• 제목/요약/키워드: coupled transcription/translation

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무세포 단백질합성 시스템 기반의 epoxide hydrolase 발현 및 활성 분석 (Assay of Epoxide Hydrolase Activity Based on PCR-linked in vitro Coupled Transcription and Translation System.)

  • 이옥경;김희숙;이은열
    • 생명과학회지
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    • 제15권5호
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    • pp.779-782
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    • 2005
  • Coupled transcription/translation cocktail을 이용하여 R. glutinis EH 유전자를 in vitro에서 합성하고 활성을 평가하였다. SDS-PAGE 및 immunoblotting을 통하여 45 kDa 크기의 EH 단백질이 발현되었음을 확인하였고, NBP assay 및 chiral GC 분석을 통해 발현된 단백질이 (R)-styrene oxide에 대한 입체선택성이 있음을 확인하였다. 따라서 무세포 단백질 합성 시스템을 이용하여 입체선택성을 유지시킨 EH 유전자 발현이 가능하며, 이러한 방법은 putative EH 유전자 탐색 등에 효율적으로 응용될 것이다.

Nuclear UPF1 Is Associated with Chromatin for Transcription-Coupled RNA Surveillance

  • Hong, Dawon;Park, Taeyoung;Jeong, Sunjoo
    • Molecules and Cells
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    • 제42권7호
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    • pp.523-529
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    • 2019
  • mRNA quality is controlled by multiple RNA surveillance machineries to reduce errors during gene expression processes in eukaryotic cells. Nonsense-mediated mRNA decay (NMD) is a well-characterized mechanism that degrades error-containing transcripts during translation. The ATP-dependent RNA helicase up-frameshift 1 (UPF1) is a key player in NMD that is mostly prevalent in the cytoplasm. However, recent studies on UPF1-RNA interaction suggest more comprehensive roles of UPF1 on diverse forms of target transcripts. Here we used subcellular fractionation and immunofluorescence to understand such complex functions of UPF1. We demonstrated that UPF1 can be localized to the nucleus and predominantly associated with the chromatin. Moreover, we showed that UPF1 associates more strongly with the chromatin when the transcription elongation and translation inhibitors were used. These findings suggest a novel role of UPF1 in transcription elongation-coupled RNA machinery in the chromatin, as well as in translation-coupled NMD in the cytoplasm. Thus, we propose that cytoplasmic UPF1-centric RNA surveillance mechanism could be extended further up to the chromatin-associated UPF1 and co-transcriptional RNA surveillance. Our findings could provide the mechanistic insights on extensive regulatory roles of UPF1 for many cellular RNAs.

SR Proteins: Binders, Regulators, and Connectors of RNA

  • Jeong, Sunjoo
    • Molecules and Cells
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    • 제40권1호
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    • pp.1-9
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    • 2017
  • Serine and arginine-rich (SR) proteins are RNA-binding proteins (RBPs) known as constitutive and alternative splicing regulators. As splicing is linked to transcriptional and post-transcriptional steps, SR proteins are implicated in the regulation of multiple aspects of the gene expression program. Recent global analyses of SR-RNA interaction maps have advanced our understanding of SR-regulated gene expression. Diverse SR proteins play partially overlapping but distinct roles in transcription-coupled splicing and mRNA processing in the nucleus. In addition, shuttling SR proteins act as adaptors for mRNA export and as regulators for translation in the cytoplasm. This mini-review will summarize the roles of SR proteins as RNA binders, regulators, and connectors from transcription in the nucleus to translation in the cytoplasm.

Enhanced In Vitro Protein Synthesis Through Optimal Design of PCR Primers

  • Ahn Jin-Ho;Son Jeong-Mi;Hwang Mi-Yeon;Kim Tae-Wan;Park Chang-Kil;Choi Cha-Yong;Kim Dong-Myung
    • Journal of Microbiology and Biotechnology
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    • 제16권3호
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    • pp.355-359
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    • 2006
  • The functional stability of mRNA is one of the crucial factors affecting the efficiency of in vitro translation. As the rapid degradation of mRNA in the cell extract (S30 extract) causes early termination of the translational reactions, extending the mRNA half-life will improve the productivity of the in vitro protein synthesis. Thus, a simple PCR-based method is introduced to increase the stability of mRNA in an S30 extract. The target genes are PCR-amplified with primers designed to make the ends of the transcribed mRNA molecule anneal to each other. When compared with normal mRNA, the mRNA with the annealing sequences resulted in an approximately 2-fold increase of protein synthesis in an in vitro translation reaction. In addition, sequential transcription and translation reactions in a single tube enabled direct protein expression from the PCR-amplified genes without any separate purification of the mRNA.

P22-Based Challenge Phage Constructs to Study Protein-Protein Interactions between the $\sigma$$^{54}$-Dependent Promoter, dctA, and Its Transcriptional Regulators

  • Song, Jeong-Min;Kim, Eungbin;Lee, Joon H.
    • Journal of Microbiology
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    • 제40권3호
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    • pp.205-210
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    • 2002
  • To study interactions between $C_{4}$-dicarboxylic acid transport protein D and E$\sigma$$^{54}$ in the dctA promoter regulatory region, we used the challenge phage system. An ant'-`lac fusion was recombined onto the challenge phage, and this ant'-`lac fusion along with Pant and the R. meliloti dctA promoter regulatory region were cloned onto a plasmid. The plasmid bearing the ant'-`lac fusion was used as a reporter plasmid in a coupled transcription-translation system. Addition of purified $\sigma$$^{54}$ to the coupled system specifically repressed transcription of the plasmid-borne ant'-`lac fusion. When DCTD was added along with $\sigma$$^{54}$ to the coupled system, transcription of the ant'-`lac fusion was even further repressed, suggesting that DCTD may stabilize closed complexes between E$\sigma$$^{54}$ and the dctA promoter.

Zeolite-Mediated Cation Exchange Enhances the Stability of mRNA during Cell-Free Protein Synthesis

  • Kim, You-Eil;Kim, Dong-Myung;Choi, Cha-Yong
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제11권3호
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    • pp.258-261
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    • 2006
  • The addition of zeolite particles enhances the stability of mRNA molecules in a cell-free protein synthesis system. When $20{\mu}g/{\mu}L$ of zeolite (Y5.4) is added to a reaction mixture of cell-free protein synthesis, a substantial increase in protein synthesis is observed. The stabilizing effect of zeolite is most dearly observed in an in vitro translation reaction directed by purified mRNA, as opposed to a coupled transcription and translation reaction. Upon the addition of zeolite in the in vitro translation reaction, the life span of the mRNA molecules is substantially extended, leading to an 80% increase in protein synthesis. The effect of zeolite upon the mRNA stability appears be strongly related to the cation exchange (potassium to sodium) reaction. Our results demonstrate the possibility of modifying this biological process using heterogeneous, non-biological substances in a cell-free protein synthesis system.

Molecular Regulation of Pyrimidine Nucleotide Synthesis in Bacterial Genomes

  • Ghim, Sa-Youl
    • 한국미생물생명공학회:학술대회논문집
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    • 한국미생물생명공학회 2001년도 Proceedings of 2001 International Symposium
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    • pp.165-168
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    • 2001
  • Regulation of pyrimidine nucleotide synthesis has been studied extensively in enteric bacteria and Bacillus species. Varieties of control modes have been proposed for regulation of pyrimidine nucleotide biosynthetic (pyr) genes. In Bacillus caldolyticus and B. subtilis, it has been proved that pyrimidine de novo biosynthetic operon is controlled by a regulatory protein PyrR-mediated attenuation. Another Gram-positive bacteria including Enterococcus faecalis, Lactobacillus plantarum, and wctococcus lactis have been found to constitute a pyr gene cluster containing the pyrR gene. In addition, it has been proposed that the structure of the 5' leader region of the Gram-negative extreme thermophile Thermus strain Z05 pyr operon provides a novel mechanism of PyrR-dependent coupled transcription-translation attenuation. Bacterial genome sequencing projects have identified the PyrR homologues in Haemophilus influenzae, Synechocystis sp., Mycobacterium tuberculosis, Streptococcus pneumoniae, S. pyogenes, and Clostridium acetobutylicum, which are currently investigating for their physiological functions.

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In Vitro Combinatorial Mutagenesis of the 65th and 222nd Positions of the Green Fluorescent Protein of Aequarea victoria

  • Nakano, Hideo;Okumura, Reiko;Goto, Chinatsu;Yamane, Tsuneo
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제7권5호
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    • pp.311-315
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    • 2002
  • By the in vitro combinatorial mutagenesis, which is a sequential reaction of PCR mutagenesis and in vitro coupled transcription/translation with Escherichia coli S30 extract, S65 and E222 of green fluorescent protein of Aequarea victoria were comprehensively changed to all possible combinations of amino acids, thus totally 400 mutant (including a wild type) proteins were simultaneously produced and their fluorescent properties were analyzed. Although a few mutations had been reported so far at the 222nd position, replacement E222 to all other19 amino acids gave fluorescent signal to the mutants by changing Ser 65 to Ala together. Among the mutants, replacement to G, A, S, Q, H and C gave relatively high fluorescence. The in vitro combinatorial mutagenesis, therefore, has been proved valuable for comprehensive structure-function studies of proteins.

Transcriptomic Approach for Understanding the Adaptation of Salmonella enterica to Contaminated Produce

  • Park, Sojung;Nam, Eun woo;Kim, Yeeun;Lee, Seohyeon;Kim, Seul I;Yoon, Hyunjin
    • Journal of Microbiology and Biotechnology
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    • 제30권11호
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    • pp.1729-1738
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    • 2020
  • Salmonellosis is a form of gastroenteritis caused by Salmonella infection. The main transmission route of salmonellosis has been identified as poorly cooked meat and poultry products contaminated with Salmonella. However, in recent years, the number of outbreaks attributed to contaminated raw produce has increased dramatically. To understand how Salmonella adapts to produce, transcriptomic analysis was conducted on Salmonella enterica serovar Virchow exposed to fresh-cut radish greens. Considering the different Salmonella lifestyles in contact with fresh produce, such as motile and sessile lifestyles, total RNA was extracted from planktonic and epiphytic cells separately. Transcriptomic analysis of S. Virchow cells revealed different transcription profiles between lifestyles. During bacterial adaptation to fresh-cut radish greens, planktonic cells were likely to shift toward anaerobic metabolism, exploiting nitrate as an electron acceptor of anaerobic respiration, and utilizing cobalamin as a cofactor for coupled metabolic pathways. Meanwhile, Salmonella cells adhering to plant surfaces showed coordinated upregulation in genes associated with translation and ribosomal biogenesis, indicating dramatic cellular reprogramming in response to environmental changes. In accordance with the extensive translational response, epiphytic cells showed an increase in the transcription of genes that are important for bacterial motility, nucleotide transporter/metabolism, cell envelope biogenesis, and defense mechanisms. Intriguingly, Salmonella pathogenicity island (SPI)-1 and SPI-2 displayed up- and downregulation, respectively, regardless of lifestyles in contact with the radish greens, suggesting altered Salmonella virulence during adaptation to plant environments. This study provides molecular insights into Salmonella adaptation to plants as an alternative environmental reservoir.

대장균과 식물시스템에서 재조합 인간 prominiinsulin 생합성 분석 (Biosynthesis of recombinant human prominiinsulin in E. coli and plant systems)

  • 최유진;박수현;김지수;위수진;박기영
    • Journal of Plant Biotechnology
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    • 제40권3호
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    • pp.169-177
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    • 2013
  • 최근 급속도로 당뇨병 환자가 증가하면서 인슐린 시장이 크게 성장하고 있다. 또한 최근 식물체를 이용하여 의약용 단백질 생산이 경제적인 측면과 안정성 측면에서 매우 효과적임이 보고되고 있어 이를 이용한 분자농업이 주목을 받고 있다. 본 연구에서는 인슐린 단백질을 식물체에서 생산하기 위한 유전자 발현 construct를 설계하기 위한 실험으로서 식물발현용 preprominiinsulin construct를 제조하기 위한 단계적 실험을 수행하였다. 우선 proinsulin이 무세포 식물 전사/번역시스템에서 성공적으로 발현됨을 확인하였다. Prominiinsulin construct를 제조하여 대장균에서 발현시키는데 성공하였으며, 이를 트립신으로 절단한 후 인간 항인슐린 항체를 이용한 western 분석을 통하여 효과적으로 A-펩타이드와 B-펩타이드가 형성되며 이후 적절하게 접힘이 일어나고 hexamer로 조립됨을 확인하였다. 이후 식물체에서 재조합 인슐린 유전자가 발현되는지를 확인하기 위하여 RFP 결합 construct를 제조하여 담배의 현탁배양세포인 BY-2 세포에 형질전환시켜 RFP 결합 preprominiinsulin이 성공적으로 발현됨을 확인 하였다. 이러한 성공적인 연구 결과를 토대로 향후 이 construct는 RFP 단백질을 제거하여 35S 프로모터에 직접 유도되는 [N 말단 ${\rightarrow}$ tobacco E2 시그널 펩타이드 ${\rightarrow}$ B-펩타이드(1-29 AA) ${\rightarrow}$ AAK ${\rightarrow}$ A-펩타이드(1-21 AA) ${\rightarrow}$ RR ${\rightarrow}$ His6 ${\rightarrow}$ KDEL ${\rightarrow}$ C 말단] construct를 제조하여 담배 식물체에 형질전환시켜 분자농업을 통해 인간 인슐린 단백질을 생산하는데 활용하고자 한다.