• 제목/요약/키워드: terminal region

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Comparative analysis of AGPase proteins and conserved domains in sweetpotato (Ipomoea batatas (L.) Lam.) and its two wild relatives

  • Nie, Hualin;Kim, Sujung;Kim, Jongbo;Kwon, Suk-Yoon;Kim, Sun-Hyung
    • Journal of Plant Biotechnology
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    • 제49권1호
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    • pp.39-45
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    • 2022
  • Conserved domains are defined as recurring units in molecular evolution and are commonly used to interpret the molecular function and biochemical structure of proteins. Herein, the ADP-glucose pyrophosphorylase (AGPase) amino acid sequences of three species of the Ipomoea genus [Ipomoea trifida, I. triloba, and I. batatas (L.) Lam. (sweetpotato)] were identified to investigate their physicochemical and biochemical characteristics. The molecular weight, isoelectric point, instability index, and grand average of hyropathy markedly differed among the three species. The aliphatic index values of sweetpotato AGPase proteins were higher in the small subunit than in the large subunit. The AGPase proteins from sweetpotato were found to contain an LbH_G1P_AT_C domain in the C-terminal region and various domains (NTP_transferase, ADP_Glucose_PP, or Glyco_tranf_GTA) in the N-terminal region. Conversely, most of its two relatives (I. trifida and I. triloba) were found to only contain the NTP_transferase domain in the N-terminal region. These findings suggested that these conserved domains were species-specific and related to the subunit types of AGPase proteins. The study may enable research on the AGPase-related specific characteristics of sweetpotatoes that do not exist in the other two species, such as starch metabolism and tuberization mechanism.

Z-DNA-Containing Long Terminal Repeats of Human Endogenous Retrovirus Families Provide Alternative Promoters for Human Functional Genes

  • Lee, Du Hyeong;Bae, Woo Hyeon;Ha, Hongseok;Park, Eun Gyung;Lee, Yun Ju;Kim, Woo Ryung;Kim, Heui-Soo
    • Molecules and Cells
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    • 제45권8호
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    • pp.522-530
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    • 2022
  • Transposable elements (TEs) account for approximately 45% of the human genome. TEs have proliferated randomly and integrated into functional genes during hominoid radiation. They appear as right-handed B-DNA double helices and slightly elongated left-handed Z-DNAs. Human endogenous retrovirus (HERV) families are widely distributed in human chromosomes at a ratio of 8%. They contain a 5'-long terminal repeat (LTR)-gag-pol-env-3'-LTR structure. LTRs contain the U3 enhancer and promoter region, transcribed R region, and U5 region. LTRs can influence host gene expression by acting as regulatory elements. In this review, we describe the alternative promoters derived from LTR elements that overlap Z-DNA by comparing Z-hunt and DeepZ data for human functional genes. We also present evidence showing the regulatory activity of LTR elements containing Z-DNA in GSDML. Taken together, the regulatory activity of LTR elements with Z-DNA allows us to understand gene function in relation to various human diseases.

새로운 스트레스 단백질인 VISP의 세포내 위치 (Subcellular Localization of Novel Stress Protein VISP)

  • 문창훈;윤원준;고명석;김현주;박정우
    • 미생물학회지
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    • 제42권4호
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    • pp.271-276
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    • 2006
  • 이전의 연구 결과 어류 rhabdovirus에 감염된 세포에서 virus-inducible stress protein (VISP)의 발현이 증가함을 확인하였다. 본 연구에서는 VISP의 세포내 위치를 확인하였으며, 또한 세포내 위치 결정에 중요한 역할을 담당하는 VISP의 부위를 확인하였다. 먼저 endogenous VISP의 세포내 위치를 확인하기 위하여 CHSE-214 세포를 VISP에 대한 단클론항체를 사용하여 염색한 후 confocal microscope로 관찰하였다. 그 결과 VISP가 세포의 핵 주변에 점구조를 형성함이 확인되었다. 이를 확인하기 위하여 VISP에 enhanced green fluorescent protein (EGFP)이 붙은 fusion gene을 발현하는 plasmid를 제조하였다. EGFP-VISP를 발현하는 plasmid 벡터를 세포에 transfection 시킨 후 confocal microscope로 관찰한 결과 핵 주변에 점구조를 형성함이 확인되었다. VISP의 아미노산서열 중 핵 주변의 점구조 형성에 관여하는 부분을 확인하기 위하여 VISP의 다양한 deletion mutant들을 제조하였다. 이 mutant를 사용한 transfection 실험 결과 VISP의 C-terminal 부위(aa 612-710)가 핵주변의 점구조 형성에 중요한 역할을 담당함이 확인되었으며, 이 부분의 functional motif 분석결과 691-TLTSLLL-697 부위에 nuclear receptor binding motif가 존재함이 확인되었다. 이와 같은 결과들을 종합하면, VISP는 핵 주변에 존재하며 VISP의 C-terminal부위가 혀 주위 분포에 중요한 역할을 담당함을 알 수 있었다. 이후의 연구로부터 VISP의 핵 주위 분포가 IHNV의 성장에 미치는 영향이 확인되면 IHNV 병원성의 새로운 기작을 밝혀내는 중요한 자료가 될 것이다.

Molecular and Biochemical Studies on the DNA Replication of Bacteriophage T7: Functional Analysis of Amino-terminal Region of Gene 2.5 Protein

  • Kim, Young-Tae;Lee, Sung-Gu;Kim, Hak-Jun
    • BMB Reports
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    • 제28권6호
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    • pp.484-489
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    • 1995
  • The product of bacteriophage T7 gene 2.5 is a single-stranded DNA binding protein and plays an important role in T7 DNA replication, recombination, and repair. Genetic analysis of T7 phage defective in gene 2.5 shows that the gene 2.5 protein is essential for T7 DNA replication and growth (Kim and Richardson, 1993). The C-terminal truncated gene 2.5 protein ($GP2.5-{\Delta}21C$) cannot substitute for wild-type gene 2.5 protein in vivo; suggesting that the C-terminal domain of gene 2.5 protein is essential for protein-protein interactions (Kim and Richardson, 1994; J. Biol. Chem. 269, 5070-5078). Truncated gene 2.5 proteins lacking 19 residues ($GP2.5-{\Delta}19N$) and 39 residues ($GP2.5-{\Delta}39N$) from the amino-terminal domain were constructed by in vitro mutagenesis. $GP2.5-{\Delta}19N$ can support the growth of T7 phage lacking gene 2.5 while $GP2.5-{\Delta}39N$ cannot substitute for wild-type gene 2.5 protein in vivo; however, its ability to bind to single-stranded DNA is not affected. These results clearly demonstrate that the 20~39 amino-terminal region of gene 2.5 protein is required for T7 growth in vivo but may not be involved in DNA binding activity.

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Carboxy-Terminal Region of a Thermostable CITase from Thermoanaerobacter thermocopriae Has the Ability to Produce Long Isomaltooligosaccharides

  • Jeong, Woo Soo;Kim, Yu-Ri;Hong, Seong-Jin;Choi, Su-Jeong;Choi, Ji-Ho;Park, Shin-Young;Woo, Eui-Jeon;Kim, Young Min;Park, Bo-Ram
    • Journal of Microbiology and Biotechnology
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    • 제29권12호
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    • pp.1938-1946
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    • 2019
  • Isomaltooligosaccharides (IMOs) have good prebiotic effects, and long IMOs (LIMOs) with a degree of polymerization (DP) of 7 or above show improved effects. However, they are not yet commercially available, and require costly enzymes and processes for production. The N-terminal region of the thermostable Thermoanaerobacter thermocopriae cycloisomaltooligosaccharide glucanotransferase (TtCITase) shows cyclic isomaltooligosaccharide (CI)-producing activity owing to a catalytic domain of glycoside hydrolase (GH) family 66 and carbohydrate-binding module (CBM) 35. In the present study, we elucidated the activity of the C-terminal region of TtCITase (TtCITase-C; Met740-Phe1,559), including a CBM35-like region and the GH family 15 domain. The domain was successfully cloned, expressed, and purified as a single protein with a molecular mass of 115 kDa. TtCITase-C exhibited optimal activity at 40℃ and pH 5.5, and retained 100% activity at pH 5.5 after 18-h incubation. TtCITase-C synthesized α-1,6 glucosyl products with over seven degrees of polymerization (DP) by an α-1,6 glucosyl transfer reaction from maltopentaose, isomaltopentaose, or commercialized maltodextrins as substrates. These results indicate that TtCITase-C could be used for the production of α-1,6 glucosyl oligosaccharides with over DP7 (LIMOs) in a more cost-effective manner, without requiring cyclodextran.

Identification and Characterization of a Putative Baculoviral Transcriptional Factor IE-1 from Choristoneura fumiferana Granulovirus

  • Rashidan, Kianoush Khajeh;Nassoury, Nasha;Merzouki, Abderrazzak;Guertin, Claude
    • BMB Reports
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    • 제35권6호
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    • pp.553-561
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    • 2002
  • A gene that encodes a protein homologue to baculoviral IE-1 was identified and sequenced in the genome of the Choristoneura fumiferana granulovirus (ChfuGV). The gene has an 1278 nucleotide (nt) open-reading frame (ORF) that encodes 426 amino acids with an estimated molecular weight of 50.33 kDa. At the nucleotide level, several cis-acting regulatory elements were detected within the promoter region of the ie-1 gene of ChfuGV along with other studied granuloviruses (GVs). Two putative CCAAT elements were detected within the noncoding leader region of this gene; one was located on the opposite strand at -92 and the other at -420 nt from the putative start triplet. Two baculoviral late promoter motifs (TAAG) were also detected within the promoter region of the ie-1 gene of ChfuGV. A single polyadenylation signal, AATAAA, was located 18nt downstream of the putative translational stop codon of ie-1 from ChfuGV. At the protein level, the amino acid sequence data that was derived from the nucleotide sequence in ChfuGV IE-1 was compared to those of the Cydia pomonella granulovirus (CpGV), Xestia c-nigrum granulovirus (XcGV) and Plutella xylostella granulovirus (PxGV). The C-terminal regions of the granuloviral IE-1 sequences appeared to be more conserved when compared to the N-terminal regions. A domain, similar to the basic helix-loop-helix like (bHLH-like) domain in NPVs, was detected at the C-terminal region of IE-1 from ChfuGV (residues 387 to 414). A phylogenetic tree for baculoviral IE-1 was constructed using a maximum parsimony analysis. A phylogenetic estimation demonstrates that ChfuGV IE-1 is most closely related to that of CpGV.

Epitope Tagging with a Peptide Derived from the preS2 Region of Hepatitis B Virus Surface Antigen

  • Kang, Hyun-Ah;Yi, Gwan-Su;Yu, Myeong-Hee
    • BMB Reports
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    • 제28권4호
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    • pp.353-358
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    • 1995
  • Epitope tagging is the process of fusing a set of amino acid residues that are recognized as an antigenic determinant to a protein of interest. Tagging a protein with an epitope facilitates various immunochemical analyses of the tagged protein with a specific monoclonal antibody. The monoclonal antibody H8 has subtype specificity for an epitope derived from the preS2 region of hepatitis B virus surface antigen. Previous studies on serial deletions of the preS2 region indicated that the preS2 epitope was located in amino acid residues 130~142. To test whether the amino acid sequence in this interval is sufficient to confer on proteins the antigenicity recognizable by the antibody H8, the set of amino acid residues in the interval was tagged to the amino terminal of ${\beta}$-galactosidase and to the carboxyl terminal of the truncated $p56^{lck}$ fragment. The tagged ${\beta}$-galactosidase, expressed in Escherichia coli, maintained the enzymatic activity and was immunoprecipitated efficiently with H8. The tagged $p56^{lck}$ fragment, synthesized in an in vitro translation system, was also immunoprecipitated specifically with H8. These results demonstrate that the amino acid sequence of the preS2 region can be used efficiently for the epitope tagging approach.

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MLSB 항생제 내성인자인 ErmSF의 N-terminal 38개 아미노산 제거가 항생제 내성 효소활성에 미치는 영향 (Effect of Truncation of 38 Amino Acids in N-terminal Region of ErmSF, a MLSB Antibiotic Resistance Factor Protein, on Enzymatic Activity)

  • 이학진;진형종
    • 미생물학회지
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    • 제50권3호
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    • pp.239-244
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    • 2014
  • ErmSF는 macrolide 항생물질인 tylosin을 생성하는 Streptomyces fradiae가 보유한 4개의 항생제 내성인자 단백질 중 하나로 23S rRNA의 $A_{2058}$에 dimethylation 시킴으로써 항생제가 부착되는 것을 막음으로써 그 내성을 일으킨다. ErmSF는 다른 Erm 단백질과는 달리 긴 N-terminal end region을 가지고 있어서 그 역할을 알아보기 위해 1-38번째의 아미노산을 제거한 결손변이 단백질을 고안하고 대장균에서 발현하여 그 활성을 in vivo와 in vitro에서 관찰하였다. 결손변이 단백질을 발현하는 대장균은 결손에 의한 활성저하에 기인하여 야생형 단백질을 발현하는 대장균에 비하여 항생제에 대한 내성이 손상된 것을 관찰하였다. 세포 외 in vitro에서의 활성은 야생형 ErmSF에 비하여 약 20%가 손상된 것으로 나타났다. 이렇게 관찰된 활성의 저하는 결손 변이에 의한 활성화 부위에서 일어난 결손에 의한 것이라기 보다는 기질의 부착 또는 생성물의 효소에서의 이탈 과정이 손상되어서 나타나는 것으로 사료된다.

Effect of Polar Amino Acid Residue Substitution by Site-Directed Mutagenesis in the N-terminal Domain of Pseudomonas sp. Phytase on Enzyme Activity

  • Lee, Ga Hye;Jang, Won Je;Kim, Soyeong;Kim, Yoonha;Kong, In-Soo
    • Journal of Microbiology and Biotechnology
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    • 제30권7호
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    • pp.1104-1107
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    • 2020
  • The N-terminal domain of the Pseudomonas sp. FB15 phytase increases low-temperature activity and catalytic efficiency. In this study, the 3D structure of the N-terminal domain was predicted and substitutions for the amino acid residues of the region assumed to be the active site were made. The activity of mutants, in which alanine (A) was substituted for the original residue, was investigated at various temperatures and pH values. Significant differences in enzymatic activity were observed only in mutant E263A, suggesting that the amino acid residue at position 263 of the N-terminal domain is important in enzyme activity.