• 제목/요약/키워드: proteomics

검색결과 633건 처리시간 0.03초

단백질체학을 이용하여 국소성 분절성 사구체 경화증과 미세 변화형 신증후군의 비교 (The Comparison between FSGS and MCNS Using Proteomic Method in Childhood Nephrotic Syndrome; Preliminary Study)

  • 김성도;조병수
    • Childhood Kidney Diseases
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    • 제13권2호
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    • pp.170-175
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    • 2009
  • 목적 : 국소성 분절성 사구체 경화증 환아들은 어떤 종류의 약물치료에도 잘 반응하지 않고 점차 말기 신부전으로 진행되는 경우가 많다. 본 연구는 미세 변화형 신증후군과 국소성 분절성 사구체 경화증 사이의 단백질 발현의 차이를 알아보고자 시행하였다. 방법 : 미세 변화형 신증후군과 국소성 분절성 사구체 경화증의 신장 조직 샘플로부터 단백질을 추출하였다. 추출한 단백질들에 대해 2차원 전기영동 시스템을 이용하여 개개의 단백체로 분리한 후 실버 염색을 하였다. 분리한 단백질은 MASCOT Peptide Mass Fingerprint 프로그램을 이용하여 동정하였다. 결과 : 미세변화형 신증후군과 국소성 분절성 사구체 경화증의 신장 조직에서 서로 상반된 발현 양상을 보여주었다. 이중 가장 크고 두드러지게 발현되는 부위를 잘라내어 단백질 분석을 시행한 결과 국소성 분절성 사구체 경화증에서만 glutathione S-transferase P1-1 단백질이 발현 되었다. 결론 : 상기 결과는 비록 국소성 분절성 사구체 경화증의 병태생리를 알기 위한 기초연구였으나 본 연구에서 밝혀진 glutathione S-transferase P1-1 은 향후 질병의 기전을 밝히는데 있어서 중요한 소견으로서 향후 지속적인 연구가 필요할 것으로 사료된다.

Proteomic Profiles of Mouse Neuro N2a Cells Infected with Variant Virulence f Rabies Viruses

  • Wang, Xiaohu;Zhang, Shoufeng;Sun, Chenglong;Yuan, Zi-Guo;Wu, Xianfu;Wang, Dongxia;Ding, Zhuang;Hu, Rongliang
    • Journal of Microbiology and Biotechnology
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    • 제21권4호
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    • pp.366-373
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    • 2011
  • We characterized the proteomes of murine N2a cells following infection with three rabies virus (RV) strains, characterized by distinct virulence phenotypes (i.e., virulent BD06, fixed CVS-11, and attenuated SRV9 strains), and identified 35 changes to protein expression using two-dimensional gel electrophoresis in whole-cell lysates. The annotated functions of these proteins are involved in various cytoskeletal, signal transduction, stress response, and metabolic processes. Specifically, a-enolase, prx-4, vimentin, cytokine-induced apoptosis inhibitor 1 (CIAPIN1) and prx-6 were significantly up-regulated, whereas Trx like-1 and galectin-1 were down-regulated following infection of N2a cells with all three rabies virus strains. However, comparing expressions of all 35 proteins affected between BD06-, CVS-11-, and SRV9-infected cells, specific changes in expression were also observed. The up-regulation of vimentin, CIAPIN1, prx-4, and 14-3-3 ${\theta}/{\delta}$, and down-regulation of NDPK-B and HSP-1 with CVS and SRV9 infection were ${\geq}2$ times greater than with BD06. Meanwhile, Zfp12 protein, splicing factor, and arginine/serine-rich 1 were unaltered in the cells infected with BD06 and CVS-11, but were up-regulated in the group infected with SRV9. The proteomic alterations described here may suggest that these changes to protein expression correlate with the rabies virus' adaptability and virulence in N2a cells, and hence provides new clues as to the response of N2a host cells to rabies virus infections, and may also aid in uncovering new pathways in these cells that are involved in rabies infections. Further characterization of the functions of the affected proteins may contribute to our understanding of the mechanisms of RV infection and pathogenesis.

Mitotic-Specific Methylation in the HeLa Cell through Loss of DNMTs and DMAP1 from Chromatin

  • Kim, Kee-Pyo;Kim, Gun-Do;Kang, Yong-Kook;Lee, Dong-Seok;Koo, Deog-Bon;Lee, Hoon-Taek;Chung, Kil-Saeng;Lee, Kyung-Kwang;Han, Yong-Mahn
    • 한국동물번식학회:학술대회논문집
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    • 한국동물번식학회 2003년도 학술발표대회 발표논문초록집
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    • pp.27-27
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    • 2003
  • A diversified and concentrative approach of methylation player can be one of the most powerful studies in the understanding of global epigenetic modifications. Previous studies have suggested that DNA methylation contributes to transcriptional silencing through the several DNA methylation-mediated repression systems by hypermethylation, including methyltransferases (DNMTs), DNA methyltransferase association protein 1 (DMAPl), methyl-CpG binding domain (MBD), and histone deacetylases (HDACs). Assembly of these regulatory protein complexes act sequentially, reciprocally, and interdependently on the newly composed DNA strand through S phase. Therefore, these protein complexes have a role in coupling DNA replication to the designed turn-off system in genome. In this study, we attempted to address the role of DNA methylation by the functional analysis of the methyltransferase molecule, we described the involvement of DMAP1 and DNMTs in cell divistion and the effect of their loss. We also described distinct patterns that DMAP1 and DNMTs are spatially reorganized and displaced from condensing chromosomes as cells progress through mitosis in HeLa cell, COS7, and HIH3T3 cell cycle progressions. DNMT1, DNMT3b, and DMAP1 do not stably contact the genetic material during chromosome compaction and repressive expression. These finding show that the loss of activities of DNMTs and DMAP1 occure stage specifically during the cell cycle, may contribute to the integral balance of global DNA methylation. This is consistent with previous studies resulted in decreased histone acetyltransferases and HDACs, and differs from studies resulted in increased histone methyltransferases. Our results suggest that DNA methylation by DNMTs and DMAP1 during mitosis acts to antagonize hypermethylation by which this mark is epigenetical mitotic-specific methylation.

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콘택트렌즈 관리방법에 의한 실리콘하이드로겔렌즈의 지방침전물 제거효과 (Evaluation of Contact Lens Care Regimens in Removing Tear Lipids on Silicone Hydrogel Lens)

  • 강유선;이군자;주은희
    • 한국안광학회지
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    • 제15권4호
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    • pp.347-353
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    • 2010
  • 목적: 소프트콘택트렌즈 관리용액에 의한 balafilcon A 재질의 실리콘 하이드로겔렌즈에 부착된 지방 침전물 제거효과를 비교하였다. 방법: Balafilcon A 재질의 실리콘 하이드로겔렌즈를 실험실 조건에서 oleic acid, oleic acid methyl ester, cholesterol이 포함된 식염수에 담가 24시간 동안 오염시켰다. 오염된 콘택트렌즈는 식염수로 헹구어준 후 계면활성세척액, 알콜 성분이 포함된 세척액 및 다목적용액으로 각각 세척하였고, 반복적인 오염과 세척효과를 관찰하기 위해서는 오염과 세척과정을 14회 반복하였다. 초음파의 지방침전물 세척 효과를 관찰하기 위하여 오염된 렌즈에 초음파처리를 한 후 처리하지 않은 렌즈와 비교하였다. 지방침전물은 methanol:chloroform (1:1, v/v) 용액으로 추출하고 고성능액체크로마토그래피로 분석하여 정량하였다. 결과: 실리콘 하이드로겔렌즈의 지방세척효과는 알콜성분을 함유한 세척액이 계면활성세척액 및 다목적용액보다 높았으며, 초음파를 함께 처리해준 경우에는 세척 효과가 상승하였다. 콘택트렌즈 관리용액으로 세척한 후에도 지방침전물은 완전히 제거되지 않아 오염과 세척을 반복한 경우 지방 침전물의 양은 지속적으로 증가하였다. 결론: 실리콘 하이드로겔렌즈에 부착되는 지방 침전물에 대한 소프트 콘택트렌즈용 관리용액의 세척효과는 만족할 수준에 미치지 못하기 때문에 실리콘 하이드로겔렌즈의 지방 침전물 제거에 적합한 세척액의 개발이 필요할 것으로 사료된다.

Function of Global Regulator CodY in Bacillus thuringiensis BMB171 by Comparative Proteomic Analysis

  • Qi, Mingxia;Mei, Fei;Wang, Hui;Sun, Ming;Wang, Gejiao;Yu, Ziniu;Je, Yeonho;Li, Mingshun
    • Journal of Microbiology and Biotechnology
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    • 제25권2호
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    • pp.152-161
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    • 2015
  • CodY is a highly conserved protein in low G+C gram-positive bacteria that regulates genes involved in sporulation and stationary-phase adaptation. Bacillus thuringiensis is a grampositive bacterium that forms spores and parasporal crystals during the stationary phase. To our knowledge, the regulatory mechanism of CodY in B. thuringiensis is unknown. To study the function of CodY protein in B. thuringiensis, BMB171codY- was constructed in a BMB171 strain. A shuttle vector containing the ORF of cry1Ac10 was transformed into BMB171 and BMB171codY-, named BMB171cry1Ac and BMB171codY-cry1Ac, respectively. Some morphological and physiological changes of codY mutant BMB171codY-cry1Ac were observed. A comparative proteomic analysis was conducted for both BMB171codY-cry1Ac and BMB171cry1Ac through two-dimensional gel electrophoresis and MALDI-TOF-MS/MS analysis. The results showed that the proteins regulated by CodY are involved in microbial metabolism, including branched-chain amino acid metabolism, carbohydrate metabolism, fatty acid metabolism, and energy metabolism. Furthermore, we found CodY to be involved in sporulation, biosynthesis of poly-β-hydroxybutyrate, growth, genetic competence, and translation. According to the analysis of differentially expressed proteins, and physiological characterization of the codY mutant, we performed bacterial one-hybrid and electrophoretic mobility shift assay experiments and confirmed the direct regulation of genes by CodY, specifically those involved in metabolism of branched-chain amino acids, ribosomal recycling factor FRR, and the late competence protein ComER. Our data establish the foundation for in-depth study of the regulation of CodY in B. thuringiensis, and also offer a potential biocatalyst for functions of CodY in other bacteria.

e-MITOCHONDRIA RESEARCH FOR SYSTEMS BIOLOGY AND PROTEOMICS

  • Joo, Hyun;Youm, Jae-Boum;Kim, Tae-Ho;Kim, Na-Ri;Park, Won-Sun;Kang, Sung-Hyun;Cuong, Dang Van;Kim, Hyoung-Kyu;Khoa, Tran Min;Thu, Vu Thi;Kim, Hyun-Ju;Moon, Hye-Jin;Lee, Hyun-Suk;Kim, Eui-Yong;Han, Jin
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2005년도 생물공학의 동향(XVII)
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    • pp.295-295
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    • 2005
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Comparative secretome analysis of human follicular dermal papilla cells and fibroblasts using shotgun proteomics

  • Won, Chong-Hyun;Kwon, Oh-Sang;Kang, Yong-Jung;Yoo, Hyeon-Gyeong;Lee, Dong-Hun;Chung, Jin-Ho;Kim, Kyu-Han;Park, Won-Seok;Park, Nok-Hyun;Cho, Kun;Kwon, Sang-Oh;Choi, Jong-Soon;Eun, Hee-Chul
    • BMB Reports
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    • 제45권4호
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    • pp.253-258
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    • 2012
  • The dermal papilla cells (DPCs) of hair follicles are known to secrete paracrine factors for follicular cells. Shotgun proteomic analysis was performed to compare the expression profiles of the secretomes of human DPCs and dermal fibroblasts (DFs). In this study, the proteins secreted by DPCs and matched DFs were analyzed by 1DE/LTQ FTICR MS/MS, semi-quantitatively determined using emPAI mole percent values and then characterized using protein interaction network analysis. Among the 1,271 and 1,188 proteins identified in DFs and DPCs, respectively, 1,529 were further analyzed using the Ingenuity Pathway Analysis tool. We identified 28 DPC-specific extracellular matrix proteins including transporters (ECM1, A2M), enzymes (LOX, PON2), and peptidases (C3, C1R). The biochemically-validated DPC-specific proteins included thrombospondin 1 (THBS1), an insulin-like growth factor binding protein3 (IGFBP3), and, of particular interest, an integrin beta1 subunit (ITGB1) as a key network core protein. Using the shotgun proteomic technique and network analysis, we selected ITGB1, IGFBP3, and THBS1 as being possible hair-growth modulating protein biomarkers.

고구마 생명공학연구 현황과 조건 불리지역 분자육종 전망 (Status of research on the sweetpotato biotechnology and prospects of the molecular breeding on marginal lands)

  • 김호수;윤웅한;이찬주;김소은;지창윤;곽상수
    • Journal of Plant Biotechnology
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    • 제45권3호
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    • pp.196-206
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    • 2018
  • 고구마는 식량뿐만 아니라 전분을 비롯하여 카로티노이드, 비타민C, 비타민E, 안토시아닌과 같은 저분자 항산화물질을 생산하는 중요한 산업용 뿌리작물로 건조 등 조건 불리지역에 적용이 가능한 최고의 전분작물로 각광받고 있다. 이러한 관점에서 중국, 일본을 비롯한 세계 각국에서 오믹스 기반 유용유전자 발굴 및 활용에 대한 연구가 활발히 진행되고 있다. 또한 2014년부터 한 중 일 고구마연구협의회(TRAS)를 중심으로 Xushu 18(6배체) 고구마 유전체 해독 연구가 진행되고 있으며 거의 완성단계에 이르고 있다. 향후 고구마 유전체 해독이 완성되면 오믹스 기반 연구결과와 더불어 전분대사, 항산화물질 대사, 환경스트레스, 기능성 등의 기작에 관여하는 유용유전자 분리 및 활용 연구의 활성화에 기여할 것이며 6배체 고구마 유전체 해독 연구는 식물 유전체 해독에 있어 가장 문제시되는 다배수체 식물의 유전체 해독 문제해결에 가장 큰 기여를 할 것으로 기대 된다. 본 논문은 현재까지 연구된 고구마 생명공학 연구 현황과 조건 불리지역 분자육종 전망에 대해 기술하였다. 이러한 연구 동향 분석은 고구마를 활용한 글로벌 식량, 에너지, 환경문제 해결을 위한 실용화 연구에 도움이 될 것으로 생각된다.

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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Aluminum toxicity-induced alterations of root proteome in wheat seedlings

  • Oh, Myeong Won;Roy, Swapan Kumar;Cho, Kun;Cho, Seong-Woo;Park, Chul-Soo;Chung, Keun-Yook;Choi, Jong-Soon;Woo, Sun-Hee
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.127-127
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    • 2017
  • Aluminum is the most abundant metallic element in the Earth's crust and considered as the most limiting factor for plant productivity in acidic soils. The inhibition of root growth is recognized as the primary effect of Al toxicity. Seeds of wheat cv. Keumkang (Korean cultivar) were germinated on petridish for 5 days and then transferred hydroponic apparatus which was treated with $0{\mu}M$ $AlCl_3$ (control), $100{\mu}M$ $AlCl_3$ and $150{\mu}M$ $AlCl_3$ for 5 days. The length of roots, shoots and fresh weight of wheat seedlings were decreased under aluminum stress. The concentrations of $K^+$, $Mg^{2+}$ and $Ac^{2+}$ were decreased whereas $Al^{3+}$ and $P_2O_5{^-}$ concentration was increased under aluminum stress. Using confocal microscopy, the fluorescence intensity of aluminum was increased with morin staining. In this study, a proteome analysis was performed to identify proteins, which is responsible to aluminum stress in wheat roots. In 10-day-old seedlings, proteins were extracted from roots and separated by 2-DE, stained by CBB. Using image analysis, a total of 47 differentially expressed protein spots were selected, whereas 19 protein spots were significantly up-regulated such as s-adenosylmethionine, oxalate oxidase, malate dehydrogenase, cysteine synthase, ascorbate peroxidase and 28 protein spots were significantly down-regulated such as heat shock protein 70, o-methytransferase 4, enolase, amylogenin by aluminum stress following protein spots analyzed by LTQ-FTICR mass spectrometry. The results provide the global picture of Al toxicity-induced alterations of protein profiles in wheat roots, and identify the Al toxicity-responsive proteins related to various biological processes that may provide some novel clues about plant Al tolerance.

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