• 제목/요약/키워드: RNA-protein interactions

검색결과 112건 처리시간 0.028초

PRRS 바이러스 Nucleocapsid 단백질 인산화의 기능학적 연구 (Functional Characterization of Phosphorylation of the Porcine Reproductive and Respiratory Syndrome Virus (PRRSV) Nucleocapsid Protein)

  • 이창희
    • 한국미생물·생명공학회지
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    • 제37권3호
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    • pp.287-292
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    • 2009
  • 돼지생식기호흡기증후군 바이러스를 구성하고 있는 뉴클레오캡시드(N) 단백질은 다양한 기능을 가지고 있는 basic 단백질로써 또한 아직까지 밝혀지지 않은 역할을 하는 serine 인산화 단백질로 알려져 있다. 먼저 바이러스가 복제되는 동안 뉴클레오캡시드 단백질 인산화가 어떤 생물학적 역할을 하는지에 대한 이해를 하기 위하여 mutagenesis 방법으로 단백질 내 모든 serine 잔기들을 alanine으로 대체하여 변이 뉴클레오캡시드 단백질을 구축하였다. 이 재조합 뉴클레오캡시드 단백질은 비인산화 단백질로 확인되었고 이는 뉴클레오캡시드 단백질 인산화에 serine 잔기들이 중요한 역할을 한다는 것을 증명하였다. 돼지 생식기호흡기증후군 바이러스 뉴클레오캡시드 단백질은 세포핵 내 이동과 N-N dimer 형성 등의 특이적인 생물학적 특성들을 보유하고 있으며 이들 각각은 바이러스 감염 시 중요한 역할들을 하는 것으로 알려져 있다. 따라서 본 연구에서는 이 두 가지 뉴클레오캡시드 단백질의 특성들이 인산화 여부에 의해 조절되는지 살펴보았다. 하지만 본 연구의 결과들은 비인산화된 뉴클레오캡시드 단백질이 여전히 transfection된 세포의 핵 또는 핵인에서 발현되었고 더욱이 뉴클레오캡시드 자신과 dimer 형성을 할 수 있었다는 것을 보여주었다. 결론적으로 돼지 생식기호흡기증후군 바이러스 뉴클레오캡시드 단백질의 세포핵 내 수송 및 oligomerization 특성들은 인산화 비의존성으로 조절되는 것으로 보여 진다. 아마도 이 인산화 작용은 뉴클레오캡시드 단백질의 RNA-binding 특성등과 같은 다른 수준의 조절과 관련이 있는 것으로 추측되어 진다.

A pathogen-induced osmotin-like protein gene, CAOSMl, from pepper: Differential expression and in situ localization in pepper tissues during pathogen infection and abiotic stresses

  • Hong, J.K.;Jung, H.W.;Lee, B.K.;Lee, S.C.;Hwang, B.K.
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.78.1-78
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    • 2003
  • An osmotin-like protein (CAOSMl) gene was isolated from pepper leaves infected with the avirulent strain Bv5-4a of Xmthomonas campestris pv. vesicatoria. The cDNA encodes a polypeptide of 250 amino acids with a molecular mass of 27, 361 Da. Its amino acid sequence is highly homologous to various osmotin-like proteins from other plant species. The CAOSMl gene expression was organ- and tissue-specifically regulated In pepper plants. The CAOSMl mRNA was intensely localized in the endodermis area of root tissue and in the phloem cells of vascular bundles of red fruit tissue, but not in leaf, stem, and green fruit tissues of healthy pepper plants. Infection by X. c. pv vesintoria, Colletotrichum coccodes, or Phytopkhora capsici iinduced CAOSMl transcription in the leaf or stem tissues. Expression of the CAOSMl gene was somewhat higher in the incompatible than the compatible interactions of pathogens with pepper. The CAOSMl mRNA was prevalently localized in the phloem cells of the vascular bundle of leaf tissues infected by C. coccodes. The CAOSMl gene was activated in leaf tissues by treatment with ethylene, methyl jasmonate, high salinity, cold acclimation and mechanical wounding, but not by abscisic acid (ABA) and drought. These results indicate that the pepper CAOSMl protein functions in response to Pathogens and some abiotic stresses in pepper plants

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Effect of Korean Red Ginseng extracts on drug-drug interactions

  • Kim, Se-Jin;Choi, Seungmok;Kim, Minsoo;Park, Changmin;Kim, Gyu-Lee;Lee, Si-On;Kang, Wonku;Rhee, Dong-Kwon
    • Journal of Ginseng Research
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    • 제42권3호
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    • pp.370-378
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    • 2018
  • Background: Ginseng has been the subject of many experimental and clinical studies to uncover the diverse biological activities of its constituent compounds. It is a traditional medicine that has been used for its immunostimulatory, antithrombotic, antioxidative, anti-inflammatory, and anticancer effects. Ginseng may interact with concomitant medications and alter metabolism and/or drug transport, which may alter the known efficacy and safety of a drug; thus, the role of ginseng may be controversial when taken with other medications. Methods: We extensively assessed the effects of Korean Red Ginseng (KRG) in rats on the expression of enzymes responsible for drug metabolism [cytochrome p450 (CYP)] and transporters [multiple drug resistance (MDR) and organic anion transporter (OAT)] in vitro and on the pharmacokinetics of two probe drugs, midazolam and fexofenadine, after a 2-wk repeated administration of KRG at different doses. Results: The results showed that 30 mg/kg KRG significantly increased the expression level of CYP3A11 protein in the liver and 100 mg/kg KRG increased both the mRNA and protein expression of OAT1 in the kidney. Additionally, KRG significantly increased the mRNA and protein expression of OAT1, OAT3, and MDR1 in the liver. Although there were no significant changes in the metabolism of midazolam to its major metabolite, 1'-hydroxymidazolam, KRG significantly decreased the systemic exposure of fexofenadine in a dose-dependent manner. Conclusion: Because KRG is used as a health supplement, there is a risk of KRG overdose; thus, a clinical trial of high doses would be useful. The use of KRG in combination with P-glycoprotein substrate drugs should also be carefully monitored.

그래프 이론 기반의 단백질-단백질 상호작용 데이타 분석을 위한 시스템 (An Analysis System for Protein-Protein Interaction Data Based on Graph Theory)

  • 진희정;윤지현;조환규
    • 한국정보과학회논문지:시스템및이론
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    • 제33권5호
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    • pp.267-281
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    • 2006
  • 단백질-단백질 상호작용(PPI : Protein-Protein Interaction) 데이타는 생물체가 어떠한 메커니즘으로 생명을 유지하는지에 대한 정보를 담고 있다. 질병 연구나 신약 연구를 위해서 PPI 데이타를 이용한 많은 연구들이 이루어지고 있다. 이러한 PPI 데이타의 크기는 Yeast-two-hybrid, Mass spectrometry과 Correlated mRNh expression과 같은 방법들로 인하여 점차 그 증가량이 커지고 있다. 따라서 단백질-단백질 상호작용 데이타의 방대한 양과 복잡한 구조로 인하여 사람이 직접 분석하는 것은 불가능하다. 다행히도 PPI 데이타는 단백질은 노드로, 상호작용은 에지로 표현함으로써 전산학의 그래프 구조로 추상화될 수 있다. 본 논문에서는 방대한 단백질-단백질 상호작용 데이타를 연구자가 다양한 방법으로 손쉽게 분석할 수 있는 워크벤치(workbench) 시스템인 Proteinca (PROTEin INteraction CAbaret)에 대하여 소개한다. Proteinca는 다앙한 데이타베이스의 PPI 데이타를 그래프이론 기반의 분석 기능들을 제공하며, 그래프로 가시화하여 사용자가 직관적으로 이해할 수 있도록 도와준다. 또한, 중력 모델 기반의 간략화 방법을 제공하여 사용자에게 중요 단백질 중심의 가시화를 제공한다.

Genomic and Proteomic Analysis of Microbial Function in the Gastrointestinal Tract of Ruminants - Review -

  • White, Bryan A.;Morrison, Mark
    • Asian-Australasian Journal of Animal Sciences
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    • 제14권6호
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    • pp.880-884
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    • 2001
  • Rumen microbiology research has undergone several evolutionary steps: the isolation and nutritional characterization of readily cultivated microbes; followed by the cloning and sequence analysis of individual genes relevant to key digestive processes; through to the use of small subunit ribosomal RNA (SSU rRNA) sequences for a cultivation-independent examination of microbial diversity. Our knowledge of rumen microbiology has expanded as a result, but the translation of this information into productive alterations of ruminal function has been rather limited. For instance, the cloning and characterization of cellulase genes in Escherichia coli has yielded some valuable information about this complex enzyme system in ruminal bacteria. SSU rRNA analyses have also confirmed that a considerable amount of the microbial diversity in the rumen is not represented in existing culture collections. However, we still have little idea of whether the key, and potentially rate-limiting, gene products and (or) microbial interactions have been identified. Technologies allowing high throughput nucleotide and protein sequence analysis have led to the emergence of two new fields of investigation, genomics and proteomics. Both disciplines can be further subdivided into functional and comparative lines of investigation. The massive accumulation of microbial DNA and protein sequence data, including complete genome sequences, is revolutionizing the way we examine microbial physiology and diversity. We describe here some examples of our use of genomics- and proteomics-based methods, to analyze the cellulase system of Ruminococcus flavefaciens FD-1 and explore the genome of Ruminococcus albus 8. At Illinois, we are using bacterial artificial chromosome (BAC) vectors to create libraries containing large (>75 kbases), contiguous segments of DNA from R. flavefaciens FD-1. Considering that every bacterium is not a candidate for whole genome sequencing, BAC libraries offer an attractive, alternative method to perform physical and functional analyses of a bacterium's genome. Our first plan is to use these BAC clones to determine whether or not cellulases and accessory genes in R. flavefaciens exist in clusters of orthologous genes (COGs). Proteomics is also being used to complement the BAC library/DNA sequencing approach. Proteins differentially expressed in response to carbon source are being identified by 2-D SDS-PAGE, followed by in-gel-digests and peptide mass mapping by MALDI-TOF Mass Spectrometry, as well as peptide sequencing by Edman degradation. At Ohio State, we have used a combination of functional proteomics, mutational analysis and differential display RT-PCR to obtain evidence suggesting that in addition to a cellulosome-like mechanism, R. albus 8 possesses other mechanisms for adhesion to plant surfaces. Genome walking on either side of these differentially expressed transcripts has also resulted in two interesting observations: i) a relatively large number of genes with no matches in the current databases and; ii) the identification of genes with a high level of sequence identity to those identified, until now, in the archaebacteria. Genomics and proteomics will also accelerate our understanding of microbial interactions, and allow a greater degree of in situ analyses in the future. The challenge is to utilize genomics and proteomics to improve our fundamental understanding of microbial physiology, diversity and ecology, and overcome constraints to ruminal function.

Double-stranded RNA 발현 세균의 동결건조 제형화와 적용 대상 해충 선택성 (A Freeze-drying Formulation and Target Specificity of Double-stranded RNA-expressing Bacteria to Control Insect Pests)

  • 김은성;김용균
    • 한국응용곤충학회지
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    • 제55권2호
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    • pp.81-89
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    • 2016
  • 이중가닥 RNA (double-stranded RNA, dsRNA)는 표적 유전자의 발현을 억제하는 기능으로 해충방제에 응용되었다. 인테그린은 ${\alpha}$${\beta}$ 단위체로 구성된 이량체 막 단백질이다. 진핵생명체에서 인테그린은 세포-세포 및 세포-세포외기질의 상호연결에 중요한 역할을 담당한다. 인테그린 ${\beta}$ 단위체 발현을 억제하는 특정한 dsRNA (= dsINT)는 해당 곤충에 뚜렷한 치사효과를 유발한다. 또한, dsINT를 발현시키는 형질전환된 대장균도 해당 곤충에 뚜렷한 살충력을 가진다. 그러나 이 세균 살충제의 야외 적용을 위해서는 제형화 기술이 필요했다. 본 연구는 dsINT를 발현하는 재조합 세균을 동결 건조시켜 대상 곤충에 대해 살충효능을 검정하였다. 동결 건조된 세균은 파밤나방(Spodoptera exigua) 종령 유충에 높은 섭식독을 일으켰다. 파밤나방에 대해서 Bacillus thuringiensis 상용 살충제 처리는 불과 60%의 살충력을 보이는 반면, 동결 건조된 dsINT 발현 세균과 혼합 처리할 때 살충력은 크게 증가하였다. dsINT 발현 세균은 해당 인테그린 염기서열 유사성에 따라 차이를 보이는 해충 종에 선택적 독성을 나타냈다. 이 결과는 인테그린에 특이적 dsRNA를 발현하는 세균이 동결 건조 제형화 조건하에서도 살충력을 유지한다는 것을 나타냈다.

Ginsenoside Rg1 activates ligand-independent estrogenic effects via rapid estrogen receptor signaling pathway

  • Gao, Quan-Gui;Zhou, Li-Ping;Lee, Vien Hoi-Yi;Chan, Hoi-Yi;Man, Cornelia Wing-Yin;Wong, Man-Sau
    • Journal of Ginseng Research
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    • 제43권4호
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    • pp.527-538
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    • 2019
  • Background: Ginsenoside Rg1 was shown to exert ligand-independent activation of estrogen receptor (ER) via mitogen-activated protein kinase-mediated pathway. Our study aimed to delineate the mechanisms by which Rg1 activates the rapid ER signaling pathways. Methods: ER-positive human breast cancer MCF-7 cells and ER-negative human embryonic kidney HEK293 cells were treated with Rg1 ($10^{-12}M$, $10^{-8}M$), $17{\beta}$-estradiol ($10^{-8}M$), or vehicle. Immunoprecipitation was conducted to investigate the interactions between signaling protein and ER in MCF-7 cells. To determine the roles of these signaling proteins in the actions of Rg1, small interfering RNA or their inhibitors were applied. Results: Rg1 rapidly induced $ER{\alpha}$ translocation to plasma membrane via caveolin-1 and the formation of signaling complex involving linker protein (Shc), insulin-like growth factor-I receptor, modulator of nongenomic activity of ER (MNAR), $ER{\alpha}$, and cellular nonreceptor tyrosine kinase (c-Src) in MCF-7 cells. The induction of extracellular signal-regulated protein kinase and mitogen-activated protein kinase kinase (MEK) phosphorylation in MCF-7 cells by Rg1 was suppressed by cotreatment with small interfering RNA against these signaling proteins. The stimulatory effects of Rg1 on MEK phosphorylation in these cells were suppressed by both PP2 (Src kinase inhibitor) and AG1478 [epidermal growth factor receptor (EGFR) inhibitor]. In addition, Rg1-induced estrogenic activities, EGFR and MEK phosphorylation in MCF-7 cells were abolished by cotreatment with G15 (G protein-coupled estrogen receptor-1 antagonist). The increase in intracellular cyclic AMP accumulation, but not Ca mobilization, in MCF-7 cells by Rg1 could be abolished by G15. Conclusion: Ginsenoside Rg1 exerted estrogenic actions by rapidly inducing the formation of ER containing signalosome in MCF-7 cells. Additionally, Rg1 could activate EGFR and c-Src ER-independently and exert estrogenic effects via rapid activation of membrane-associated ER and G protein-coupled estrogen receptor.

The emerging role of lncRNAs in inflammatory bowel disease

  • Yarani, Reza;Mirza, Aashiq H.;Kaur, Simranjeet;Pociot, Flemming
    • Experimental and Molecular Medicine
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    • 제50권12호
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    • pp.7.1-7.14
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    • 2018
  • Dysregulation of long noncoding RNA (lncRNA) expression is linked to the development of various diseases. Recently, an emerging body of evidence has indicated that lncRNAs play important roles in the pathogenesis of inflammatory bowel diseases (IBDs), including Crohn's disease (CD) and ulcerative Colitis (UC). In IBD, lncRNAs have been shown to be involved in diverse processes, including the regulation of intestinal epithelial cell apoptosis, association with lipid metabolism, and cell-cell interactions, thereby enhancing inflammation and the functional regulation of regulatory T cells. In this review, we aim to summarize the current knowledge regarding the role of lncRNAs in IBD and highlight potential avenues for future investigation. We also collate potentially immune-relevant, IBD-associated lncRNAs identified through a built-by association analysis with respect to their neighboring protein-coding genes within IBD-susceptible loci. We further underscore their importance by highlighting their enrichment for various aspects of immune system regulation, including antigen processing/presentation, immune cell proliferation and differentiation, and chronic inflammatory responses. Finally, we summarize the potential of lncRNAs as diagnostic biomarkers in IBD.

Bioinformatics Analysis of Autophagy and Mitophagy Markers Associated with Delayed Cerebral Ischemia Following Subarachnoid Hemorrhage

  • Youn, Dong Hyuk;Kim, Bong Jun;Hong, Eun Pyo;Jeon, Jin Pyeong
    • Journal of Korean Neurosurgical Society
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    • 제65권2호
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    • pp.236-244
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    • 2022
  • Objective : To evaluate the interactions among differentially expressed autophagy and mitophagy markers in subarachnoid hemorrhage (SAH) patients with delayed cerebral ischemia (DCI). Methods : The expression data of autophagy and mitophagy-related makers in the cerebrospinal fluid (CSF) cells was analyzed by real-time reverse transcription-polymerase chain reaction and Western blotting. The markers included death-associated protein kinase (DAPK)-1, BCL2 interacting protein 3 like (BNIP3L), Bcl-1 antagonist X, phosphatase and tensin homolog-induced kinase (PINK), Unc-51 like autophagy activating kinase 1, nuclear dot protein 52, and p62. In silico functional analyses including gene ontology enrichment and the protein-protein interaction network were performed. Results : A total of 56 SAH patients were included and 22 (38.6%) of them experienced DCI. The DCI patients had significantly increased mRNA levels of DAPK1, BNIP3L, and PINK1, and increased expression of BECN1 compared to the non-DCI patients. The most enriched biological process was the positive regulation of autophagy, followed by the response to mitochondrial depolarization. The molecular functions ubiquitin-like protein ligase binding and ubiquitin-protein ligase binding were enriched. In the cluster of cellular components, Lewy bodies and the phagophore assembly site were enriched. BECN1 was the most connected gene among the differentially expressed markers related to autophagy and mitophagy in the development of DCI. Conclusion : Our study may provide novel insight into mitochondrial dysfunction in DCI pathogenesis.

Bone Morphogenetic Protein 2 가 두개골 성장 및 두개봉합부의 초기형태발생에 미치는 영향 (THE EFFECT OF BONE MORPHOGENETIC PROTEIN 2(BMP2) ON THE GROWTH OF CRANIAL BONE AND EARLY MORPHOGENESIS OF THE CRANIAL SUTURE)

  • 정혜경;박미현;유현모;남순현;김영진;김현정
    • 대한소아치과학회지
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    • 제30권2호
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    • pp.217-228
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    • 2003
  • 뇌와 두개골의 조화로운 성장 발육은 성장 중인 두개골과 이 뼈들을 연결하는 두개봉합부들 그리고 발육중인 뇌사이의 일련의 상호작용에 의해 이루어진다. 두개봉합부의 조기융합으로 알려진 craniosynostosis는 이러한 상호균형적인 관계가 파괴될 때 야기될 수 있다. Bone morphogenetic protein의 하나인 Bmp2는 골 각각의 형태와 골격의 상대적인 비례성을 조절하는데 관여하고 있으며, Bmp의 하부 유전자로 알려져 있는 Msx2 homeobox 유전자의 돌연변이는 Boston-type craniosynostosis를 야기한다 이와 함께 Dlx5 homozygote mutant mouse의 표현형은 두개골 골화의 지연을 포함한 다양한 두개안면의 이상을 나타낸다. 이러한 사실들은 Bmp2, Msx2, Dlx5 유전자들이 두개봉합부의 형태발생과정에 중요하게 작용할 수 있음을 시사하고 있다. Mouse 두개봉합부의 초기형태발생과정에 위 유전자들의 기능을 알아보기 위해, 태생기 동안의 시상봉합부에서의 Bmp2, Msx2, Dlx5 유전자들의 발현양상을 in situ hybridization 방법을 이용하여 분석하였다. Bmp2 mRNA는 osteogenic front에서 강하게 발현되었으며, parietal bone의 골막에서도 관찰되었다. Msx2 mRNA는 시상봉합부의 미분화 간엽조직에서 강하게 발현되었으며, osteogenie front 및 dura mater에서도 관찰되었다. Dlx5 mRNA는 osteogenic front와 parietal bone에서 강하게 발현되었다. 두개봉합부에서의 Bmp signaling의 역할을 알아보기 위해 태생 15.5일 mouse의 두개골을 이용하여 in vitro 실험을 시행하였다. Bmp2-soaked beads를 osteogenic fronts에 올려놓고 48시간 기관배양한 결과 BSA 대조군에 비해 Bmp2 beads 주위 조직의 두께와 세포수가 증가하였으며 Msx2와 Dlx5 유전자들의 발현을 유도하였다. 그러나 FGF2 beads주위로는 이들 유전자들의 발현이 관찰되지 않았다. 이러한 결과들을 종합해 볼 때, Bmp2 유전자는 두개골 성장과 두개봉합부의 초기 형태발생을 조절하는데 중요한 역할을 담당하고 있으며, Bmp signaling은 Msx2, Dlx5 유전자들을 조절함으로써 두개골의 골화와 두개봉합부의 유지에 관여하고 있음을 제시해 주고 있다.

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