoR1) and promotes hair growth. P5 sufficiently reproduces the biological effect of adiponectin protein via AMPK signaling pathway, increasing the expression of hair growth factors in the dermal papi
Formate dehydrogenase (FDH) is critical for the conversion between formate and carbon dioxide. Despite its importance, the structural complexity of FDH and difficulties in the production of the enzyme have made elucidating its unique physicochemical properties challenging. Here, we purified recombinant Methylobacterium extorquens AM1 FDH (MeFDH1) and used cryo-electron microscopy to determine its structure. We resolved a heterodimeric MeFDH1 structure at a resolution of 2.8 Å, showing a noncanon
Although both the p53 and forkhead box (FOX) family proteins are key transcription factors associated with cancer progression, their direct relationship is unknown. Here, we found that FOX family proteins bind to the non-canonical homotypic cluster of the p53 promoter region (TP53). Analysis of crystal structures of FOX proteins (FOXL2 and FOXA1) bound to the p53 homotypic cluster indicated that they interact with a 2:1 stoichiometry accommodated by FOX-induced DNA allostery. In particular, FOX
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