• Title/Summary/Keyword: triosephosphate isomerase

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Differential Protein Expressions in Virus-Infected and Uninfected Trichomonas vaginalis

  • Ding, He;Gong, Pengtao;Yang, Ju;Li, Jianhua;Li, He;Zhang, Guocai;Zhang, Xichen
    • Parasites, Hosts and Diseases
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    • v.55 no.2
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    • pp.121-128
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    • 2017
  • Protozoan viruses may influence the function and pathogenicity of the protozoa. Trichomonas vaginalis is a parasitic protozoan that could contain a double stranded RNA (dsRNA) virus, T. vaginalis virus (TVV). However, there are few reports on the properties of the virus. To further determine variations in protein expression of T. vaginalis, we detected 2 strains of T. vaginalis; the virus-infected ($V^+$) and uninfected ($V^-$) isolates to examine differentially expressed proteins upon TVV infection. Using a stable isotope N-terminal labeling strategy (iTRAQ) on soluble fractions to analyze proteomes, we identified 293 proteins, of which 50 were altered in $V^+$ compared with $V^-$ isolates. The results showed that the expression of 29 proteins was increased, and 21 proteins decreased in $V^+$ isolates. These differentially expressed proteins can be classified into 4 categories: ribosomal proteins, metabolic enzymes, heat shock proteins, and putative uncharacterized proteins. Quantitative PCR was used to detect 4 metabolic processes proteins: glycogen phosphorylase, malate dehydrogenase, triosephosphate isomerase, and glucose-6-phosphate isomerase, which were differentially expressed in $V^+$ and $V^-$ isolates. Our findings suggest that mRNA levels of these genes were consistent with protein expression levels. This study was the first which analyzed protein expression variations upon TVV infection. These observations will provide a basis for future studies concerning the possible roles of these proteins in host-parasite interactions.

Physiological and Proteome Responses of Korean F1 maize (Zea mays L.) Hybrids to Water-deficit Stress during Tassel Initiation (옥수수 영양생장기 한발 스트레스에 의한 광합성의 생리적 반응 및 프로테옴 변화 분석)

  • Bae, Hwan Hee;Kwon, Young-Sang;Son, Beom-Young;Kim, Jung-Tae;Go, Young Sam;Kim, Sun-Lim;Baek, Seong-Bum;Shin, Seonghyu;Kim, Sang Gon
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.64 no.4
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    • pp.422-431
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    • 2019
  • Severe droughts in spring have occurred frequently in Korea in recent years, exerting a critical impact on corn yield. Therefore, it is necessary to find physiological and/or molecular indicators of the response to drought stress in maize plants. In this study, we investigated the effects of water-deficit stress on two Korean elite F1 maize hybrids, Ilmichal and Gwangpyeongok, by withholding water for 10 days at tassel initiation. The water deficit drastically reduced the relative leaf water content, leaf number, leaf area, and stem length, leading to dry matter reduction. Moreover, it reduced the SPAD values and stomatal conductance of leaves in drought-stressed plants of both hybrids. Importantly, the number of leaves and SPAD value were non-destructive and easy to investigate in response to water-deficit stress, suggesting that they may be useful indicators for screening drought-tolerant genetic resources. We detected more than 100 spots that were differentially accumulated under drought stress. Of these spots, a total of 21 protein spots (≥1.5-fold) from drought-exposed maize leaves were successfully analyzed by MALDI-TOF-TOF mass spectrometry. Functional annotation using Gene Ontology analysis revealed that most of the identified proteins were involved in carbohydrate metabolism, stress response fatty acid catabolism, photosynthesis, energy metabolism, and transport. The protein expression levels were increased in both Ilmichal and Gwangpyeongok, except for triosephosphate isomerase, fructose-bisphosphate aldolase, and an uncharacterized protein. The lactoylglutathione lyase delta (3,5)-delta (2,4)-dienoyl-CoA isomerase was overexpressed in Gwangpyeongok only. The results obtained from this study suggest that the drought-specific genes may be useful as molecular markers for screening drought-tolerant maize genotypes.

GeneFishing PCR 기법을 이용한 한우 등심조직의 육질 등급 간 차등 발현 유전자의 발굴

  • Sin, Seong-Cheol;Sin, Gi-Hyeon;Park, Jong-Geun;Lee, Jun-Je;Baek, Myeong-Gi;Heo, Yeon-Beom;Chae, Ji-Seon;Jeong, Gu-Yong;Jeong, Ui-Ryong
    • Proceedings of the Korean Society for Food Science of Animal Resources Conference
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    • 2005.10a
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    • pp.119-122
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    • 2005
  • 본 연구는 한우 근내 지방 축적 기작을 구명하고 고급육과 저급육에서 차등 발현되는 유전자를 발굴 동정하여 한우 육질 진단을 위한 분자 표지 마커로 활용하기 위해 GeneFishing PCR 기법을 이용하여 한우 육질등급에 따른 등심조직에서 차등적으로 발현되는 유전자를 분석하였다. 한우 육질 등급($1^+$ 등급 vs 3 등급)간에 총 10개의 차등 발현 유전자가 확인되었고 이 가운데 고급육 한우 등심에서 발현량이 높은 유전자가 4개 그리고 저급육 등심에서 발현량이 높은 유전자 6개가 각각 검출되었다. 발현량 차이 유전자를 cloning하여 염기서열을 분석하고 상동성 검색을 실시한 결과 고급육에서 발현량이 높은 DEG는 주로 EST(expressed sequence tag) 유전자들로 밝혀졌고 저급육에서 발현량이 높은 DEG는 malate dehydrogenase 2(MDH2), myosin heavy chain 2a, triosephosphate isomerase 1(TPI 1), actin, alpha 1, skeletal muscle(ACTA1 ) 유전자들로 동정 되었다. 본 연구를 통해 한우 육질간 차등 발현되는 유전자들은 한우 육질 및 등급판정을 위한 표지인자(marker)로 활용할 수 있어 유전자 마커를 이용한 고급육 생산 한우의 육질 조기진단이 가능할 것이다.

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복제 소 태반과 IVF 소 태반의 protein pattern 분석

  • 김홍래;강재구;윤종택;성한우;조민래;박창식;진동일
    • Proceedings of the Korean Society of Developmental Biology Conference
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    • 2003.10a
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    • pp.90-90
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    • 2003
  • 체세포 핵이식에 의한 복제기술은 매우 낮은 성공률 나타내고 있어 실용화에 지장을 초래하고 있다. 이것은 후생적인 유전현상인 reprogramming이 불완전하게 이루어지기 때문인 것으로 추측되어지고 있다(Reik et al., Theriogenology 2003, 59: 21-32; Han et al, Theriogenology 2003, 59: 33-44). 체세포 핵이식 후에 태아사망의 원인이 태반의 비정상적인 기능과 관계가 있는 것으로 추정되는데 복제시 태아사망의 원인을 찾기 위해 본 연구를 시행하였다. 한우에서 체세포 복제 후 임신 말기에 태아가 사망한 태반조직 3개와 IVF 수정란 이식 후 동일한 시기에 제왕절개술을 실시한 태반조직 2개를 실험에 이용하였다. 태반 protein을 Two-Dimensional electrophoresis와 Mass spectrometer를 이용하여 분석 비교하였다. IPG-system을 이용하여 pH 4~7, pH 6~9에서 1차 전기영동을 한 후, 8~l6%의 SDS-PAGE gel에 2차 전기영동을 실시하였고 G-250 Coomassie로 염색하였다. gel 이미지는 Malanie III program을 이용하여 분석하였다. 전체 gel에서 약 1800개의 구분 가능한 protein spot이 나타났다. pH 4~7 범위에서 양적으로 차이나는 것 15개 중 복제한우 태반에서 증가되는 protein spot 5개와 감소하는 protein spot 10개를 골라 protein identification을 실시하였다. MALDI-TOF-MS를 이용하여 동정한 결과 phosphatidylinositol transfer protein-$\alpha$와 interleukin-18 등의 protein이 복제태반에서 발현이 증가되었고, 복제한우에서 발현이 감소되는 것으로는 vimentin, Rho-GDI-$\beta$, TRAST $\beta$-chain, ovarian sterol carrier protein 2, triosephosphate isomerase, tropemyosin beta chain, Aldose reductase 등으로 나타났다. 이러한 protein들은 inositol 지질 신호전달과 면역시스템, 세포분열, 산소 운반, steroidogenic 세포에서의 콜레스테롤 이동, 촉매 작용, 대사 작용 등에 중요한 역할을 하는 것으로 알려져 체세포 복제에 의한 태아사망 원인은 태반에서 이러한 protein들의 비정상적인 발현에 기인된 것으로 추정된다.

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Proteome analysis of the m. longissimus dorsi between fattening stages in Hanwoo steer

  • Kim, Nam-Kuk;Lee, Seung-Hwan;Cho, Yong-Min;Son, Eun-Suk;Kim, Kyung-Yun;Lee, Chang-Soo;Yoon, Du-Hak;Im, Seok-Ki;Oh, Sung-Jong;Park, Eung-Woo
    • BMB Reports
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    • v.42 no.7
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    • pp.433-438
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    • 2009
  • The objective of this study was to identify proteins in the m. longissimus dorsi between early (12 months of age) and late (27 months of age) fattening stages of Hanwoo (Korean cattle) steers. Using two-dimensional electrophoresis and mass spectrometry, 8 proteins of 11 differentially expressed spots between the 12 and 27 month age groups were identified in the loin muscle. Among those that were differentially expressed, zinc finger 323 and myosin light chain were highly expressed in late-fattening stage, and two catabolic enzymes, triosephosphate isomerase (TPI) and succinate dehydrogenase (SDH) were expressed more in the early versus the late-fattening stage. In particular, the quantification of TPI and SDH by immunoblotting correlated well with fat content. Our data suggested that TPI and SDH are potential candidates as markers and their identification provides new insight into the molecular mechanisms and pathways associated with intramuscular fat contents of bovine skeletal muscle.

Developmental Proteomic Profiling of Porcine Skeletal Muscle during Postnatal Development

  • Kim, Nam-Kuk;Lim, Jong-Hyun;Song, Min-Jin;Kim, Oun-Hyun;Park, Beom-Young;Kim, Myung-Jick;Hwang, In-Ho;Lee, Chang-Soo
    • Asian-Australasian Journal of Animal Sciences
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    • v.20 no.10
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    • pp.1612-1617
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    • 2007
  • In this study, we have compared the skeletal muscle proteome at various stages of porcine postnatal development. Korean native pigs were divided into five postnatal stages of 30, 70, 130, 170 and 300 d and their loin muscles were analyzed for muscle proteome by using two-dimensional electrophoresis and mass spectrometry. We found 5 proteins showing a consistent pattern during skeletal muscle growth. Four proteins were identified as myosin light chain 1 slow-twitch (MLC1sa) isoform, troponin T, triosephosphate isomerase (TIP) and DJ-1 protein. The remaining protein was not identified. Two muscle fiber proteins of MLC1sa isoform and troponin T showed a high expression level at an early postnatal stage and then their levels were decreased markedly during growth stages. On the other hand, the expression of TIP and DJ-1 protein, which are well known as catalysis enzyme and antioxidant-related protein, respectively, were linearly increased during growth stages. Thus, the stage-related muscle proteins may be useful as parameters for understanding the developmental characteristics of biochemical and physiological properties in Korean native pig skeletal muscle.

Identification of Proteins Affected by Iron in Saccharomyces cerevisiae Using Proteome Analysis

  • Lieu Hae-Youn;Song Hyung-Seok;Yang Seung-Nam;Kim Jae-Hwan;Kim Hyun-Joong;Park Young-Doo;Park Cheon-Seok;Kim Hae-Yeong
    • Journal of Microbiology and Biotechnology
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    • v.16 no.6
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    • pp.946-951
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    • 2006
  • To study the effect of iron on Saccharomyces cerevisiae, whole-cell proteins of Saccharomyces cerevisiae were extracted and subjected to two-dimensional polyacrylamide gel electrophoresis (2D-PAGE), and differentially expressed proteins were identified. The proteins separated were further identified by matrix-assisted laser desorption/ionization time-of-flight (MALDI-TOF) mass spectrometry and were compared with a protein database. Of more than 300 spots separated by molecular weight and isoelectric points, 27 differentially expressed spots were identified. Ten proteins were found to be differentially expressed at high iron concentration. Triosephosphate isomerase (TPI), YDR533C hypothetical protein, superoxide dismutase (SOD), 60 kDa heat-shock protein (HSP60), pyruvate dehydrogenase beta subunit 1 (PDB1), and old yellow enzyme 2 (OYE2) were upregulated, whereas thiol-specific antioxidant (TSA), regulatory particle non-ATPase subunit 8 (RPN8), thiol-specific peroxiredoxin 1 (AHP1), and fructose-1, 6-bisphosphate adolase (FBA) were downregulated by iron. Based on the result, we propose that SOD upregulated by iron would protect the yeast from oxidative stress by iron, and that TSA downregulated by iron would render cells hypersensitive to oxidative stress.

Proteomic Analysis of Erythritol-Producing Yarrowia lipolytica from Glycerol in Response to Osmotic Pressure

  • Yang, Li-Bo;Dai, Xiao-Meng;Zheng, Zhi-Yong;Zhu, Li;Zhan, Xiao-Bei;Lin, Chi-Chung
    • Journal of Microbiology and Biotechnology
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    • v.25 no.7
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    • pp.1056-1069
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    • 2015
  • Osmotic pressure is a critical factor for erythritol production with osmophilic yeast. Protein expression patterns of an erythritol-producing yeast, Yarrowia lipolytica, were analyzed to identify differentially-expressed proteins in response to osmotic pressure. In order to analyze intracellular protein levels quantitatively, two-dimensional gel electrophoresis was performed to separate and visualize the differential expression of the intracellular proteins extracted from Y. lipolytica cultured under low (3.17 osmol/kg) and high (4.21 osmol/kg) osmotic pressures. Proteomic analyses allowed identification of 54 differentially-expressed proteins among the proteins distributed in the range of pI 3-10 and 14.4-97.4 kDa molecular mass between the osmotic stress conditions. Remarkably, the main proteins were involved in the pathway of energy, metabolism, cell rescue, and stress response. The expression of such enzymes related to protein and nucleotide biosynthesis was inhibited drastically, reflecting the growth arrest of Y. lipolytica under hyperosmotic stress. The improvement of erythritol production under high osmotic stress was due to the significant induction of a range of crucial enzymes related to polyols biosynthesis, such as transketolase and triosephosphate isomerase, and the osmotic stress responsive proteins like pyridoxine-4-dehydrogenase and the AKRs family. The polyols biosynthesis was really related to an osmotic response and a protection mechanism against hyperosmotic stress in Y. lipolytica. Additionally, the high osmotic stress could also induce other cell stress responses as with heat shock and oxidation stress responses, and these responsive proteins, such as the HSPs family, catalase T, and superoxide dismutase, also had drastically increased expression levels under hyperosmotic pressure.

Muscle Proteome Analysis for the Effect of Panax Ginseng Extracts in Chicken: Identification of Proteins Using Peptide Mass Fingerprinting

  • Jung, K.C.;Yu, S.L.;Lee, Y.J.;Choi, K.D.;Choi, J.S.;Kim, Y.H.;Jang, B.G.;Kim, S.H.;Hahm, D.H.;Lee, J.H.
    • Asian-Australasian Journal of Animal Sciences
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    • v.18 no.7
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    • pp.922-926
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    • 2005
  • The present study was aimed to investigate proteome affected by Panax ginseng extracts in chicken muscles. The whole muscle proteins from chicken fed boiled extracts of 0% (control), 1%, 3%, and 5% Panax ginseng in water were separated by two-dimensional electrophoresis (2-DE) gels using immobilized non-linear gradient (pH 3-10) strips. More than 300 protein spots were detected on silver staining gels. Among them, four protein spots were distinctively up-regulated by Panax ginseng treatments and further investigated by matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS). The obtained MS data were searched against SwissProt database using the Mascot search engine. The up-regulated proteins were finally identified as $\alpha$-tropomyosin (2 spots), triosephosphate isomerase, and one unknown protein. Based on the known functions of the identified proteins, they are highly related to muscle development and enhanced immunity in chickens. These proteins can give valuable information of biochemical roles for Panax ginseng in chicken meats.

Proteomic analysis of rice mutants susceptible to Magnaporthe oryzae

  • Ryu, Hak-Seung;Song, Min-Young;Kim, Chi-Yeol;Han, Muho;Lee, Sang-Kyu;Ryoo, Nayeon;Cho, Jung-Il;Hahn, Tae-Ryong;Jeon, Jong-Seong
    • Plant Biotechnology Reports
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    • v.3 no.2
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    • pp.167-174
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    • 2009
  • To identify genes involved in rice Pi5-mediated disease resistance to Magnaporthe oryzae, we compared the proteomes of the RIL260 rice strain carrying the Pi5 resistance gene with its susceptible mutants M5465 and M7023. Proteins were extracted from the leaf tissues of both RIL260 and the mutant lines at 0, 24, and 48 h after M. oryzae inoculation and separated by two-dimensional polyacrylamide gel electrophoresis (2-DE). Matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF MS) analysis identified eight proteins that were differently expressed between the resistant and susceptible plants (three down- and five up-regulated proteins in the mutants). The down-regulated proteins included a triosephosphate isomerase (spot no. 2210), a 2,3-bisphosphoglycerate-independent phosphoglycerate mutase (no. 3611), and an unknown protein (no. 4505). In addition, the five up-regulated proteins in the mutants were predicted to be a fructokinase I (no. 313), a glutathione S-transferase (no. 2310), an atpB of chloroplast ATP synthase (no. 3616), an aminopeptidase N (no. 3724), and an unknown protein (no. 308). These results suggest that proteomic analysis of rice susceptible mutants is a useful method for identifying novel proteins involved in resistance to the M. oryzae pathogen.