• 제목/요약/키워드: architectural RNA

검색결과 13건 처리시간 0.198초

Nuclear Bodies Built on Architectural Long Noncoding RNAs: Unifying Principles of Their Construction and Function

  • Chujo, Takeshi;Hirose, Tetsuro
    • Molecules and Cells
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    • 제40권12호
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    • pp.889-896
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    • 2017
  • Nuclear bodies are subnuclear, spheroidal, and membraneless compartments that concentrate specific proteins and/or RNAs. They serve as sites of biogenesis, storage, and sequestration of specific RNAs, proteins, or ribonucleoprotein complexes. Recent studies reveal that a subset of nuclear bodies in various eukaryotic organisms is constructed using architectural long noncoding RNAs (arcRNAs). Here, we describe the unifying mechanistic principles of the construction and function of these bodies, especially focusing on liquid-liquid phase separation induced by architectural molecules that form multiple weakly adhesive interactions. We also discuss three possible advantages of using arcRNAs rather than architectural proteins to build the bodies: position-specificity, rapidity, and economy in sequestering nucleic acid-binding proteins. Moreover, we introduce two recently devised methods to discover novel arcRNA-constructed bodies; one that focuses on the RNase-sensitivity of these bodies, and another that focuses on "semi-extractability" of arcRNAs.

16S rRNA 유전자 기반의 Pyrosequencing을 이용한 하수처리시설 생물반응기의 세균군집구조 분석 (Analysis of Bacterial Community Composition in Wastewater Treatment Bioreactors Using 16S rRNA Gene-Based Pyrosequencing)

  • 김택승;김한신;권순동;박희등
    • 미생물학회지
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    • 제46권4호
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    • pp.352-358
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    • 2010
  • 서로 다른 처리공정으로 운영되는 4개의 하수시설을 대상으로 16S rRNA 유전자 기반의 pyrosequencing을 이용해 활성슬러지 하수처리 생물반응기의 세균군집구조를 분석하였다. 활성 슬러지에는 Rhodocyclales, Burkholderiales, Sphingobacteriales, Myxococcales, Xanthomonadales, Acidobacteria group 4, Anaerolineales, Methylococcales, Nitrospirales, Planctomycetales 목에 속하는 염기서열이 전체의 54-68%를 차지해, 소수의 세균 분류군이 활성슬러지 세균군집의 대부분을 차지하고 있었다. 이들 소수 세균 분류군의 조성은 처리장별로 차이가 있었으며, 하수처리장의 운전조건 및 환경조건에 영향을 받는 것으로 추측되었다. 또한, 활성슬러지는 매우 다양한 세균 종을 가지는 것으로 관찰되었는데(Chao1 richness estimate: 1,374-2,902 operational taxonomic units), 대부분의 다양성은 희귀 종에 기인한 것으로 나타났다. 특히, 분리막으로 운영되는 하수처리시설에서 높은 다양성을 나타내었는데, 처리공정이 매우 긴 고형물체류시간으로 운영되어 느리게 성장하는 다양한 세균이 서식하는데 용이하기 때문인 것으로 판단되었다. High-throughput pyrosequencing 기술을 이용하여 활성슬러지 세균군집을 처리장별로 비교 분석한 본 연구는 향후 활성슬러지 미생물의 생태학적 특성을 보다 잘 이해하고 하수처리공정을 개선하는데 도움이 될 것이다.

454 Pyrosequencing을 이용한 실규모 혐기성 소화조의 아케아 군집구조 분석 (Analysis of Archaeal Communities in Full-Scale Anaerobic Digesters Using 454 Pyrosequencing)

  • 강현진;김택승;이영행;이택준;한금석;최영준;박희등
    • 미생물학회지
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    • 제47권3호
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    • pp.209-217
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    • 2011
  • 결론적으로 본 연구에서는 16S rRNA 유전자 기반의 454 pyrosequencing을 통해 혐기성 소화조에 존재하는 다양한 아케아를 규명할 수 있었으며, 지금까지 그 중요성이 잘 알려지지 않은 Methanococcales 목에 속하는 아케아가 소화조에 공통적으로 존재함을 확인할 수 있었다. 또한, 소화조의 운전조건은 아케아의 다양성과 군집구조를 결정하는데 영향을 미치는 중요한 인자라는 것을 알 수 있었다. 실규모 6개 혐기성 소화조를 대상으로 11개 소화 슬러지 시료를 채취해, 16S rRNA 유전자 기반의 454 pyrosequencing을 이용하여 아케아 군집구조를 조사하였다. 아케아 16S rRNA 유전자 염기서열로부터 측정된 observed operational taxanomic units (OTUs)는 13-55 OTUs이었으며(3% cutoff), 이는 Chao1 richness estimate로 계산된 값의 29-89%에 해당하였다. 소화조에는 메탄생성에 직접적으로 관련이 있다고 알려진 Methanomicrobiales, Methanobacteriales, Methanococcales, Methanosarcinales, Methanocellales 목에 속하는 아케아 뿐만 아니라, Thermoproteales, Thermoplasmatales, Desulfurococcales목에 속하는 아케아도 함께 발견되었다. 이 중 수소를 기질로 해서 메탄을 생성한다고 알려진 Methanoacoccales가 전체 염기서열의 51.8-99.7%를 차지해 가장 많이 발견된 분류군으로 나타났다. Heat map 분석결과 각 시료들의 아케아 군집구조는 1개 시료를 제외한 나머지 10개 시료가 매우 비슷한 군집구조를 가지고 있었다(Pearson 상관지수=0.99). 또한, 아케아 군집구조와 환경변수들의 상관성을 분석한 canonical correspondence analysis를 통해 혐기성 소화조의 아케아 군집구조에 영향을 미치는 중요 환경변수는 소화조의 온도와 총고형물 제거율임을 확인하였다. 모든 결과들을 종합해 볼 때 소화조의 운전조건은 아케아의 다양성과 군집구조를 결정하는데 영향을 미치는 중요한 인자라고 사료된다.

강재 풍력 터빈 타워의 상부구조 모델링 방법에 따른 고유진동수 특성에 대한 고찰 (A Study of Natural Frequency in Steel Wind Turbine Tower according to the RNA Model)

  • 이윤우;최준호;강성용;강영종
    • 복합신소재구조학회 논문집
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    • 제5권3호
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    • pp.37-42
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    • 2014
  • Wind turbine tower has a very important role in wind turbine system as one of the renewable energy that has been attracting attention worldwide recently. Due to the growth of wind power market, advance and development of offshore wind system and getting huger capacity is inevitable. As a result, the vibration is generated at wind turbine tower by receiving constantly dynamic loads such as wind load and wave load. Among these dynamic loads, the mechanical load caused by the rotation of the blade is able to make relatively periodic load to the wind turbine tower. So natural frequency of the wind turbine tower should be designed to avoid the rotation frequency of the rotor according to the design criteria to avoid resonance. Currently research of the wind turbine tower, the precise research does not be carried out because of simplifying the structure of the other upper and lower. In this study, the effect of blade modeling differences are to be analyzed in natural frequency of wind turbine tower.

Nitrifying Bacterial Community Structure of a Full-Scale Integrated Fixed-Film Activated Sludge Process as Investigated by Pyrosequencing

  • Kim, Taek-Seung;Kim, Han-Shin;Kwon, Soon-Dong;Park, Hee-Deung
    • Journal of Microbiology and Biotechnology
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    • 제21권3호
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    • pp.293-298
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    • 2011
  • Nitrifying bacterial community structures of suspended and attached biomasses in a full-scale integrated fixed-film activated sludge process were investigated by analyzing 16S rRNA gene sequences obtained from pyrosequencing. The suspended biomass had a higher number of ammonia-oxidizing bacterial sequences (0.8% of total sequences) than the attached biomass (0.07%), although most of the sequences were within the Nitrosomonas oligotropha lineage in both biomasses. Nitrospira-like nitrite-oxidizing bacterial sequences were retrieved in the suspended biomass (0.06%), not in the attached biomass, whereas the existence of Nitrobacter-like sequences was not evident. The suspended biomass had higher nitrification activity (1.13 mg N/TSS/h) than the attached biomass (0.07 mg N/TSS/h). Overall, the results made it possible to conclude the importance of the suspended biomass, rather than the attached biomass, in nitrification in the wastewater treatment process studied.

Calcite-Forming Bacteria for Compressive Strength Improvement in Mortar

  • Park, Sung-Jin;Park, Yu-Mi;Chun, Woo-Young;Kim, Wha-Jung;Ghim, Sa-Youl
    • Journal of Microbiology and Biotechnology
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    • 제20권4호
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    • pp.782-788
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    • 2010
  • Microbiological calcium carbonate precipitation (MCP) has been investigated for its ability to improve the compressive strength of mortar. However, very few studies have been conducted on the use of calcite-forming bacteria (CFB) to improve compressive strength. In this study, we discovered new bacterial genera that are capable of improving the compressive strength of mortar. We isolated 4 CFB from 7 environmental concrete structures. Using sequence analysis of the 16S rRNA genes, the CFB could be partially identified as Sporosarcina soli KNUC401, Bacillus massiliensis KNUC402, Arthrobacter crystallopoietes KNUC403, and Lysinibacillus fusiformis KNUC404. Crystal aggregates were apparent in the bacterial colonies grown on an agar medium. Stereomicroscopy, scanning electron microscopy, and X-ray diffraction analyses illustrated both the crystal growth and the crystalline structure of the $CaCO_3$ crystals. We used the isolates to improve the compressive strength of cement-sand mortar cubes and found that KNUC403 offered the best improvement in compressive strength.

Application of Alkaliphilic Biofilm-Forming Bacteria to Improve Compressive Strength of Cement-Sand Mortar

  • Park, Sung-Jin;Chun, Woo-Young;Kim, Wha-Jung;Ghim, Sa-Youl
    • Journal of Microbiology and Biotechnology
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    • 제22권3호
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    • pp.385-389
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    • 2012
  • The application of microorganisms in the field of construction material is rapidly increasing worldwide; however, almost all studies that were investigated were bacterial sources with mineral-producing activity and not with organic substances. The difference in the efficiency of using bacteria as an organic agent is that it could improve the durability of cement material. This study aimed to assess the use of biofilm-forming microorganisms as binding agents to increase the compressive strength of cement-sand material. We isolated 13 alkaliphilic biofilmforming bacteria (ABB) from a cement tetrapod block in the West Sea, Korea. Using 16S RNA sequence analysis, the ABB were partially identified as Bacillus algicola KNUC501 and Exiguobacterium marinum KNUC513. KNUC513 was selected for further study following analysis of pH and biofilm formation. Cement-sand mortar cubes containing KNUC513 exhibited greater compressive strength than mineral-forming bacteria (Sporosarcina pasteurii and Arthrobacter crystallopoietes KNUC403). To determine the biofilm effect, Dnase I was used to suppress the biofilm formation of KNUC513. Field emission scanning electron microscopy image revealed the direct involvement of organic-inorganic substance in cement-sand mortar.

C2C12 myotube에서 insulin-like growth factor-I이 plectin과 MACF1 발현에 미치는 영향 (Insulin-like Growth Factor-I Induces Plectin and MACF1 Expression in C2C12 Myotubes)

  • 김혜진;황지선;곽이섭;이원준
    • 생명과학회지
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    • 제22권12호
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    • pp.1651-1657
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    • 2012
  • 본 연구에서는 C2C12 근육 세포에서 IGF-I이 세포골격 연결 단백질인 plectin과 MACF1 유전자 발현에 미치는 영향에 대해 알아보았다. 그 결과 IGF-I이 plectin 유전자의 단백질과 mRNA 발현을 증가시켰으며, MACF1 mRNA 발현을 증가시켰음을 알 수 있었다. 이는 운동에 의해 근육에서 분비가 증가하는 IGF-I이 근육 관련 유전자들의 발현을 조절하여 근부피 유지에 영향을 미친다는 기존의 연구 결과들에서 더 나아가 골격근 구조 안정화 및 근수축 기전에 기여하는 plectin과 MACF1 유전자 발현에도 영향을 미친다는 사실을 증명하였다는데 의의가 있다고 사료된다. 향후 근수축 기전에 있어, 운동 형태, 근섬유의 종류에 따른 세포 골격 단백질의 역할 규명 및 조절자에 관한 연구가 더 수행된다면 운동이 골격근의 생리적 변화에 미치는 영향에 대한 추가적 정보를 제공할 수 있을 것이다.

Quantitative Analysis of Human- and Cow-Specific 16S rRNA Gene Markers for Assessment of Fecal Pollution in River Waters by Real-Time PCR

  • Jeong, Ju-Yong;Park, Hee-Deung;Lee, Kyong-Hee;Hwang, Jae-Hong;Ka, Jong-Ok
    • Journal of Microbiology and Biotechnology
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    • 제20권2호
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    • pp.245-253
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    • 2010
  • The base sequences representing human- and cow-specific 168 rRNA gene markers identified in a T-RFLP analysis were recovered from clone libraries. The human- and cow-specific primers were designed from these sequences and their specificities were analyzed with fecal DNAs from human, cow, and pig. The AllBac primer set showed positive results for all human, cow, and pig samples, whereas the human-specific primer set showed positive result only for the human sample but not for the cow or pig samples. Likewise, the cow-specific primer set showed positive results only for the cow sample but not for the human or pig samples. Real-time PCR assay with these primers was developed for the identification and quantification of fecal pollution in the river water. The human- and cow-specific markers were detected in the order of 9 $\log_{10}$ copies per gram wet feces, which were two orders of magnitude lower than those of total Bacteroidales. For the river water samples, the human-specific marker was detected in $1.7-6.2\;\log_{10}$ copies/100 ml water, which was 2.4-4.9 orders of magnitude lower than those of total Bacteroidales. There was no significant correlation between total Bacteroidales and conventional fecal indicators, but there was a high correlation between Bacteroidales and the human-specific marker. This assay could reliably identify and quantify the fecal pollution sources, enabling effective measures in the watersheds and facilitating water quality management.

An FCA-mediated epigenetic route towards thermal adaptation of autotrophic development in plants

  • Lee, Hyo-Jun;Ha, Jun-Ho;Park, Chung-Mo
    • BMB Reports
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    • 제50권7호
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    • pp.343-344
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    • 2017
  • Plants are able to recognize even small changes in surrounding temperatures to optimize their growth and development. At warm temperatures, plants exhibit diverse architectural adjustments, including hypocotyl and petiole elongation, leaf hyponasty, and reduced stomatal density. However, it was previously unknown how such warm temperatures affected the early stages of seedling development. In our recent study, we demonstrated that the RNA-binding protein, FCA, is critical for sustaining chlorophyll biosynthesis during early seedling development, which is a prerequisite for autotrophic transition at warm temperatures. FCA plays a dual role in this thermal response. It inhibits the rapid degradation of protochlorophyllide oxidoreductases (PORs) that mediate chlorophyll biosynthesis. In addition, it induces the expression of POR genes at the chromatin level, which contributes to maintaining functional enzyme levels. Our findings provide molecular basis for the thermal adaptation of chlorophyll biosynthesis during the early stages of seedling development in nature.