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Dive into the research topics where Myung Hyun Noh is active.

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Featured researches published by Myung Hyun Noh.


Biotechnology and Bioengineering | 2018

Production of itaconic acid from acetate by engineering acid-tolerant Escherichia coli W

Myung Hyun Noh; Hyun Gyu Lim; Sung Hwa Woo; Jinyi Song; Gyoo Yeol Jung

Utilization of abundant and cheap carbon sources can effectively reduce the production cost and enhance the economic feasibility. Acetate is a promising carbon source to achieve cost‐effective microbial processes. In this study, we engineered an Escherichia coli strain to produce itaconic acid from acetate. As acetate is known to inhibit cell growth, we initially screened for a strain with a high tolerance to 10 g/L of acetate in the medium, and the W strain was selected as the host. Subsequently, the WC strain was obtained by overexpression of cad (encoding cis‐aconitate decarboxylase) using a synthetic promoter and 5′ UTR. However, the WC strain produced only 0.13 g/L itaconic acid because of low acetate uptake. To improve the production, the acetate assimilating pathway and glyoxylate shunt pathway were amplified by overexpression of pathway genes as well as its deregulation. The resulting strain, WCIAG4 produced 3.57 g/L itaconic acid (16.1% of theoretical maximum yield) after 88 hr of fermentation with rapid acetate assimilation. These efforts support that acetate can be a potential feedstock for biochemical production with engineered E. coli.


Journal of Agricultural and Food Chemistry | 2018

Rediscovering Acetate Metabolism: Its Potential Sources and Utilization for Biobased Transformation into Value-Added Chemicals

Hyun Gyu Lim; Ji Hoon Lee; Myung Hyun Noh; Gyoo Yeol Jung

One of the great advantages of microbial fermentation is the capacity to convert various carbon compounds into value-added chemicals. In this regard, there have been many efforts to engineer microorganisms to facilitate utilization of abundant carbon sources. Recently, the potential of acetate as a feedstock has been discovered; efforts have been made to produce various biochemicals from acetate based on understanding of its metabolism. In this review, we discuss the potential sources of acetate and summarized the recent progress to improve acetate utilization with microorganisms. Furthermore, we also describe representative studies that engineered microorganisms for the production of biochemicals from acetate.


Metabolic Engineering | 2018

Synthetic auxotrophs for stable and tunable maintenance of plasmid copy number

Chae Won Kang; Hyun Gyu Lim; Jina Yang; Myung Hyun Noh; Sang Woo Seo; Gyoo Yeol Jung

Although plasmid-based expression systems have advantages in multi-copy expression of genes, heterogeneity of plasmid copy number (PCN) in individual cells is inevitable even with the addition of antibiotics. Here, we developed a synthetic auxotrophic system for stable and tunable maintenance of the PCN in Escherichia coli without addition of antibiotics. This auxotroph expresses infA, one of the essential genes encoding a translation initiation factor, on a plasmid instead of on the chromosome. With this system, the gene expression was stably maintained for 40 generations with minimized cell-to-cell variation under antibiotic-free conditions. Moreover, varying the expression level of infA enabled us to rationally tune the PCN by more than 5.6-fold. This antibiotic-free PCN control system significantly improved the production of itaconic acid and lycopene compared to the conventional system based on antibiotics (2-fold). Collectively, the developed strategy could be a platform for the production of value-added products in antibiotic-free cultivation.


Fems Microbiology Letters | 2018

Molecular parts and genetic circuits for metabolic engineering of microorganisms

Seong Gyeong Kim; Myung Hyun Noh; Hyun Gyu Lim; Sungho Jang; Sungyeon Jang; Mattheos A. G. Koffas; Gyoo Yeol Jung

Microbial conversion of biomass into value-added biochemicals is a highly sustainable process compared to petroleum-based production. In this regard, microorganisms have been engineered via simple overexpression or deletion of metabolic genes to facilitate the production. However, the producer microorganisms require complex regulatory circuits to maximize productivity and performance. To address this issue, diverse genetic circuits have been developed that allow cells to minimize their metabolic burden, overcome metabolic imbalances and respond to a dynamically changing environment. In this review, we briefly explain the basic strategy for constructing genetic circuits by assembling molecular parts such as input, operation and output modules. Next, we describe recent applications of the circuits in the metabolic engineering of microorganisms to improve biochemical production. Beyond those achievements, genetic circuits will facilitate more innovative approaches to future strain development through mining and engineering new genetic elements and improving the complexity of genetic circuit design.


ACS Synthetic Biology | 2018

Novel Hybrid Input Part Using Riboswitch and Transcriptional Repressor for Signal Inverting Amplifier

Sungyeon Jang; Sungho Jang; Myung Hyun Noh; Hyun Gyu Lim; Gyoo Yeol Jung

Genetic circuits are composed of input, logic, and output parts. Construction of complex circuits for practical applications requires numerous tunable genetic parts. However, the limited diversity and complicated tuning methods used for the input parts hinders the scalability of genetic circuits. Therefore, a new type of input part is required that responds to diverse signals and enables easy tuning. Here, we developed RNA-protein hybrid input parts that combine a riboswitch and orthogonal transcriptional repressors. The hybrid inputs successfully regulated the transcription of an output in response to the input signal detected by the riboswitch and resulted in signal inversion because of the expression of transcriptional repressors. Dose-response parameters including fold-change and half-maximal effective concentration were easily modulated and amplified simply by changing the promoter strength. Furthermore, the hybrid input detected both exogenous and endogenous signals, indicating potential applications in metabolite sensing. This hybrid input part could be highly extensible considering the rich variety of components.


ACS Synthetic Biology | 2016

Optimum Rebalancing of the 3-Hydroxypropionic Acid Production Pathway from Glycerol in Escherichia coli.

Hyun Gyu Lim; Myung Hyun Noh; Jun Hong Jeong; Sunghoon Park; Gyoo Yeol Jung


Metabolic Engineering | 2017

Precise flux redistribution to glyoxylate cycle for 5-aminolevulinic acid production in Escherichia coli

Myung Hyun Noh; Hyun Gyu Lim; Sunghoon Park; Sang Woo Seo; Gyoo Yeol Jung


한국생물공학회 학술대회 | 2017

Pathway Optimization to Produce 3-Hydroxypropionic Acid From Glycerol In Escherichia Coli

Ji Hun Lee; Hyun Gyu Lim; Myung Hyun Noh; Sunghoon Park; Gyoo Yeol Jung


한국생물공학회 학술대회 | 2016

Optimal Pathway Amplification to Produce 3-Hydroxypropionic Acid from Glycerol in Escherichia coli

Hyun Gyu Lim; Myung Hyun Noh; Sunghoon Park; Gyoo Yeol Jung


한국생물공학회 학술대회 | 2016

Engineering Escherichia coli through synthetic biology based combinational approaches to produce coenzyme B12

Myung Hyun Noh; Hyun Gyu Lim; Sunghoon Park; Gyoo Yeol Jung

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Gyoo Yeol Jung

Pohang University of Science and Technology

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Hyun Gyu Lim

Pohang University of Science and Technology

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Sunghoon Park

Pusan National University

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Sang Woo Seo

Pohang University of Science and Technology

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Sungho Jang

Pohang University of Science and Technology

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Sungyeon Jang

Pohang University of Science and Technology

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Chae Won Kang

Pohang University of Science and Technology

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Jina Yang

Pohang University of Science and Technology

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Jinyi Song

Pohang University of Science and Technology

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Jun Hong Jeong

Pohang University of Science and Technology

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