• 제목/요약/키워드: RNA processing

검색결과 191건 처리시간 0.024초

귀전우, 백화사설초, 와송 추출물을 처치한 난소암과 자궁경부암 세포에서의 단백질 발현 변화 (Altered Protein Expression in Ovarian and Cervical Cancer Cells by the Treatment of Extracts from Euonymus alatus Sieb, Oldenlandia diffusa (Willd.) Roxburgh, and Orostachys japonicus A. Berger)

  • 김경순;예성철;유병철;조종관;이연월;유화승
    • 대한한방내과학회지
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    • 제32권1호
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    • pp.33-42
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    • 2011
  • Background : Despite recent advances in cancer management, prognosis of ovarian cancer is poor. Anticancer effects of herbal medicine, such as Euonymus alatus Sieb, Oldenlandia diffusa (Willd.) Roxburgh, and Orostachys japonicus A. Berger, have been reported in treatment of ovarian and cervical cancers, but the systematic approaches to explain their molecular mechanism(s) have not yet been established. Objectives : To establish a basis of understanding for anti-cancer mechanisms of herbal medicine, we profiled protein expression in human ovarian and cervical cancer cells treated with the extracts from Euonymus alatus Sieb, Oldenlandia diffusa (Willd.) Roxburgh and Orostachys japonicus A. Berger. Methods : Human ovarian cancer cell line NIH:OVCAR-3, and human cervical cancer cell line HeLa were employed in the present study. Whole protein was obtained from the cells harvested at 48 hours after the treatment with herbal water-extract, and analyzed by 2DE-based proteomic approach. Results : Various changes of protein expression induced by the herbal treatment were monitored : down-regulation of molecular chaperone (calreticulin variant), glycolytic enzymes (D-3-phosphoglycerate dehydrogenase, glyceraldehyde 3-phosphate dehydrogenase and alpha-enolase), RNA processing molecules (hnRNP A2/B1), and antioxidant protein (peroxiredoxin 1). Conclusions : Repression of glycolysis has been accepted as the mechanism to increase anticancer reagent's effect. Thus, down-regulation of glycolytic enzymes by the herbal extracts suggested a possible synergistic effect of herbs in the presence of platinum-based therapeutics. In further study, as well as the synergistic effect of the herbs, it has to be further validated whether artificial regulation of hnRNP A2/B1 in ovarian cancer cells affects various cancer survival factors, since RNA processing can be interrupted by deranged expression of hnRNP subtypes, and it results in an inhibition of cancer cell growth.

Transcriptome Profiling and Characterization of Drought-Tolerant Potato Plant (Solanum tuberosum L.)

  • Moon, Ki-Beom;Ahn, Dong-Joo;Park, Ji-Sun;Jung, Won Yong;Cho, Hye Sun;Kim, Hye-Ran;Jeon, Jae-Heung;Park, Youn-il;Kim, Hyun-Soon
    • Molecules and Cells
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    • 제41권11호
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    • pp.979-992
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    • 2018
  • Potato (Solanum tuberosum L.) is the third most important food crop, and breeding drought-tolerant varieties is vital research goal. However, detailed molecular mechanisms in response to drought stress in potatoes are not well known. In this study, we developed EMS-mutagenized potatoes that showed significant tolerance to drought stress compared to the wild-type (WT) 'Desiree' cultivar. In addition, changes to transcripts as a result of drought stress in WT and drought-tolerant (DR) plants were investigated by de novo assembly using the Illumina platform. One-week-old WT and DR plants were treated with -1.8 Mpa polyethylene glycol-8000, and total RNA was prepared from plants harvested at 0, 6, 12, 24, and 48 h for subsequent RNA sequencing. In total, 61,100 transcripts and 5,118 differentially expressed genes (DEGs) displaying up- or down-regulation were identified in pairwise comparisons of WT and DR plants following drought conditions. Transcriptome profiling showed the number of DEGs with up-regulation and down-regulation at 909, 977, 1181, 1225 and 826 between WT and DR plants at 0, 6, 12, 24, and 48 h, respectively. Results of KEGG enrichment showed that the drought tolerance mechanism of the DR plant can mainly be explained by two aspects, the 'photosynthetic-antenna protein' and 'protein processing of the endoplasmic reticulum'. We also divided eight expression patterns in four pairwise comparisons of DR plants (DR0 vs DR6, DR12, DR24, DR48) under PEG treatment. Our comprehensive transcriptome data will further enhance our understanding of the mechanisms regulating drought tolerance in tetraploid potato cultivars.

Streptomyces coelicolor RraAS1의 Eschechia coli RNase E의 RNA 분해작용에 대한 활성제로서 기능 암시 (Implications of Streptomyces coelicolor RraAS1 as an activator of ribonuclease activity of Escherichia coli RNase E)

  • 허지훈;서소진;이보은;염지현;이강석
    • 미생물학회지
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    • 제52권3호
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    • pp.243-248
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    • 2016
  • RNase E는 대장균(Escherichia coli)에서 수많은 RNA의 가공 및 분해에 관여하는 필수적인 효소이다. RNase E의 효소 활성은 RraA와 RraB에 의해 조절된다. 그람양성균인 Streptomyces coelicolor는 RNase ES, RraAS1, RraAS2라고 명명되는 RNase E와 RraA의 동족체를 가지고 있다. 이 연구에서는 S. coelicolor 유래의 RraAS1이 E. coli에서 RNase E의 효소활성을 저해하는지 연구하였다. 대장균에서 RraAS1의 발현은 RNase E의 과발현에 의해 감소된 세포생장을 더욱 저하시켰으며, RNase E의 기질인 rpsO, ftsZ, rnhB mRNA의 양을 감소시키는 것을 확인 하였다. 이러한 RraAS1의 효과는 공동면역침전실험을 수행한 결과에서 유추할 수 있듯이, Rne 단백질과 RraAS1의 결합으로 유도되는 것으로 보인다. 이러한 결과는 RraAS1이 대장균에서 RNase E의 리보핵산 가수분해 활성을 유도함을 시사한다.

백년초선인장의 ITS(internal transcribed spacer) 유전자 분석 (Analysis of the ITS (Internal Transcribed Spacer) Region of Opuntia ficus-indica)

  • 인준교;이범수;김은정;최관삼;한승호;신철우;양덕춘
    • 한국자원식물학회지
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    • 제19권1호
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    • pp.161-168
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    • 2006
  • 제주도에 자생하는 부채 선인장인 백년초의 기원 규명을 목적으로 ITS primer를 이용하여 685 bp의 ITS 영역을 분리하였다. ITS 영역의 염기서열을 분석한 결과 18S rRNA의 길이는 54 bp, 26S rRNA는 55 bp, ITS1은 193 bp, ITS2는 220 bp로 구성되어 있었다. 백년초 ITS 영역은 기존에 보고된 Cucurbitoideae 식물들의 ITS 영역에 비하여 ITS2 스페이서 영역의 239-254 bp보다는 다소 짧았다. 그러나 이들 스페이서 영역의 GC 함량은 백년초의 경우 ITS1은 66.8%, ITS2의 경우에는 67.7%로 Cucurbitoideae 식물들에서 보다 높은 GC 함량을 나타내었다. 백년초 선인장의 rDNA 영역에 가장 높은 상동성을 나타낸 것은 같은 Opuntioideae에 속하는 Pereskiopsis porteri(L78037)로 95%의 유사도를 나타내었다. 백년초 rDNA Clustal W 프로그램을 이용하여 유연관계를 조사한 결과 같은 Opuntioideae에 속하는 Pereskiopsis porteri(L78037)와 같은 cluster로 분리되었다.

Ginsenoside Rg1 Epigenetically Modulates Smad7 Expression in Liver Fibrosis via MicroRNA-152

  • Rongrong Zhang ;Xinmiao Li ;Yuxiang Gao ;Qiqi Tao;Zhichao Lang;Yating Zhan;Chunxue Li;Jianjian Zheng
    • Journal of Ginseng Research
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    • 제47권4호
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    • pp.534-542
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    • 2023
  • Background: Ginsenoside Rg1, a bioactive component of Ginseng, has demonstrated anti-inflammatory, anti-cancer, and hepatoprotective effects. It is known that the epithelial-mesenchymal transition (EMT) plays a key role in the activation of hepatic stellate cells (HSCs). Recently, Rg1 has been shown to reverse liver fibrosis by suppressing EMT, although the mechanism of Rg1-mediated anti-fibrosis effects is still largely unclear. Interestingly, Smad7, a negative regulator of the transforming growth factor β (TGF-β) pathway, is often methylated during liver fibrosis. Whether Smad7 methylation plays a vital role in the effects of Rg1 on liver fibrosis remains unclear. Methods: Anti-fibrosis effects were examined after Rg1 processing in vivo and in vitro. Smad7 expression, Smad7 methylation, and microRNA-152 (miR-152) levels were also analyzed. Results: Rg1 significantly reduced the liver fibrosis caused by carbon tetrachloride, and reduced collagen deposition was also observed. Rg1 also contributed to the suppression of collagenation and HSC reproduction in vitro. Rg1 caused EMT inactivation, reducing Desmin and increasing E-cadherin levels. Notably, the effect of Rg1 on HSC activation was mediated by the TGF-β pathway. Rg1 induced Smad7 expression and demethylation. The over-expression of DNA methyltransferase 1 (DNMT1) blocked the Rg1-mediated inhibition of Smad7 methylation, and miR-152 targeted DNMT1. Further experiments suggested that Rg1 repressed Smad7 methylation via miR-152-mediated DNMT1 inhibition. MiR-152 inhibition reversed the Rg1-induced promotion of Smad7 expression and demethylation. In addition, miR-152 silencing led to the inhibition of the Rg1-induced EMT inactivation. Conclusion: Rg1 inhibits HSC activation by epigenetically modulating Smad7 expression and at least by partly inhibiting EMT.

바이오패스웨이를 위한 지식 표현 시스템 (UniPath: A Knowledge Representation System for Biopathways)

  • 이민수;박승수;강성희
    • 한국정보과학회논문지:소프트웨어및응용
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    • 제31권3호
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    • pp.343-352
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    • 2004
  • 최근 생물정보학의 발전과 함께 생물 관련 정보들이 기하급수적으로 증가하고 있다 연구 대상 도 DNA, RNA, 단백질에서 더 나아가 이들의 상호작용 및 조절 메커니즘에 의해 기능들이 어떻게 수행되는 지에 관한 바이오패스웨이까지 포함하게 되었다. 바이오패스웨이는 광대한 양의 정보를 포괄하며 구성체 사이의 유기적 관계를 나타내고 있는 것이므로 이를 컴퓨터로 처리하기 위해서는 보다 명료하며 직관적인 표현이 요구된다. 그러나 기존 시스템에서 사용하는 표기법들은 명료하게 해석될 수 없는 경우가 많고 표현 가능한 영역이 특정 한 단면에만 국한되어 있으며 같은 정보를 표현하여도 시스템마다 표현 레벨과 방식이 달라 시스템 확장 및 통합이 어려운 상황이다. 본 논문에서는 다양한 종류의 바이오패스웨이 지식을 체계적인 단일 표기법을 사용하여 보다 명료하고 효율적으로 표현하며 단일화되고 통일된 UniPath 표기법을 제안하였다. 또한 이 표기법을 적용하여 바이오패스웨이 지식을 그래프 형태로 편집함으로써 그 정보를 등록하며 XML 포맷으로 쉽게 변환할 수 있는 프레임 기반 지식 표현 시스템을 설계하고 실제 데이타에 적용함으로써 타당성을 검증하였다.

Regulation of ADAMTS-2 by 1,25-Dihydroxyvitamin D3 in Osteoblastic Cells

  • Jeon, Eun-Young;Kim, Hyun-Man;Lee, Seung-Bok
    • International Journal of Oral Biology
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    • 제31권3호
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    • pp.93-98
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    • 2006
  • Biosynthetic processing of fibrillar procollagens is essential for producing mature collagen monomers that polymerize into fibrils by a self-assembly process. The metalloproteinase ADAMTS-2 is the major enzyme that processes the N-propeptide of type I procollagen in the skin and also of type II and type III procollagens. Mutations in the ADAMTS-2 gene cause dermatospraxis in animals and Ehlers-Danlos syndrome VIIC in humans, both of which are characterized by the accumulation of type I pN-collagen and the formation of abnormal collagen fibrils in the skin. Despite its importance in procollagen processing, little is known about the regulation of ADAMTS-2 expression. Here, we demonstrate that ADAMTS-2 can be regulated by 1,25-dihydroxyvitamin D3, an inducer of type I procollagen synthesis. This steroid hormone induced ADAMTS-2 mRNA ${\sim}3-fold$ in MG-63 human osteosarcoma cells and MC3T3-E1 murine osteoblastic cells. This induction was dose- and time-dependent in MG-63 cells. In contrast, secreted ADAMTS-2 protein was increased only 1.4-fold with 1,25-dihydroxyvitamin D3. Finally, 1,25-dihydroxyvitamin D3 in the presence of ascorbate increased levels of secreted ADAMTS-2 1.9-fold over ascorbate treatment alone, which did not appreciably change ADAMTS-2 expression. These data indicate that the regulation of ADAMTS-2 is coupled with the synthesis of type I procollagen through 1,25-dihydroxyvitamin D3 signaling and may involve translational or posttranslational control.

Utilization of Potato Starch Processing Wastes to Produce Animal Feed with High Lysine Content

  • Li, Ying;Liu, Bingnan;Song, Jinzhu;Jiang, Cheng;Yang, Qian
    • Journal of Microbiology and Biotechnology
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    • 제25권2호
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    • pp.178-184
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    • 2015
  • This work aims to utilize wastes from the potato starch industry to produce single-cell protein (SCP) with high lysine content as animal feed. In this work, S-(2-aminoethyl)-L-cysteine hydrochloride-resistant Bacillus pumilus E1 was used to produce SCP with high lysine content, whereas Aspergillus niger was used to degrade cellulose biomass and Candida utilis was used to improve the smell and palatability of the feed. An orthogonal design was used to optimize the process of fermentation for maximal lysine content. The optimum fermentation conditions were as follows: temperature of 40℃, substrate concentration of 3%, and natural pH of about 7.0. For unsterilized potato starch wastes, the microbial communities in the fermentation process were determined by terminal restriction fragment length polymorphism analysis of bacterial 16S rRNA genes. Results showed that the dominant population was Bacillus sp. The protein quality as well as the amino acid profile of the final product was found to be significantly higher compared with the untreated waste product at day 0. Additionally, acute toxicity test showed that the SCP product was non-toxic, indicating that it can be used for commercial processing.

Effect of Standardized Boesenbergia pandurata Extract and Its Active Compound Panduratin A on Skin Hydration and Barrier Function in Human Epidermal Keratinocytes

  • Woo, Seon Wook;Rhim, Dong-Bin;Kim, Changhee;Hwang, Jae-Kwan
    • Preventive Nutrition and Food Science
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    • 제20권1호
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    • pp.15-21
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    • 2015
  • The skin plays a key role in protecting the body from the environment and from water loss. Cornified envelope (CE) and natural moisturizing factor (NMF) are considered as the primary regulators of skin hydration and barrier function. The CE prevents loss of water from the body and is formed by cross-linking of several proteins. Among these proteins, filaggrin is an important protein because NMF is produced by the degradation of filaggrin. Proteases, including matriptase and prostasin, stimulate the generation of filaggrin from profilaggrin and caspase-14 plays a role in the degradation of filaggrin. This study elucidated the effects of an ethanol extract of Boesenbergia pandurata (Roxb.) Schltr., known as fingerroot, and its active compound panduratin A on CE formation and filaggrin processing in HaCaT, human epidermal keratinocytes. B. pandurata extract (BPE) and panduratin A significantly stimulated not only CE formation but also the expression of CE proteins, such as loricrin, involucrin, and transglutaminase, which were associated with $PPAR{\alpha}$ expression. The mRNA and protein levels of filaggrin and filaggrin-related enzymes, such as matriptase, prostasin, and caspase-14 were also up-regulated by BPE and panduratin A treatment. These results suggest that BPE and panduratin A are potential nutraceuticals which can enhance skin hydration and barrier function based on their CE formation and filaggrin processing.

Ginsenoside Rk1 inhibits HeLa cell proliferation through an endoplasmic reticulum signaling pathway

  • Qiuyang Li;Hang Sun;Shiwei Liu;Jinxin Tang;Shengnan Liu;Pei Yin;Qianwen Mi;Jingsheng Liu;Lei yu;Yunfeng Bi
    • Journal of Ginseng Research
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    • 제47권5호
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    • pp.645-653
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    • 2023
  • Background: Changes to work-life balance has increased the incidence of cervical cancer among younger people. A minor ginseng saponin known as ginsenoside Rk1 can inhibit the growth and survival of human cancer cells; however, whether ginsenoside Rk1 inhibits HeLa cell proliferation is unknown. Methods and results: Ginsenoside Rk1 blocked HeLa cells in the G0/G1 phase in a dose-dependent manner and inhibited cell division and proliferation. Ginsenoside Rk1 markedly also activated the apoptotic signaling pathway via caspase 3, PARP, and caspase 6. In addition, ginsenoside Rk1 increased LC3B protein expression, indicating the promotion of the autophagy signaling pathway. Protein processing in the endoplasmic reticulum signaling pathway was downregulated in Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analyses, consistent with teal-time quantitative PCR and western blotting that showed YOD1, HSPA4L, DNAJC3, and HSP90AA1 expression levels were dramatically decreased in HeLa cells treated with ginsenoside Rk1, with YOD1 was the most significantly inhibited by ginsenoside Rk1 treatment. Conclusion: These findings indicate that the toxicity of ginsenoside Rk1 in HeLa cells can be explained by the inhibition of protein synthesis in the endoplasmic reticulum and enhanced apoptosis, with YOD1 acting as a potential target for cervical cancer treatment.