• 제목/요약/키워드: Translational control

검색결과 279건 처리시간 0.025초

비대칭 동조질량감쇠기를 활용한 바닥진동제어의 강건성 향상 방안 (Enhancing Robustness of Floor Vibration Control by Using Asymmetric Tuned Mass Damper)

  • 고아라;이철호;김성용
    • 한국강구조학회 논문집
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    • 제26권3호
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    • pp.177-189
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    • 2014
  • 최근 강재의 고강도화를 통한 부재 단면 사이즈의 절감은 종종 강성의 부족으로 이어져 과도한 처짐이나 진동문제를 야기한다. 따라서 적절한 설계나 예방을 통해 구조물의 바닥진동에 대한 보완이 필수적이다. 이러한 바닥진동 문제를 해결하기 위해 동조질량감쇠기가 종종 쓰이고 있다. 동조질량감쇠기는 바닥의 진동수에 대해 정확히 설계되었을 때에는 효율적으로 바닥진동을 제어할 수 있다. 하지만 바닥질량의 크기와 외부하중의 특성에 따라 바닥의 진동수가 수시로 변하는 경우에는 그 효율이 급격히 낮아질 가능성이 있다. 이러한 현상을 동조이탈이라고 한다. 본 연구는 실제 바닥에 가해지는 하중의 변화에 따라 바닥의 진동수가 달라지는 양상을 실험을 통해 고찰한다. 실험 바닥에 기존의 단일동조질량감쇠기를 적용하여 단일동조질량 감쇠기의 한계인 동조이탈현상을 확인한다. 또한, 바닥진동제어의 강건성을 확보하기 위해 진동수의 불확실성을 반영한 비대칭 동조질량감쇠기의 활용을 제안한다. TMD의 강건성이란 진동수가 변화하는 상황에서 바닥진동제어 성능이 얼마나 지속되느냐를 뜻한다. 제안된 비대칭 TMD는 두 개의 비대칭 강성을 가지고 있기 때문에 병진운동과 회전운동을 하면서 진동에너지를 소산한다. 제안된 비대칭TMD의 최적화 결과, 비대칭TMD는 기존 STMD에 비해 28%이상의 진동제어성능을 확보하였으며, 외부의 환경 변화에 대한 강건성은 약 1.4배 개선되었다.

Poly(ADP-ribose) protects vascular smooth muscle cells from oxidative DNA damage

  • Zhang, Chao;Luo, Tao;Cui, Shijun;Gu, Yongquan;Bian, Chunjing;Chen, Yibin;Yu, Xiaochun;Wang, Zhonggao
    • BMB Reports
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    • 제48권6호
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    • pp.354-359
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    • 2015
  • Vascular smooth muscle cells (VSMCs) undergo death during atherosclerosis, a widespread cardiovascular disease. Recent studies suggest that oxidative damage occurs in VSMCs and induces atherosclerosis. Here, we analyzed oxidative damage repair in VSMCs and found that VSMCs are hypersensitive to oxidative damage. Further analysis showed that oxidative damage repair in VSMCs is suppressed by a low level of poly (ADP-ribosyl)ation (PARylation), a key post-translational modification in oxidative damage repair. The low level of PARylation is not caused by the lack of PARP-1, the major poly(ADP-ribose) polymerase activated by oxidative damage. Instead, the expression of poly(ADP-ribose) glycohydrolase, PARG, the enzyme hydrolyzing poly(ADP-ribose), is significantly higher in VSMCs than that in the control cells. Using PARG inhibitor to suppress PARG activity facilitates oxidative damage-induced PARylation as well as DNA damage repair. Thus, our study demonstrates a novel molecular mechanism for oxidative damage-induced VSMCs death. This study also identifies the use of PARG inhibitors as a potential treatment for atherosclerosis. [BMB Reports 2015; 48(6): 354-359]

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.

Production of Recombinant Human Interleukin-11 (IL-11) in Transgenic Tobacco (Nicotiana tabacum) Plants

  • Sadeghi, Abdorrahim;Mahdieh, Majid;Salimi, Somayeh
    • Journal of Plant Biotechnology
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    • 제43권4호
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    • pp.432-437
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    • 2016
  • Interleukin-11 (IL-11) is a cytokine that plays a key regulatory role in the immune system. Recombinant human IL-11 (rhIL-11) exerts a preventative effect against apoptotic cell death and inhibits preadipocyte differentiation. IL-11 also is used to stimulate the bone marrow to produce platelets in order to prevent low platelets that may be caused by chemotherapy. Unfortunately, the high production cost of IL-11 associated. In this study, we investigated the feasibility of transgenic plants for the cost-effective production of rhIL-11. Production of rhIL-11 proteins in whole-plant expression system will be more economical when compared to the current E. coli based expression system. The human rhIL-11 gene was codon optimized to maximize plant host system expression. IL-11 expression vector under the control of a constitutive cauliflower mosaic virus 35S (CaMV 35S) promoter was introduced into tobacco by Agrobacterium-mediated transformation. The 5'-leader sequence (called ${\Omega}$) of tobacco mosaic virus (TMV) as a translational enhancer was added to construct. Transgenic tobacco plants expressing various levels of rhIL-11 protein were generated. Western blotting of the stably transformed lines demonstrated accumulation of the appropriately sized rhIL-11 protein in leaves. This research demonstrated the efficacy of using tobacco as an expression system for the production of rhIL-11.

Tight junction protein 1 is regulated by transforming growth factor-β and contributes to cell motility in NSCLC cells

  • Lee, So Hee;Paek, A Rome;Yoon, Kyungsil;Kim, Seok Hyun;Lee, Soo Young;You, Hye Jin
    • BMB Reports
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    • 제48권2호
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    • pp.115-120
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    • 2015
  • Tight junction protein 1 (TJP1), a component of tight junction, has been reported to play a role in protein networks as an adaptor protein, and TJP1 expression is altered during tumor development. Here, we found that TJP1 expression was increased at the RNA and protein levels in TGF-${\beta}$-stimulated lung cancer cells, A549. SB431542, a type-I TGF-${\beta}$ receptor inhibitor, as well as SB203580, a p38 kinase inhibitor, significantly abrogated the effect of TGF-${\beta}$ on TJP1 expression. Diphenyleneiodonium, an NADPH oxidase inhibitor, also attenuated TJP1 expression in response to TGF-${\beta}$ in lung cancer cells. When TJP1 expression was reduced by shRNA lentiviral particles in A549 cells (A549-sh TJP1), wound healing was much lower than in cells infected with control viral particles. Taken together, these data suggest that TGF-${\beta}$ enhances TJP1 expression, which may play a role beyond structural support in tight junctions during cancer development.

Characterization of LexA-mediated Transcriptional Enhancement of Bidirectional Hydrogenase in Synechocystis sp. PCC 6803 upon Exposure to Gamma Rays

  • Kim, Jin-Hong;Lee, Min Hee;Kim, Ji Hong;Moon, Yu Ran;Cho, Eun Ju;Kim, Ji Eun;Lee, Choon-Hwan;Chung, Byung Yeoup
    • Rapid Communication in Photoscience
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    • 제1권1호
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    • pp.21-24
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    • 2012
  • Influence of gamma rays on the cyanobacterium Synechocystis sp. PCC 6803 cells was investigated in terms of a bidirectional hydrogenase, which is encoded by hoxEFUYH genes and responsible for biohydrogen production. Irradiated cells revealed a substantial change in stoichiometry of photosystems at one day after gamma irradiation at different doses. However, as evaluated by the maximal rate of photosynthetic oxygen evolution, maximal photochemical efficiency of photosystem II, and chlorophyll content, net photosynthesis or photosynthetic capacity was not significantly different between the control and irradiated cells. Instead, transcription of hoxE, hoxH, or lexA, which encodes a subunit of bidirectional hydrogenase or the only transcriptional activator, LexA, for hox genes, was commonly enhanced in the irradiated cells. This transcriptional enhancement was more conspicuously observed immediately after gamma irradiation. In contrast, hydrogenase activities were found to somewhat lower in the irradiated cells. Therefore, we propose that transcription of hox genes should be enhanced by gamma irradiation in a LexA-mediated and possibly photosynthesis-independent manner and that this enhancement might not induce a subsequent increase in hydrogenase activities, probably due to the presence of post-transcriptional and/or post-translational regulatory mechanisms.

Identification of Candidate Porcine miRNA-302/367 Cluster and Its Function in Somatic Cell Reprogramming

  • Son, Dong-Chan;Hwang, Jae Yeon;Lee, Chang-Kyu
    • Reproductive and Developmental Biology
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    • 제38권2호
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    • pp.79-84
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    • 2014
  • MicroRNAs (miRNAs) are approximately 22 nucleotides of small noncoding RNAs that control gene expression at the posttranscriptional level through translational inhibition and destabilization of their target mRNAs. The miRNAs are phylogenetically conserved and have been shown to be instrumental in a wide variety of key biological processes including cell cycle regulation, apoptosis, metabolism, imprinting, and differentiation. Recently, a paper has shown that expression of the miRNA-302/367 cluster expressed abundantly in mouse and human embryonic stem cells (ESCs) can directly reprogram mouse and human somatic cells to induced pluripotent stem cells (iPSCs) efficiently in the absence of any of the four factors, Oct4, Sox2, c-Myc, and Klf4. To apply this efficient method to porcine, we analyzed porcine genomic sequence containing predicted porcine miRNA-302/367 cluster through ENSEMBL database, generated a non-replicative episomal vector system including miRNA-302/367 cluster originated from porcine embryonic fibroblasts (PEF), and tried to make porcine iPSCs by transfection of the miRNA-302/367 cluster. Colonies expressing EGFP and forming compact shape were found, but they were not established as iPSC lines. Our data in this study show that pig miRNA-302/367 cluster could not satisfy requirement of PEF reprogramming conditions for pluripotency. To make pig iPSC lines by miRNA, further studies on the role of miRNAs in pluripotency and new trials of transfection with conventional reprogramming factors are needed.

Puromycin과 Actinomycin D가 卵丘細胞의 分散에 미치는 影響 (Effects of Puromycin and Actinomycin D on the HCG-Induced Expansion of Cumulus Oophorus in vitro)

  • Kwon, Hyuk-Bang
    • 한국동물학회지
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    • 제26권4호
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    • pp.225-233
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    • 1983
  • 哺乳動物의 排卵時 濾胞卵子의 成熟再開와 더불어 卵子를 緻密하게 둘러싸고 있는 卵子細胞들의 分散이 일어난다. 이 現象은 生殖巢刺戟호르몬의 促進을 받은 卵丘細胞들이 細胞間隔에 多量의 뮤코量을 分泌함으로써 이루어지는데 이 때 cAMP가 第二 傳達者로 作用을 한다고 알려져 있다. 본 實驗에서는 卵子-卵丘 複合體를 培養하면서 HCG (10 IU/ml)에 의해 誘導된 卵丘細胞의 分散에 puromycin과 actinomycin D가 미치는 영향을 調査한 바 다음과 같은 缺課를 얻었다. 1. Puromycin은 2 $\\mu$g/ml의 濃度에서 卵丘細胞의 分散을 현저히 抑制하였으며 이 效果는 可逆的이었다. 2. Puromycin의 分散抑制效果는 HCG의 刺戟기간 (3시간) 뿐 아니라 뮤코量의 合成時期 ($3\\sim18$시간)에서도 나타났다. 3. Actinomycin D는 0.025 $\\mu$g/ml의 濃度에서부터 卵丘細胞의 分散을 抑制하기 시작했다. 4. Actinomycin D의 分散抑制效果는 부분적인 可逆性을 나타내었으며 0.1 $\\mu$g/ml의 濃度에서는 非可逆的인 災害效果를 나타내었다. 위의 缺課로부터 HCG의 卵丘細胞 分散誘導過程에는 蛋白質 내지 RNA의 合成過程이 관여하는 것으로 測定되며 따라서 cAMP는 轉寫 내지 解讀水準에서 卵丘細胞의 分散을 調節하는 것 같다.

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miR-205 in Situ Expression and Localization in Head and Neck Tumors - a Tissue Array Study

  • Ab Mutalib, Nurul-Syakima;Lee, Learn-Han;Cheah, Yoke-Kqueen
    • Asian Pacific Journal of Cancer Prevention
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    • 제15권21호
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    • pp.9071-9075
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    • 2014
  • Background: microRNAs are small non-coding RNA that control gene expression by mRNA degradation or translational inhibition. These molecules are known to play essential roles in many biological and physiological processes. miR-205 may be differentially expressed in head and neck cancers; however, there are conflicting data and localization of expression has yet to be determined. Materials and Methods: miR-205 expression was investigated in 48 cases of inflammatory, benign and malignant tumor tissue array of the neck, oronasopharynx, larynx and salivary glands by Locked Nucleic Acid in situ hybridization (LNA-ISH) technology. Results: miR-205 expression was significantly differentially expressed across all of the inflammatory, benign and malignant tumor tissues of the neck. A significant increase in miR-205 staining intensity (p<0.05) was observed from inflammation to benign and malignant tumors in head and neck tissue array, suggesting that miR-205 could be a biomarker to differentiate between cancer and non-cancer tissues. Conclusions: LNA-ISH revealed that miR-205 exhibited significant differential cytoplasmic and nuclear staining among inflammation, benign and malignant tumors of head and neck. miR-205 was not only exclusively expressed in squamous epithelial malignancy. This study offers information and a basis for a comprehensive study of the role of miR-205 that may be useful as a biomarker and/or therapeutic target in head and neck tumors.

MicroRNA-206 Protects against Myocardial Ischaemia-Reperfusion Injury in Rats by Targeting Gadd45β

  • Zhai, Changlin;Qian, Qang;Tang, Guanmin;Han, Bingjiang;Hu, Huilin;Yin, Dong;Pan, Haihua;Zhang, Song
    • Molecules and Cells
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    • 제40권12호
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    • pp.916-924
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    • 2017
  • MicroRNAs are widely involved in the pathogenesis of cardiovascular diseases through regulating gene expression via translational inhibition or degradation of their target mRNAs. Recent studies have indicated a critical role of microRNA-206 in myocardial ischaemia-reperfusion (I/R) injury. However, the function of miR-206 in myocardial I/R injury is currently unclear. The present study was aimed to identify the specific role of miR-206 in myocardial I/R injury and explore the underlying molecular mechanism. Our results revealed that the expression level of miR-206 was significantly decreased both in rat I/R group and H9c2 cells subjected to hypoxia/reoxygenation (H/R) compared with the corresponding control. Overexpression of miR-206 observably decreased infarct size and inhibited the cardiomyocyte apoptosis induced by I/R injury. Furthermore, bioinformatics analysis, luciferase activity and western blot assay proved that $Gadd45{\beta}$ (growth arrest DNA damage-inducible gene $45{\beta}$) was a direct target gene of miR-206. In addition, the expression of pro-apoptotic-related genes, such as p53, Bax and cleaved caspase3, was decreased in association with the down-regulation of $Gadd45{\beta}$. In summary, this study demonstrates that miR-206 could protect against myocardial I/R injury by targeting $Gadd45{\beta}$.