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Featured researches published by Minh Tan Nguyen.


PLOS ONE | 2014

Prokaryotic Soluble Overexpression and Purification of Bioactive Human Growth Hormone by Fusion to Thioredoxin, Maltose Binding Protein, and Protein Disulfide Isomerase

Minh Tan Nguyen; Bon-Kyung Koo; Thu Trang Thi Vu; Jung-A Song; Seon-Ha Chong; Boram Jeong; Han-Bong Ryu; Sang-Hyun Moh; Han Choe

Human growth hormone (hGH) is synthesized by somatotroph cells of the anterior pituitary gland and induces cell proliferation and growth. This protein has been approved for the treatment of various conditions, including hGH deficiency, chronic renal failure, and Turner syndrome. Efficient production of hGH in Escherichia coli (E. coli) has proven difficult because the E. coli-expressed hormone tends to aggregate and form inclusion bodies, resulting in poor solubility. In this study, seven N-terminal fusion partners, hexahistidine (His6), thioredoxin (Trx), glutathione S-transferase (GST), maltose-binding protein (MBP), N-utilization substance protein A (NusA), protein disulfide bond isomerase (PDI), and the b′a′ domain of PDI (PDIb′a′), were tested for soluble overexpression of codon-optimized hGH in E. coli. We found that MBP and hPDI tags significantly increased the solubility of the hormone. In addition, lowering the expression temperature to 18°C also dramatically increased the solubility of all the fusion proteins. We purified hGH from MBP-, PDIb′a′-, or Trx-tagged hGH expressed at 18°C in E. coli using simple chromatographic techniques and compared the final purity, yield, and activity of hGH to assess the impact of each partner protein. Purified hGH was highly pure on silver-stained gel and contained very low levels of endotoxin. On average, ∼37 mg, ∼12 mg, and ∼7 mg of hGH were obtained from 500 mL-cell cultures of Trx-hGH, MBP-hGH, and PDIb′a′-hGH, respectively. Subsequently, hGH was analyzed using mass spectroscopy to confirm the presence of two intra-molecular disulfide bonds. The bioactivity of purified hGHs was demonstrated using Nb2-11 cell.


Applied Biochemistry and Biotechnology | 2013

Expression and Purification of Biologically Active Human FGF2 Containing the b′a′ Domains of Human PDI in Escherichia coli

Jung-A Song; Bon-Kyung Koo; Seon Ha Chong; Jihye Kwak; Han-Bong Ryu; Minh Tan Nguyen; Thu Trang Thi Vu; Boram Jeong; Seong Who Kim; Han Choe

Among the members of the fibroblast growth factor (FGF) family that affect the growth, differentiation, migration, and survival of many cell types, FGF2 is the most abundant in the central nervous system. Because of its wound healing effects, FGF2 has potential as a therapeutic agent. The protein is also added to the culture media to maintain stem cells. Expression and purification procedures for FGF2 that are highly efficient and low cost have been intensively investigated for the past two decades. Our current study focuses on the purification of FGF2 fused with b′a′ domains of human protein disulfide isomerase to elevate overexpression, solubility, and stability with a simplified experimental procedure using only ion exchange chromatography, as well as on the confirmation of the biological activity of FGF2 on fibroblast Balb/c 3T3 cells and hippocampal neural cells.


Applied Biochemistry and Biotechnology | 2013

Cu/Zn Incorporation During Purification of Soluble Human EC-SOD from E. coli Stabilizes Proper Disulfide Bond Formation

Ji-Young Bae; Bon-Kyung Koo; Han-Bong Ryu; Jung-A Song; Minh Tan Nguyen; Thu Trang Thi Vu; Young-Jin Son; Hyang Kyu Lee; Han Choe

Extracellular superoxide dismutase (EC-SOD) is the only enzyme that removes superoxide radical in the extracellular space. The reduction of EC-SOD is linked to many diseases, suggesting that the protein may have therapeutic value. EC-SOD is reported to be insoluble and to make inclusion bodies when overexpressed in the cytoplasm of Escherichia coli. The refolding process has the advantage of high yield, but has the disadvantage of frequent aggregation or misfolding during purification. For the first time, this study shows that fusion with maltose-binding protein (MBP), N-utilization substance protein A, and protein disulfide isomerase enabled the soluble overexpression of EC-SOD in the cytoplasm of E. coli. MBP-tagged human EC-SOD (hEC-SOD) was purified by MBP affinity and anion exchange chromatography, and its identity was confirmed by MALDI-TOF MS analysis. The purified protein showed good enzyme activity in vitro; however, there was a difference in metal binding. When copper and zinc were incorporated into hEC-SOD before MBP tag cleavage, the enzymatic activity was higher than when the metal ions were bound to the purified protein after MBP tag cleavage. Therefore, the enzymatic activity of hEC-SOD is associated with metal incorporation and protein folding via disulfide bond.


Scientific Reports | 2017

Prokaryotic soluble expression and purification of bioactive human fibroblast growth factor 21 using maltose-binding protein

Anh Ngoc Nguyen; Jung A. Song; Minh Tan Nguyen; Bich Hang Do; Grace G. Kwon; Sang Su Park; Jiwon Yoo; Jaepyeong Jang; Jonghwa Jin; Mark J. Osborn; Yeon Jin Jang; Thu Trang Thi Vu; Heung Bum Oh; Han Choe

Human fibroblast growth factor 21 (hFGF21) has been characterized as an important regulator of glucose and lipid metabolism homeostasis. Here, to produce hFGF21 efficiently in Escherichia coli, the expression and solubility of hFGF21 were tested and optimised by fusing the protein with one of eight tags: hexahistidine (His6), thioredoxin (Trx), small ubiquitin-related modifier (Sumo), glutathione S-transferase (GST), maltose-binding protein (MBP), N-utilisation substance protein A (NusA), human protein disulphide isomerase (PDI), and the b′a′ domain of PDI (PDIb′a′). Each tag increased solubility of the protein when the expression temperature was 18°C. Unlike many other tags that were tested, MBP significantly enhanced the solubility of the protein also in the culture condition at 37°C. Thus, the MBP-hFGF21 construct was further pursued for optimisation of affinity chromatography purification. After tag removal, 8.1 mg of pure hFGF21 was obtained as a final product from 500 mL of starting culture. The protein was then characterised by mass spectroscopy and an in vitro functional assay using NIH-3T3 cells transfected with a β-klotho reporter gene. These characteristics are similar to those of commercial hFGF21. Thus, the MBP tag is useful for efficient prokaryotic production and purification of bioactive hFGF21.


Scientific Reports | 2017

Granulocyte colony-stimulating factor (GCSF) fused with Fc Domain produced from E. coli is less effective than Polyethylene Glycol-conjugated GCSF

Bich Hang Do; Hyo Jeong Kang; Jung A. Song; Minh Tan Nguyen; Sangsu Park; Jiwon Yoo; Anh Ngoc Nguyen; Grace G. Kwon; Jaepyeong Jang; Mihee Jang; Sunju Lee; Seoungjun So; Seongrak Sim; Kyung Jin Lee; Mark J. Osborn; Han Choe

Human granulocyte colony-stimulating factor (GCSF) is a well-known cytokine for neutropenia treatment. However, daily injections are required due to the short circulating half-life of the protein. To overcome this bottleneck, we fused GCSF with the Fc domain of IgG1 at the C terminus (GCSF-Fc) and with the maltose binding protein (MBP) tag at the N-terminus and expressed it as a soluble protein in the cytoplasm of E. coli. We also conjugated PEG aldehyde to GCSF to make PEG-GCSF. The bioactivities of GCSF-Fc and PEG-GCSF were similar to native GCSF using the mouse M-NFS-60 myelogenous leukemia cell line. The EC50 dose-response curves for GCSF, GCSF-Fc and PEG-GCSF were 37 ± 12 pM, 75 ± 13.5 pM and 46 ± 5.5 pM, respectively. When the proteins were injected into neutropenic rats, the group injected with PEG-GCSF showed the highest and fastest recovery of neutrophils, followed by GCSF-Fc and GCSF. ELISA assay revealed the PEG-GCSF had the longest plasma circulation (>72 h), followed by GCSF-Fc (>48 h) and GCSF (~24 h), which is consistent with the in vivo activities of the proteins. In summary, the GCSF-Fc purified from E. coli was not as efficient as PEG-GCSF in treating neutropenic rats.


Biotechnology and Bioprocess Engineering | 2017

Soluble expression and purification of bioactive interleukin 33 in E. coli

Bich Hang Do; Sangsu Park; Grace G. Kwon; Minh Tan Nguyen; Hyo Jeong Kang; Jung A. Song; Jiwon Yoo; Anh Ngoc Nguyen; Jaepyeong Jang; Mihee Jang; Sunju Lee; Seoungjun So; Sungrak Sim; Jonghwa Jin; Kyung Jin Lee; Mark J. Osborn; Han Choe

Interleukin-33 (IL-33) is one of the important alarmins of the immune system and possesses dual functions as an anti- or pro-inflammatory molecule. The production of this cytokine in E. coli is hampered by the insoluble expression in the cytoplasm, resulting in inclusion body formation. In this study, the expression of IL-33 was optimized by fusing the N-terminus of IL-33 with several solubilizing tags that act as chaperones for proper protein folding: maltose binding protein (MBP), b´a´ domain of protein disulfide isomerase (PDIb´a´) and glutathione Stransferase (GST). The expression of the fusion proteins was stimulated by 0.5 mM IPTG at different temperatures, 37, 30, 25, and 18°C. As a result, IL-33 was expressed highly and in soluble form in the cytoplasm of E. coli when fused with MBP or PDIb´a´ tags in the presence of 0.5 mM IPTG at 25 or 30°C. We describe a simple purification procedure of IL-33 from the PDIb´a´-IL-33 construct using immobilized metal affinity chromatography (IMACs) with supplementary of tobacco etch virus (TEV) protease for tag removal. The high bioactivity of purified IL-33 on the proliferation and activation of macrophages was confirmed by MTT and nitrite releasing assays using RAW 264.7 These data show an improved method for producing high grade and yield IL-33.


Molecular Biology Reports | 2015

Soluble overexpression and purification of bioactive human CCL2 in E. coli by maltose-binding protein.

Thu Trang Thi Vu; Bon Kyung Koo; Jung A. Song; Seon Ha Chong; Cho Rong Park; Minh Tan Nguyen; Boram Jeong; Han Bong Ryu; Jae Young Seong; Yeon Jin Jang; Robert Robinson; Han Choe


PLOS ONE | 2016

Prokaryotic Soluble Overexpression and Purification of Human VEGF165 by Fusion to a Maltose Binding Protein Tag

Minh Tan Nguyen; Martin Krupa; Bon-Kyung Koo; Jung-A Song; Thu Trang Thi Vu; Bich Hang Do; Anh Ngoc Nguyen; Taewook Seo; Jiwon Yoo; Boram Jeong; Jonghwa Jin; Kyung Jin Lee; Heung-Bum Oh; Han Choe


PLOS ONE | 2013

Soluble expression of human leukemia inhibitory factor with protein disulfide isomerase in Escherichia coli and its simple purification.

A. Song Jung; Bon-Kyung Koo; Seon-Ha Chong; Kyunhoo Kim; Dong Kyu Choi; Thu Trang Thi Vu; Minh Tan Nguyen; Boram Jeong; Han-Bong Ryu; Injune Kim; Yeon Jin Jang; Robert Robinson; Han Choe


Journal of Molecular Microbiology and Biotechnology | 2016

Soluble Prokaryotic Expression and Purification of Human Interferon Alpha-2b Using a Maltose-Binding Protein Tag

Thu Trang Thi Vu; Boram Jeong; Martin Krupa; Uijung Kwon; Jung-A Song; Bich Hang Do; Minh Tan Nguyen; Taewook Seo; Anh Ngoc Nguyen; Chul Hyun Joo; Han Choe

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