• 제목/요약/키워드: molecular functions

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식물에서 선택적 스플라이싱에 의한 스트레스 반응 조절 (Regulation of Abiotic Stress Response by Alternative Splicing in Plants)

  • 석혜연;이선영;문용환
    • 생명과학회지
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    • 제30권6호
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    • pp.570-579
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    • 2020
  • Pre-mRNA의 스플라이싱은 진핵생물 유전자의 적절한 발현에 매우 중요한 역할을 한다. 선택적 스플라이싱은 스플라이싱 위치가 서로 다르게 인식될 때 발생하며 동일한 pre-mRNA로부터 둘 이상의 전사체와 단백질을 생성할 수 있다. 스플라이싱 위치의 결정은 스플라이소솜과 SR 단백질, hnRNP, CBP 등의 스플라이싱 인자에 의해 조절된다. 고온, 저온, 고염, 건조, 저산소 등 다양한 환경 스트레스 조건에서 식물의 많은 스트레스 반응 유전자에 대해 선택적 스플라이싱이 일어나는 것이 알려져 있으며, 이러한 선택적 스플라이싱은 식물이 환경 변화에 적응하기 위한 중요한 기작 중 하나로 여겨진다. 저온, 고온, 고염, 건조 스트레스 조건에서는 스플라이싱 인자의 발현이 변하거나 또는 정상 조건에서와는 다른 스플라이싱 활성을 가짐으로써 선택적 스플라이싱이 일어난다. 환경 스트레스 반응 유전자의 스플라이싱 이소형은 각각 환경 스트레스에 대해 서로 다른 반응을 보이는데 생성되는 조직이 서로 다르기도 하고, 일부 이소형은 넌센스-매개 분해에 의해 분해되기도 한다. 스플라이싱 이소형의 단백질은 환경 스트레스 조건에서 정상 조건과 비교하여 세포 내 위치가 다르기도 하고, 전사인자 또는 효소로서 다른 활성을 가지기도 한다. 이러한 다양한 연구에도 불구하고 식물의 환경 스트레스 반응에서 선택적 스플라이싱에 대한 연구는 일부 스트레스와 유전자에 국한 되어 있고, 아직 분자 기전이 제대로 밝혀지지 않은 부분이 많아 앞으로 더 많은 연구가 필요하다.

A LysM Domain-Containing Protein LtLysM1 Is Important for Vegetative Growth and Pathogenesis in Woody Plant Pathogen Lasiodiplodia theobromae

  • Harishchandra, Dulanjalee Lakmali;Zhang, Wei;Li, Xinghong;Chethana, Kandawatte Wedaralalage Thilini;Hyde, Kevin David;Brooks, Siraprapa;Yan, Jiye;Peng, Junbo
    • The Plant Pathology Journal
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    • 제36권4호
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    • pp.323-334
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    • 2020
  • Lysin motif (LysM) proteins are reported to be necessary for the virulence and immune response suppression in many herbaceous plant pathogens, while far less is documented in woody plant pathogens. In this study, we preliminarily characterized the molecular function of a LysM protein LtLysM1 in woody plant pathogen Lasiodiplodia theobromae. Transcriptional profiles revealed that LtLysM1 is highly expressed at infectious stages, especially at 36 and 48 hours post inoculation. Amino acid sequence analyses revealed that LtLysM1 was a putative glycoprotein with 10 predicted N-glycosylation sites and one LysM domain. Pathogenicity tests showed that overexpressed transformants of LtLysM1 displayed increased virulence on grapevine shoots in comparison with that of wild type CSS-01s, and RNAi transformants of LtLysM1 exhibited significantly decreased lesion length when compared with that of wild type CSS-01s. Moreover, LtLysM1 was confirmed to be a secreted protein by a yeast signal peptide trap assay. Transient expression in Nicotiana benthamiana together with protein immunoblotting confirmed that LtLysM1 was an N-glycosylated protein. In contrast to previously reported LysM protein Slp1 and OsCEBiP, LtLysM1 molecule did not interact with itself based on yeast two hybrid and co-immunoprecipitation assays. These results indicate that LtLysM1 is a secreted protein and functions as a critical virulence factor during the disease symptom development in woody plants.

Targeting Analysis of Lumenal Proteins of Chloroplast of Wheat using Proteomic Techniques

  • Kamal, Abu Hena Mostafa;Kim, Da-Eun;Oh, Myoung-Won;Chung, Keun-Yook;Cho, Yong-Gu;Kim, Hong-Sig;Song, Beom-Heon;Lee, Chul-Won;Uozumi, Nobuyuki;Choi, Jong-Soon;Cho, Kun;Woo, Sun-Hee
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2010년도 정기총회 및 춘계학술발표회
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    • pp.14-14
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    • 2010
  • Plastid proteomics are essential organelles present in virtually all cells in plants and green algae. Plastids are responsible for the synthesis and storage of key molecules required for the basic architecture and functions of plant cells. The proteome of plastid, and in particular of chloroplast, have received significant amounts of attention in recent years. Various fractionation and mass spectrometry (MS) techniques have been applied to catalogue the chloroplast proteome and its sub-organelles compartments. To better understanding the function of the lumenal sub-organelles within the thylakoid network, we have carried out a systematical analysis and identification of the lumenal proteins in the thylakoid of wheat by using Tricine-SDS-PAGE, and LTQ-ESI-FTICR mass spectrometry followed by SWISS-PROT database searching. We isolation and fractionation these membrane from fully developed wheat leaves using a combination of differential and gradient centrifugation couple to high speed ultra-centrifuge. After collecting all proteins to eliminate possible same proteins, we estimated that there are 407 different proteins including chloroplast, chloroplast stroma, lumenal, and thylakoid membrane proteins excluding 20 proteins, which were identified in nucleus, cytoplasm and mitochondria. A combination of these three programs (PSORT, TargetP, TMHMM, and TOPPRED) was found to provide a useful tool for evaluating chloroplast localization, transit peptide, transmembranes, and also could reveal possible alternative processing sites and dual targeting. Finally, we report also sub-cellular location specific protein interaction network using Cytoscape software, which provides further insight into the biochemical pathways of photosynthesis. The present work helps understanding photosynthesis process in wheat at the molecular level and provides a new overview of the biochemical machinery of the thylakoid in wheat.

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Molecular characterization and docking dynamics simulation prediction of cytosolic OASTL switch cysteine and mimosine expression in Leucaena leucocephala

  • Harun-Ur-Rashid, Md.;Masakazu, Fukuta;Amzad Hossain, Md.;Oku, Hirosuke;Iwasaki, Hironori;Oogai, Shigeki;Anai, Toyoaki
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.36-36
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    • 2017
  • Out of twenty common protein amino acids, there are many kinds of non protein amino acids (NPAAs) that exist as secondary metabolites and exert ecological functions in plants. Mimosine (Mim), one of those NPAAs derived from L. leucocephala acts as an iron chelator and reversely block mammalian cell cycle at G1/S phases. Cysteine (Cys) is decisive for protein and glutathione that acts as an indispensable sulfur grantor for methionine and many other sulfur-containing secondary products. Cys biosynthesis includes consecutive two steps using two enzymes-serine acetyl transferase (SAT) and O-acetylserine (thiol)lyase (OASTL) and appeared in plant cytosol, chloroplast, and mitochondria. In the first step, the acetylation of the ${\beta}$-hydroxyl of L-serine by acetyl-CoA in the existence of SAT and finally, OASTL triggers ${\alpha}$, ${\beta}$-elimination of acetate from OAS and bind $H_2S$ to catalyze the synthesis of Cys. Mimosine synthase, one of the isozymes of the OASTLs, is able to synthesize Mim with 3-hydroxy-4-pyridone (3H4P) instead of $H_2S$ for Cys in the last step. Thus, the aim of this study was to clone and characterize the cytosolic (Cy) OASTL gene from L. leucocephala, express the recombinant OASTL in Escherichia coli, purify it, do enzyme kinetic analysis, perform docking dynamics simulation analysis between the receptor and the ligands and compare its performance between Cys and Mim synthesis. Cy-OASTL was obtained through both directional degenerate primers corresponding to conserved amino acid region among plant Cys synthase family and the purified protein was 34.3KDa. After cleaving the GST-tag, Cy-OASTL was observed to form mimosine with 3H4P and OAS. The optimum Cys and Mim reaction pH and temperature were 7.5 and $40^{\circ}C$, and 8.0 and $35^{\circ}C$ respectively. Michaelis constant (Km) values of OAS from Cys were higher than the OAS from Mim. Inter fragment interaction energy (IFIE) of substrate OAS-Cy-OASTL complex model showed that Lys, Thr81, Thr77 and Gln150 demonstrated higher attraction force for Cys but 3H4P-mimosine synthase-OAS intermediate complex showed that Gly230, Tyr227, Ala231, Gly228 and Gly232 might provide higher attraction energy for the Mim. It may be concluded that Cy-OASTL demonstrates a dual role in biosynthesis both Cys and Mim and extending the knowledge on the biochemical regulatory mechanism of mimosine and cysteine.

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프로테옴 해석에 의한 벼 게놈 기능해석과 응용 (Rice Proteomics: A Functional Analysis of the Rice Genome and Applications)

  • 우선희;김홍식;송범헌;이철원;박영목;정승근;조용구
    • Journal of Plant Biotechnology
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    • 제30권3호
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    • pp.281-291
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    • 2003
  • In this review, we described the catalogues of the rice proteome which were constructed in our program, and functional characterization of some of these proteins was discussed. Mass-spectrometry is the most prevalent technique to rapidly identify a large number of proteome analysis. However, the conventional Western blotting/sequencing technique has been used in many laboratories. As a first step to efficiently construct protein cata-file in proteome analysis of major cereals, we have analyzed the N-terminal sequences of 100 rice embryo proteins and 70 wheat spike proteins separated by two-dimensional electrophoresis. Edman degradation revealed the N-terminal peptide sequences of only 31 rice proteins and 47 wheat proteins, suggesting that the rest of separated protein sports are N-terminally blocked. To efficiently determine the internal sequence of blocked proteins, we have developed a modified Cleveland peptide mapping method. Using this above method, the internal sequences of all blocked rice proteins(i, e., 69 proteins) were determined. Among these 100 rice proteins, thirty were proteins for which homologous sequence in the rice genome database could be identified. However, the rest of the proteins lacked homologous proteins. This appears to be consistent with the fact that about 45% of total rice cDNA have been deposited in the EMBL database. Also, the major proteins involved in the growth and development of rice can be identified using the proteome approach. Some of these proteins, including a calcium-binding protein that tuned out to be calreticulin, gibberellin-binding protein, which is ribulose-1.5-bisphosphate carboxylase/oxygense active in rice, and leginsulin-binding protein in soybean have functions in the signal transduction pathway. Proteomics is well suited not only to determine interaction between pairs of proteins, but also to identify multisubunit complexes. Currently, a protein-protein interaction database for plant proteins(http://genome.c.kanazawa-u.ac.jp/Y2H)could be a very useful tool for the plant research community. Also, the information thus obtained from the plant proteome would be helpful in predicting the function of the unknown proteins and would be useful be in the plant molecular breeding.

한국 베들링턴 테리어에서 구리중독증을 유발하는 COMMD1 유전자의 exon 2 결손변이 (The Exon 2 Deletion of the COMMD1 Causing Copper Toxicosis in Bedlington Terriers in Korea)

  • 김윤기;김소연;윤영민
    • 한국임상수의학회지
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    • 제32권1호
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    • pp.1-4
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    • 2015
  • 개의 10번 염색체에 존재하는 Copper metabolism domain containing 1 (COMMD1) 유전자는 체내 구리 대사를 조절하는 COMMD1 단백질을 합성한다. COMMD1 유전자의 exon 2 결손변이는 단백질의 결핍을 유발하여 베들링턴 테리어 견종에서 상염색체 열성 유전질환인 구리 중독증을 일으킨다. 본 증에 이환된 개체는 담즙을 통한 구리의 배설이 저해되어 간 내에 구리가 축적된다. 본 연구에서는 국내 베들링턴 테리어 257두(수컷 109두, 암컷 148두) 혈액 시료를 사용하여 genomic DNA를 추출하였다. 유전자 결손변이의 분자생물학적 진단을 위해 다중 중합효소 연쇄반응법(multiplex PCR)을 이용하여 COMMD1 유전자의 exon 2 결손 발생 및 그 빈도를 조사하였다. 베들링턴 테리어 257두에서, 정상유전자 동협접합자가 131두(51%), 이형접합자가 108두(42%), 변이유전자 동형접합자가 18두(7%)로 확인되었다. 본 연구를 통해 한국 베들링턴 테리어 개체군의 유전변이 발생 및 그 빈도를 확인하였고, 이는 국내 베들링턴 테리어 개체군의 유전자 선택적 교배계획 설립 및 변이 유전자 확산을 예방하기 위한 기초 자료로서 의의가 있다.

흰쥐에서 키토올리고당의 장 생태와 지질 상태에 미치는 용량에 따른 효과 (Dose-Response of Chitooligosaccharide on Gut Ecology and Lipid Status in Rats)

  • 김연록;최영선
    • 한국식품영양과학회지
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    • 제42권4호
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    • pp.563-569
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    • 2013
  • 본 연구는 흰쥐에서 저분자량(1~3 kDa) 키토올리고당(chitooligosaccharide, COS)이 장내 미생물에 미치는 항균활성과 지질 개선에 관한 용량-반응 효과를 조사하기 위하여 수행되었다. 4주령 된 Sprague-Dawley 수컷 32마리를 1주일 동안 사육 환경에 적응시킨 후 군당 8마리씩 4군으로 나누어서 고지방식이에 키토올리고당을 0%(대조식이), 0.5%, 2%, 5% 수준으로 첨가한 식이를 5주 동안 자유롭게 급여하였다. 실험식이 5주째에 장 통과시간을 측정하였고, 신선한 분변을 취하여 장내 균수를 측정하였으며, 희생 후 혈장 지질, 간 지질, GPT 활성, 분변 지질을 측정하였다. 체중 증가량과 식이섭취량은 COS 5% 첨가군에서 유의하게 낮았다. 분변 중 bifidobacteria, lactobacilli, bacteroides, total anaerobes, total aerobes 수는 대조군, COS 0.5% 첨가군과 COS 2% 첨가군 사이에 차이가 없었으나, COS 5% 첨가군에서는 모두 유의하게 감소하였다. 혈장 총 콜레스테롤, HDL-C 및 LDL-C 농도는 군간 차이가 없었으나, 중성지방 농도는 COS 2% 첨가군과 COS 5% 첨가군에서 유의하게 낮았으며, 키토올리고당의 용량이 높아질수록 낮았다. 간 조직의 중성지방 농도는 COS 5% 첨가군에서 낮았으며, 반면에 분변의 콜레스테롤 및 중성지방 농도는 COS 5% 첨가군에서 높았으나 담즙산은 차이가 없었다. 결론적으로 저분자량(1~3 kDa) 키토올리고당을 5% 첨가한 식이는 흰쥐의 식이섭취량, 체중증가량, 혈장 중성지방을 낮추어 지질 개선효과를 보였고, 분변의 혐기성균 중에 bacteroides의 균수를 크게 감소시켰으며 bifidobacteria와 lactobacilli 균수도 억제함으로써 장 미생물생태 변화를 초래하였다.

Cordycepin inhibits chondrocyte hypertrophy of mesenchymal stem cells through PI3K/Bapx1 and Notch signaling pathway

  • Cao, Zhen;Dou, Ce;Li, Jianmei;Tang, Xiangyu;Xiang, Junyu;Zhao, Chunrong;Zhu, Lingyu;Bai, Yun;Xiang, Qiang;Dong, Shiwu
    • BMB Reports
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    • 제49권10호
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    • pp.548-553
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    • 2016
  • Mesenchymal stem cells (MSCs) are widely used in cartilage tissue engineering to repair articular cartilage defects. However, hypertrophy of chondrocytes derived from MSCs might hinder the stabilization of hyaline cartilage. Thus, it is very important to find a suitable way to maintain the chondrogenic phenotype of chondrocytes. It has been reported that cordycepin has anti-inflammatory and anti-tumor functions. However, the role of cordycepin in chondrocyte hypertrophy remains unclear. Therefore, the objective of this study was to determine the effect of cordycepin on chondrogenesis and chondrocyte hypertrophy in MSCs and ATDC5 cells. Cordycepin upregulated chondrogenic markers including Sox9 and collagen type II while down-regulated hypertrophic markers including Runx2 and collagen type X. Further exploration showed that cordycepin promoted chondrogenesis through inhibiting Nrf2 while activating BMP signaling. Besides, cordycepin suppressed chondrocyte hypertrophy through PI3K/Bapx1 pathway and Notch signaling. Our results indicated cordycepin had the potential to maintain chondrocyte phenotype and reconstruct engineered cartilage.

A novel human KRAB-related zinc finger gene ZNF425 inhibits mitogen-activated protein kinase signaling pathway

  • Wang, Yuequn;Ye, Xiangli;Zhou, Junmei;Wan, Yongqi;Xie, Huaping;Deng, Yun;Yan, Yan;Li, Yongqing;Fan, Xiongwei;Yuan, Wuzhou;Mo, Xiaoyang;Wu, Xiushan
    • BMB Reports
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    • 제44권1호
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    • pp.58-63
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    • 2011
  • Zinc finger (ZNF) proteins play a critical role in cell growth, proliferation, apoptosis, and intracellular signal transduction. In this paper, we cloned and characterized a novel human KRAB-related zinc finger gene, ZNF425, which encodes a protein of 752 amino acids. ZNF425 is strongly expressed in the three month old human embryos and then is almost undetectable in six month old embryos and in adult tissues. An EGFP-ZNF425 fusion protein can be found in both the nucleus and the cytoplasm. ZNF425 appears to act as a transcription repressor. Over-expression of ZNF425 inhibits the transcriptional activities of SRE, AP-1, and SRF. Deletion analysis indicates that the C2H2 domain is the main region responsible for the repression. Our results suggest that the ZNF425 gene is a new transcriptional inhibitor that functions in the MAPK signaling pathway.

ZNF424, a novel human KRAB/C2H2 zinc finger protein, suppresses NFAT and p21 pathway

  • Wang, Yuequn;Zhou, Junnei;Ye, Xiangli;Wan, Yongqi;Li, Youngqing;Mo, Xiaoyan;Yuan, Wuzhou;Yan, Yan;Luo, Na;Wang, Zequn;Fan, Xiongwei;Deng, Yun;Wu, Xiushan
    • BMB Reports
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    • 제43권3호
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    • pp.212-218
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    • 2010
  • Zinc finger-containing transcription factors are the largest single family of transcriptional regulators in mammals, which play an essential role in cell differentiation, cell proliferation, apoptosis, and neoplastic transformation. Here we have cloned a novel KRAB-related zinc finger gene, ZNF424, encoding a protein of 555aa. ZNF424 gene consisted of 4 exons and 3 introns, and mapped to chromosome 19p13.3. ZNF424 gene was ubiquitously expressed in human embryo tissues by Northern blot analysis. ZNF424 is conserved across species in evolution. Using a GFP-labeled ZNF424 protein, we demonstrate that ZNF424 localizes mostly in the nucleus. Transcriptional activity assays shows ZNF424 suppresses transcriptional activity of L8G5-luciferase. Overexpression of ZNF424 in HEK-293 cells inhibited the transcriptional activity of NFAT and p21, which may be silenced by siRNA. The results suggest that ZNF424 protein may act as a transcriptional repressor that suppresses NFAT and p21 pathway to mediate cellular functions.