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이남일 교수

Nilee Lee

KAIST 공학생물학대학원 · 생화학·유전·분자생물학

연구실 소개

이남일 교수의 연구실은 균류 및 방선균, 특히 *Streptomyces*를 중심으로 산화적·생물학적 기반의 새로운 항생제 및 생활물질을 탐색하는 데 주력하고 있습니다. 고속 유전자염기서열 분석과 합성생물학 기법을 융합해, 실험실 조건에서 활성화되지 않는 '침묵한' 생합성 유전자 클러스터(SM-BGCs)를 유도하고, 미생물 간 상호작용을 통해 새로운 자연물 합성을 유도하는 전략을 개발하고 있습니다. 특히, 공배양 시스템과 철 이온 경쟁 메커니즘을 통해 항생제 생합성을 유도하는 원리를 규명하며, 노화와 관련된 장내 미생물군집 조절을 통한 건강 연장 전략에도 기여하고 있습니다.

방선균침묵한 유전자클러스터공배양합성생물학장내 미생물군집

연구 현황

논문 수
77
총 인용 수
1,400
최근 5년 논문
32
주요 분야
생화학·유전·분자생물학

연구 성과 추이

표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.

5개년 연도별 논문 게재 수
32총합
2022
2023
2024
2025
2026
5개년 연도별 피인용 수
207총합
20222023202420252026

주요 논문

15
1
리뷰|인용수 191·2020
Mini review: Genome mining approaches for the identification of secondary metabolite biosynthetic gene clusters in Streptomyces
Namil Lee, Soonkyu Hwang, Jihun Kim, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1Computational and Structural Biotechnology JournalOA

Streptomyces are a large and valuable resource of bioactive and complex secondary metabolites, many of which have important clinical applications. With the advances in high throughput genome sequencing methods, various in silico genome mining strategies have been developed and applied to the mapping of the Streptomyces genome. These studies have revealed that Streptomyces possess an even more significant number of uncharacterized silent secondary metabolite biosynthetic gene clusters (smBGCs) th

PharmacologyMedicine
2
논문|인용수 134·2020
Thirty complete Streptomyces genome sequences for mining novel secondary metabolite biosynthetic gene clusters
Namil Lee, Woori Kim, Soonkyu Hwang, Yongjae Lee, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1Scientific DataOA

Streptomyces are Gram-positive bacteria of significant industrial importance due to their ability to produce a wide range of antibiotics and bioactive secondary metabolites. Recent advances in genome mining have revealed that Streptomyces genomes possess a large number of unexplored silent secondary metabolite biosynthetic gene clusters (smBGCs). This indicates that Streptomyces genomes continue to be an invaluable source for new drug discovery. Here, we present high-quality genome sequences of

PharmacologyMedicine
3
논문|인용수 106·2021
Ageing and rejuvenation models reveal changes in key microbial communities associated with healthy ageing
Jongoh Shin, Jung‐Ran Noh, Donghui Choe, Namil Lee, Yoseb Song, Suhyung Cho, Eunjung Kang, Min‐Jeong Go, Seok Kyun Ha, Dong‐Ho Chang, Jae‐Hoon Kim, Yong‐Hoon Kim
SJR Q1MicrobiomeOA

BACKGROUND: The gut microbiota is associated with diverse age-related disorders. Several rejuvenation methods, such as probiotic administration and faecal microbiota transplantation, have been applied to alter the gut microbiome and promote healthy ageing. Nevertheless, prolongation of the health span of aged mice by remodelling the gut microbiome remains challenging. RESULTS: Here, we report the changes in gut microbial communities and their functions in mouse models during ageing and three rej

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
논문|인용수 103·2020
Iron competition triggers antibiotic biosynthesis in Streptomyces coelicolor during coculture with Myxococcus xanthus
Namil Lee, Woori Kim, Jinkyoo Chung, Yongjae Lee, Suhyung Cho, Kyoung‐Soon Jang, Sun Chang Kim, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1The ISME JournalOA

Microbial coculture to mimic the ecological habitat has been suggested as an approach to elucidate the effect of microbial interaction on secondary metabolite biosynthesis of Streptomyces. However, because of chemical complexity during coculture, underlying mechanisms are largely unknown. Here, we found that iron competition triggered antibiotic biosynthesis in Streptomyces coelicolor during coculture with Myxococcus xanthus. During coculture, M. xanthus enhanced the production of a siderophore,

PharmacologyMedicine
5
리뷰|인용수 99·2019
Synthetic Biology Tools for Novel Secondary Metabolite Discovery in Streptomyces
Namil Lee, Soonkyu Hwang, Yong‐Jae Lee, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q2Journal of Microbiology and BiotechnologyOA

<i>Streptomyces</i> are attractive microbial cell factories that have industrial capability to produce a wide array of bioactive secondary metabolites. However, the genetic potential of the <i>Streptomyces</i> species has not been fully utilized because most of their secondary metabolite biosynthetic gene clusters (SM-BGCs) are silent under laboratory culture conditions. In an effort to activate SM-BGCs encoded in <i>Streptomyces</i> genomes, synthetic biology has emerged as a robust strategy to

PharmacologyMedicine
6
리뷰|인용수 72·2021
Discovery of novel secondary metabolites encoded in actinomycete genomes through coculture
Ji Hun Kim, Namil Lee, Soonkyu Hwang, Woori Kim, Yongjae Lee, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q2Journal of Industrial Microbiology & BiotechnologyOA

Actinomycetes are a rich source of bioactive natural products important for novel drug leads. Recent genome mining approaches have revealed an enormous number of secondary metabolite biosynthetic gene clusters (smBGCs) in actinomycetes. However, under standard laboratory culture conditions, many smBGCs are silent or cryptic. To activate these dormant smBGCs, several approaches, including culture-based or genetic engineering-based strategies, have been developed. Above all, coculture is a promisi

PharmacologyMedicine
7
리뷰|인용수 71·2021
Systems and synthetic biology to elucidate secondary metabolite biosynthetic gene clusters encoded inStreptomycesgenomes
Namil Lee, Soonkyu Hwang, Woori Kim, Yongjae Lee, Ji Hun Kim, Suhyung Cho, Hyun Uk Kim, Yeo Joon Yoon, Min‐Kyu Oh, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1Natural Product ReportsOA

Covering: 2010 to 2020 Over the last few decades, Streptomyces have been extensively investigated for their ability to produce diverse bioactive secondary metabolites. Recent advances in Streptomyces research have been largely supported by improvements in high-throughput technology 'omics'. From genomics, numerous secondary metabolite biosynthetic gene clusters were predicted, increasing their genomic potential for novel bioactive compound discovery. Additional omics, including transcriptomics,

PharmacologyMedicine
8
리뷰|인용수 67·2020
Repurposing Modular Polyketide Synthases and Non-ribosomal Peptide Synthetases for Novel Chemical Biosynthesis
Soonkyu Hwang, Namil Lee, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1Frontiers in Molecular BiosciencesOA

In nature, various enzymes govern diverse biochemical reactions through their specific three-dimensional structures, which have been harnessed to produce many useful bioactive compounds including clinical agents and commodity chemicals. Polyketide synthases (PKSs) and non-ribosomal peptide synthetases (NRPSs) are particularly unique multifunctional enzymes that display modular organization. Individual modules incorporate their own specific substrates and collaborate to assemble complex polyketid

PharmacologyMedicine
9
논문|인용수 63·2019
Primary transcriptome and translatome analysis determines transcriptional and translational regulatory elements encoded in the Streptomyces clavuligerus genome
Soonkyu Hwang, Namil Lee, Yujin Jeong, Yongjae Lee, Woori Kim, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1Nucleic Acids ResearchOA

Determining transcriptional and translational regulatory elements in GC-rich Streptomyces genomes is essential to elucidating the complex regulatory networks that govern secondary metabolite biosynthetic gene cluster (BGC) expression. However, information about such regulatory elements has been limited for Streptomyces genomes. To address this limitation, a high-quality genome sequence of β-lactam antibiotic-producing Streptomyces clavuligerus ATCC 27 064 is completed, which contains 7163 newly

PharmacologyMedicine
10
논문|인용수 48·2021
Elucidating the Regulatory Elements for Transcription Termination and Posttranscriptional Processing in the Streptomyces clavuligerus Genome
Soonkyu Hwang, Namil Lee, Donghui Choe, Yongjae Lee, Woori Kim, Yujin Jeong, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1mSystemsOA

Streptomyces sp. is a great source of bioactive secondary metabolites, including antibiotics, antifungal agents, antiparasitic agents, immunosuppressant compounds, and other drugs. Secondary metabolites are synthesized via multistep conversions of the precursor molecules from primary metabolism, governed by multicomplex enzymes from secondary metabolite biosynthetic gene clusters.

PharmacologyMedicine
11
리뷰|인용수 47·2020
System-level understanding of gene expression and regulation for engineering secondary metabolite production in Streptomyces
Yongjae Lee, Namil Lee, Soonkyu Hwang, Kangsan Kim, Woori Kim, Jihun Kim, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q2Journal of Industrial Microbiology & BiotechnologyOA

The gram-positive bacterium, Streptomyces, is noticed for its ability to produce a wide array of pharmaceutically active compounds through secondary metabolism. To discover novel bioactive secondary metabolites and increase the production, Streptomyces species have been extensively studied for the past decades. Among the cellular components, RNA molecules play important roles as the messengers for gene expression and diverse regulations taking place at the RNA level. Thus, the analysis of RNA-le

PharmacologyMedicine
12
논문|인용수 42·2016
Targeted Gene Deletion Using DNA-Free RNA-Guided Cas9 Nuclease Accelerates Adaptation of CHO Cells to Suspension Culture
Namil Lee, Jongoh Shin, Jin Hyoung Park, Gyun Min Lee, Suhyung Cho, Byung‐Kwan Cho
SJR Q1ACS Synthetic Biology

Chinese hamster ovary (CHO) cells are the preferred host for the production of a wide array of biopharmaceuticals. Thus, efficient and rational CHO cell line engineering methods have been in high demand to improve quality and productivity. Here, we provide a novel genome engineering platform for increasing desirable phenotypes of CHO cells based upon the integrative protocol of high-throughput RNA sequencing and DNA-free RNA-guided Cas9 (CRISPR associated protein9) nuclease-based genome editing.

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
논문|인용수 38·2019
The Transcription Unit Architecture of Streptomyces lividans TK24
Yongjae Lee, Namil Lee, Yujin Jeong, Soonkyu Hwang, Woori Kim, Suhyung Cho, Bernhard Ø. Palsson, Byung‐Kwan Cho
SJR Q1Frontiers in MicrobiologyOA

<i>Streptomyces lividans</i> is an attractive host for production of heterologous proteins and secondary metabolites of other <i>Streptomyces</i> species. To fully harness the industrial potential of <i>S. lividans</i>, understanding its metabolism and genetic regulatory elements is essential. This study aimed to determine its transcription unit (TU) architecture and elucidate its diverse regulatory elements, including promoters, ribosome binding sites, 5'-untranslated regions, and transcription

PharmacologyMedicine
14
논문|인용수 38·2023
Maximizing Heterologous Expression of Engineered Type I Polyketide Synthases: Investigating Codon Optimization Strategies
Matthias Schmidt, Namil Lee, Chunjun Zhan, Jacob B. Roberts, Alberto A. Nava, Leah S. Keiser, Aaron A. Vilchez, Yan Chen, Christopher J. Petzold, Robert W. Haushalter, Lars M. Blank, Jay D. Keasling
SJR Q1ACS Synthetic BiologyOA

High Resolution Image Download MS PowerPoint Slide Type I polyketide synthases (T1PKSs) hold enormous potential as a rational production platform for the biosynthesis of specialty chemicals. However, despite great progress in this field, the heterologous expression of PKSs remains a major challenge. One of the first measures to improve heterologous gene expression can be codon optimization. Although controversial, choosing the wrong codon optimization strategy can have detrimental effects on the

PharmacologyMedicine
15
letter|인용수 30·2023
Automated Platform for the Plasmid Construction Process
Alberto A. Nava, Anna Lisa Fear, Namil Lee, Peter Mellinger, Guangxu Lan, Joshua McCauley, Stephen Tan, Nurgul Kaplan, Garima Goyal, Roger Coates, Jacob B. Roberts, Zahmiria Johnson
SJR Q1ACS Synthetic BiologyOA

There is a growing need for applications capable of handling large synthesis biology experiments. At the core of synthetic biology is the process of cloning and manipulating DNA as plasmids. Here, we report the development of an application named DNAda capable of writing automation instructions for any given DNA construct design generated by the J5 DNA assembly program. We also describe the automation pipeline and several useful features. The pipeline is particularly useful for the construction

Molecular BiologyBiochemistry, Genetics and Molecular Biology

대표 연구 분야

Molecular BiologyPharmacologyPlant ScienceBiomedical EngineeringComputer Graphics and Computer-Aided DesignSignal Processing

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