• 제목/요약/키워드: Promoter-10 region

검색결과 388건 처리시간 0.028초

Single Nucleotide Polymorphisms linked to the SlMYB12 Gene that Controls Fruit Peel Color in Domesticated Tomatoes (Solanum lycopersicum L.)

  • Kim, Bichsaem;Kim, Nahui;Kang, Jumsoon;Choi, Youngwhan;Sim, Sung-Chur;Min, Sung Ran;Park, Younghoon
    • 원예과학기술지
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    • 제33권4호
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    • pp.566-574
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    • 2015
  • Yellow or transparent fruit peel color is caused by the accumulation or lack of naringenin chalcone (NG, C) in fruit peel and determines the red or pink appearance of tomato fruit, respectively. NGC biosynthesis is regulated by the SlMYB12 gene of the Y locus on chromosome 1, and DNA markers derived from SlMYB12 would be useful for marker-assisted selection (MAS) of tomato fruit color. To develop a gene-based marker, 4.9 kb of the SlMYB12 gene including a potential promoter region was sequenced from the red-fruited (YY) line 'FCR' and pink-fruited (yy) line 'FCP'. Sequence alignment of these SlMYB12 alleles revealed no sequence variations between 'FCR' and 'FCP'. To identify SlMYB12-linked single nucleotide polymorphisms (SNPs), 'FCR' and 'FCP' were genotyped using a SolCAP Tomato SNP array and CAPS markers (CAPS-456, 531, 13762, and 38123) were developed from the four SNPs (solcap_snp_sl_456, 531, 13762, and 38123) most closely flanking the SlMYB12. These CAPS markers were mapped using $F_2$ plants derived from 'FCR' ${\times}$ 'FCP'. The map positions of the fruit peel color locus (Y) were CAPS-13762 (0 cM) - 456 (11.09 cM) - Y (15.71 cM) - 38123 (17.82 cM) - 531 (30.86 cM), and the DNA sequence of SlMYB12 was physically anchored in the middle of CAPS-456 and CAPS-38123, indicating that fruit peel color in domesticated tomato is controlled by SlMYB12. A total of 64 SolCAP tomato germplasms were evaluated for their fruit peel color and SNPs located between solcap_snp_sl_456 and 38123. Seven SNPs that were detected in this interval were highly conserved for pink-fruited accessions and specific to transparent fruit peel traits, as depicted by a phenetic tree of 64 accessions based on the seven SNPs.

형질전환 벼에서 brazzein 감미단백질의 안정적인 발현 (Stable expression of brazzein protein, a new type of alternative sweetener in transgenic rice)

  • 이예림;샤히나;이인혜;정여진;박소영;조용구;강권규;정유진
    • Journal of Plant Biotechnology
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    • 제45권1호
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    • pp.63-70
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    • 2018
  • Brazzein은 열대식물인 P. brazzeana Baillon의 과실에서 분리된 가장 작은 감미단백질로 토착민들의 단맛원료로 사용되어 왔다. Brazzein은 sucrose보다 분자량 기준으로 500 ~ 2000배, 몰 기준으로 9500배 당도가 높아 감미료로써 매우 높은 평가를 받고 있다. 그러나 이 감미단백질은 재배가 어렵고 생산 비용이 높아서 brazzein 단백질의 이용 가능성을 높이기 위한 대체 생산 시스템으로 형질전환 식물체 육성 하고자 하였다. 본 연구에서는 brazzein 관련 유전자를 벼에 도입하기 위하여 식물형질전환용 Ti-plasmid에 $2{\times}CaMV\;35S$ 프로모터에 의해 지배되어 발현하도록 하고, 선발 마커로 bar 유전자가 삽입된 식물발현 벡터를 구축하여 A. tumefaciens EHA105에 형질전환시켜 17개의 재분화 식물체를 육성하였다. 17개 재분화 식물체는 PCR 및 RT-PCR 분석을 통하여 유전자 도입 및 발현을 확인하였으며, TaqMan PCR을 통해 single copy로 도입된 T0 세대 9개체를 선발하였다. 또한 FST 분석을 통하여 도입 유전자가 intergenic으로 삽입된 개체 5개를 선발하였다. 이들 5개체를 이용하여 western blot 분석에 의해 단백질 발현량을 분석한 결과 선발된 모든 개체에서 발현 밴드를 확인하였다. 그 중 brazzein 단백질의 발현량이 높은 개체를 TG11으로 계통화하여 후대 종자를 육성하였다. TG11 계통은 천연 감미료 brazzein을 생산하는 새로운 벼 품종을 개발하기 위한 육종 소재로 활용 가능하다고 시사된다.

MAGED4 Expression in Glioma and Upregulation in Glioma Cell Lines with 5-Aza-2'-Deoxycytidine Treatment

  • Zhang, Qing-Mei;Shen, Ning;Xie, Sha;Bi, Shui-Qing;Luo, Bin;Lin, Yong-Da;Fu, Jun;Zhou, Su-Fang;Luo, Guo-Rong;Xie, Xiao-Xun;Xiao, Shao-Wen
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권8호
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    • pp.3495-3501
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    • 2014
  • Melanoma-associated antigen (MAGE) family genes have been considered as potentially promising targets for anticancer immunotherapy. MAGED4 was originally identified as a glioma-specific antigen. Current knowledge about MAGED4 expression in glioma is only based on mRNA analysis and MAGED4 protein expression has not been elucidated. In the present study, we investigated this point and found that MAGED4 mRNA and protein were absent or very lowly expressed in various normal tissues and glioma cell line SHG44, but overexpressed in glioma cell lines A172,U251,U87-MG as well as glioma tissues, with significant heterogeneity. Furthermore, MAGED4 protein expression was positively correlated with the glioma type and grade. We also found that the expression of MAGED4 inversely correlated with the overall methylation status of the MAGED4 promoter CpG island. Furthermore, when SHG44 and A172 with higher methylation were treated with the DNA demethylating agent 5-aza-2'-deoxycytidine (5-AZA-CdR) reactivation of MAGED4 mRNA was mediated by significant demethylation in SHG44 instead of A172. However, 5-AZA-CdR treatment had no effect on MAGED4 protein in both SHG44 and A172 cells. In conclusion, MAGED4 is frequently and highly expressed in glioma and is partly regulated by DNA methylation. The results suggest that MAGED4 might be a promising target for glioma immunotherapy combined with 5-AZA-CdR to enhance its expression and eliminate intratumor heterogeneity.

Cloning and Characterization of an Endoglucanase Gene from Actinomyces sp. Korean Native Goat 40

  • Kim, Sung Chan;Kang, Seung Ha;Choi, Eun Young;Hong, Yeon Hee;Bok, Jin Duck;Kim, Jae Yeong;Lee, Sang Suk;Choi, Yun Jaie;Choi, In Soon;Cho, Kwang Keun
    • Asian-Australasian Journal of Animal Sciences
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    • 제29권1호
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    • pp.126-133
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    • 2016
  • A gene from Actinomyces sp. Korean native goat (KNG) 40 that encodes an endo-${\beta}$-1,4-glucanase, EG1, was cloned and expressed in Escherichia coli (E. coli) $DH5{\alpha}$. Recombinant plasmid DNA from a positive clone with a 3.2 kb insert hydrolyzing carboxyl methyl-cellulose (CMC) was designated as pDS3. The entire nucleotide sequence was determined, and an open-reading frame (ORF) was deduced. The ORF encodes a polypeptide of 684 amino acids. The recombinant EG1 produced in E. coli $DH5{\alpha}$ harboring pDS3 was purified in one step using affinity chromatography on crystalline cellulose and characterized. Sodium dodecyl sulfate-polyacrylamide gel electrophoresis/zymogram analysis of the purified enzyme revealed two protein bands of 57.1 and 54.1 kDa. The amino terminal sequences of these two bands matched those of the deduced ones, starting from residue 166 and 208, respectively. Putative signal sequences, a Shine.Dalgarno-type ribosomal binding site, and promoter sequences related to the consensus sequences were deduced. EG1 has a typical tripartite structure of cellulase, a catalytic domain, a serine-rich linker region, and a cellulose-binding domain. The optimal temperature for the activity of the purified enzyme was $55^{\circ}C$, but it retained over 90% of maximum activity in a broad temperature range ($40^{\circ}C$ to $60^{\circ}C$). The optimal pH for the enzyme activity was 6.0. Kinetic parameters, $K_m$ and $V_{max}$ of rEG1 were 0.39% CMC and 143 U/mg, respectively.

Transdifferentiation of α-1,3-galactosyltransferase knockout pig bone marrow derived mesenchymal stem cells into pancreatic β-like cells by microenvironment modulation

  • Ullah, Imran;Lee, Ran;Oh, Keon Bong;Hwang, Seongsoo;Kim, Youngim;Hur, Tai-Young;Ock, Sun A
    • Asian-Australasian Journal of Animal Sciences
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    • 제33권11호
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    • pp.1837-1847
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    • 2020
  • Objective: To evaluate the pancreatic differentiation potential of α-1,3-galactosyltransferase knockout (GalTKO) pig-derived bone marrow-derived mesenchymal stem cells (BM-MSCs) using epigenetic modifiers with different pancreatic induction media. Methods: The BM-MSCs have been differentiated into pancreatic β-like cells by inducing the overexpression of key transcription regulatory factors or by exposure to specific soluble inducers/small molecules. In this study, we evaluated the pancreatic differentiation of GalTKO pig-derived BM-MSCs using epigenetic modifiers, 5-azacytidine (5-Aza) and valproic acid (VPA), and two types of pancreatic induction media - advanced Dulbecco's modified Eagle's medium (ADMEM)-based and N2B27-based media. GalTKO BM-MSCs were treated with pancreatic induction media and the expression of pancreas-islets-specific markers was evaluated by real-time quantitative polymerase chain reaction, Western blotting, and immunofluorescence. Morphological changes and changes in the 5'-C-phosphate-G-3' (CpG) island methylation patterns were also evaluated. Results: The expression of the pluripotent marker (POU class 5 homeobox 1 [OCT4]) was upregulated upon exposure to 5-Aza and/or VPA. GalTKO BM-MSCs showed increased expression of neurogenic differentiation 1 in the ADMEM-based (5-Aza) media, while the expression of NK6 homeobox 1 was elevated in cells induced with the N2B27-based (5-Aza) media. Moreover, the morphological transition and formation of islets-like cellular clusters were also prominent in the cells induced with the N2B27-based media with 5-Aza. The higher insulin expression revealed the augmented trans-differentiation ability of GalTKO BM-MSCs into pancreatic β-like cells in the N2B27-based media than in the ADMEM-based media. Conclusion: 5-Aza treated GalTKO BM-MSCs showed an enhanced demethylation pattern in the second CpG island of the OCT4 promoter region compared to that in the GalTKO BM-MSCs. The exposure of GalTKO pig-derived BM-MSCs to the N2B27-based microenvironment can significantly enhance their trans-differentiation ability into pancreatic β-like cells.

S-Adenosylmethionine decarboxylase 유전자의 upstream open reading frame이 in vivo에서 translational inhibitor 로서의 작용 기작 (Action mechanism of upstream open reading frame from S-adenosylmethionine decarboxylase gene as a in vivo translational inhibitor)

  • 최유진;박기영
    • Journal of Plant Biotechnology
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    • 제38권1호
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    • pp.87-93
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    • 2011
  • SAMDC는 폴리아민 생합성 과정에서 주효소로 작용하며 항상성을 유지하기위해 정교하게 조절된다. 카네이션 SAMDC 유전자는 5'-leader sequence에 54개 아미노산으로 구성된 small uORF가 존재한다. Translation 과정을 조절하는 uORF의 작용기작을 연구하기 위하여 35S 프로모터에 SAMDC 유전자의 uORF 부위와 GUS 유전자를 재조합한 형질전환 담배 식물체를 이용하였다. 본 실험에서는 SAMDC uORF 염기서열 혹은 SAMDC uORF 단백질에 의해서 downstream GUS ORF의 translation이 억제되었다. 특히 translation 억제는 개시코돈이 point-mutation된 construct에서 효과적으로 이루어졌다. 따라서 이러한 결과는 ribosomal stalling이 translation 억제 과정에 관여한 것으로 사료된다. 개시 코돈과 종결코돈을 가진 SAMDC uORF의 아미노산 서열을 frame shift 시키면 GUS 활성이 증가하였는데 이는 translation inhibitor로서 작용할 때 아미노산 서열이 중요하다는 것을 의미하며, 결국은 SAMDC uORF의 단백질 구조가 중요하게 작용할 가능성을 제시한다. 또한 유식물과 담배 꽃 등의 in vivo 상에서도 GUS 발현을 조직화학적으로 분석했을 때 small uORF가 존재할 경우 GUS 염색이 크게 저하되었지만, 개시코돈이나 혹은 종결코돈이 제거되도록 point-mutation 시킨 construct가 도입된 형질전환식물체에서는 SAMDC uORF의 억제효과가 크게 완화 되었다. 또한 가장 중요한 관찰 결과로는 small uORF 염기서열로부터 in vitro 시스템에서 5.7 kDa의 단백질이 실제적으로 합성되었음을 관찰하였다. 폴리아민 처리 후 GUS 단백질이 억제된 결과는 uORF로부터 합성된 단백질이 폴리아민 뿐 만 아니라 translation 과정에 관여하는 다른 요소들과 상호작용을 이루어 조절될 수 있음을 암시한다.

Characterization, detection and identification of transgenic chili pepper harboring coat protein gene that enhances resistance to cucumber mosaic virus

  • Seo, Sang-Gyu;Kim, Ji-Seong;Jeon, Seo-Bum;Shin, Mi-Rae;Kang, Seung-Won;Lee, Gung-Pyo;Hong, Jin-Sung;Harn, Chee-Hark;Ryu, Ki-Hyun;Park, Tae-Sung;Kim, Sun-Hyung
    • Journal of Plant Biotechnology
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    • 제36권4호
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    • pp.384-391
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    • 2009
  • Previously, two events (H15 and B20) of transgenic pepper (Capsicum annuum L.) that enhanced resistance to Cucumber mosaic virus (CMV) by the introduction of CMV coat protein (CP) gene were constructed. Presently, a single copy number of the CP gene was revealed in H15 and B20 by Southern blot. To predict possible unintended effects due to transgene insertion in an endogenous gene, we carried out sequencing of the 5'-flanking region of the CP gene and a Blastbased search. The results revealed that insertion of the transgene into genes encoding putative proteins may occur in the H15 and B20 transgenic event. Mutiplex polymerase chain reaction (PCR) for simultaneous detection and identification of transgenic pepper was conducted with a set of nine primers. Both transgenic event were differentiated from non-transgenic event by the presence of 267 bp and 430 bp PCR products indicative of CP gene specific primer pairs and primer pairs targeting the CP gene and 35S promoter. H15 and B20 uniquely possessed a 390 bp and 596 bp PCR product, respectively. The presence of a 1115 bp product corresponding to intrinsic pepper actin gene confirmed the use of pepper DNA as the PCR template. The primer set and PCR conditions used presently may allow the accurate and simple identification of CMV resistant transgenic pepper.

Chromatin Interacting Factor OsVIL2 Is Required for Outgrowth of Axillary Buds in Rice

  • Yoon, Jinmi;Cho, Lae-Hyeon;Lee, Sichul;Pasriga, Richa;Tun, Win;Yang, Jungil;Yoon, Hyeryung;Jeong, Hee Joong;Jeon, Jong-Seong;An, Gynheung
    • Molecules and Cells
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    • 제42권12호
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    • pp.858-868
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    • 2019
  • Shoot branching is an essential agronomic trait that impacts on plant architecture and yield. Shoot branching is determined by two independent steps: axillary meristem formation and axillary bud outgrowth. Although several genes and regulatory mechanism have been studied with respect to shoot branching, the roles of chromatin-remodeling factors in the developmental process have not been reported in rice. We previously identified a chromatin-remodeling factor OsVIL2 that controls the trimethylation of histone H3 lysine 27 (H3K27me3) at target genes. In this study, we report that loss-of-function mutants in OsVIL2 showed a phenotype of reduced tiller number in rice. The reduction was due to a defect in axillary bud (tiller) outgrowth rather than axillary meristem initiation. Analysis of the expression patterns of the tiller-related genes revealed that expression of OsTB1, which is a negative regulator of bud outgrowth, was increased in osvil2 mutants. Chromatin immunoprecipitation assays showed that OsVIL2 binds to the promoter region of OsTB1 chromatin in wild-type rice, but the binding was not observed in osvil2 mutants. Tiller number of double mutant osvil2 ostb1 was similar to that of ostb1, suggesting that osvil2 is epistatic to ostb1. These observations indicate that OsVIL2 suppresses OsTB1 expression by chromatin modification, thereby inducing bud outgrowth.

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.

Salmonella enterica serovar Typhimurium에서 Type III 분비장치의 표적단백질들의 분비신호 확인 및 Type III 분비장치를 이용한 Secretion Vector의 개발 (Identification of Secretion Signals of Target Proteins in Salmonella enterica serovar Typhimurium and Construction of Secretion Vector using this Signal)

  • 최혁진;엄준호;조정아;이선;이경미;이인수;박용근
    • 미생물학회지
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    • 제36권4호
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    • pp.254-258
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    • 2000
  • 소장의 상피세포내로 세균 세포가 들어가는 과정(invasion)은 Salmonella의 감염에서 중요한 단계이다. invasion은 Salmonella type III 분비장치에 의해 분비되는 단백질들에 의해 유도된다. type III 분비단백질들은 특이하게, 일반적인 분비단백질들이 가지는 N-말단 분비 신호 펩타이드를 가지고 있지 않는 것을 알려져 있다. Yersinia에서의 최근 연구에서 type III 분비장치에 의해 인지되는 분비신호는 분비 단백질을 암호화하는 mRNA의 5'말단부의가 형성하는 2차 구조에 있을 것이라는 보고가 있다. 본 연구에서는 Salmonella type III 분비장치의 분비신호를 조사하기 위해 type III 분비단백질중 하나인 sopE를 택하여 ompR과의 translational fusion을 만들었다. translational fusion을 위해 사용된 sopE DNA절편은 프로모터와 시작 콘돈으로부터 10, 15 코돈을 포함하는 절편이다. Immunoblot으로 확인한 결과, OmpR을 포함하는 fusion 단백질이 형질전환 Salmonella 세포로부터 분비되었다. 이러한 결과는 Salmonella의 type III 분비신호가 분비단백질을 암호화하는 mRNA의 5'말단에 위치할 가능성을 제시하고 있다. 또한, 이러한 분비신호를 활용하여 유용한 외래 단백질을 세균 세포 내에서 효과적으로 생산, 분비할 수 있는 secretion vector의 원형을 개발하였다.

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