• 제목/요약/키워드: Omics Data

검색결과 67건 처리시간 0.029초

Modulation of senoinflammation by calorie restriction based on biochemical and Omics big data analysis

  • Bang, EunJin;Lee, Bonggi;Noh, Sang-Gyun;Kim, Dae Hyun;Jung, Hee Jin;Ha, Sugyeong;Yu, Byung Pal;Chung, Hae Young
    • BMB Reports
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    • 제52권1호
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    • pp.56-63
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    • 2019
  • Aging is a complex and progressive process characterized by physiological and functional decline with time that increases susceptibility to diseases. Aged-related functional change is accompanied by a low-grade, unresolved chronic inflammation as a major underlying mechanism. In order to explain aging in the context of chronic inflammation, a new integrative concept on age-related chronic inflammation is necessary that encompasses much broader and wider characteristics of cells, tissues, organs, systems, and interactions between immune and non-immune cells, metabolic and non-metabolic organs. We have previously proposed a novel concept of senescent (seno)-inflammation and provided its frameworks. This review summarizes senoinflammation concept and additionally elaborates modulation of senoinflammation by calorie restriction (CR). Based on aging and CR studies and systems-biological analysis of Omics big data, we observed that senescence associated secretory phenotype (SASP) primarily composed of cytokines and chemokines was notably upregulated during aging whereas CR suppressed them. This result further strengthens the novel concept of senoinflammation in aging process. Collectively, such evidence of senoinflammation and modulatory role of CR provide insights into aging mechanism and potential interventions, thereby promoting healthy longevity.

Non-negligible Occurrence of Errors in Gender Description in Public Data Sets

  • Kim, Jong Hwan;Park, Jong-Luyl;Kim, Seon-Young
    • Genomics & Informatics
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    • 제14권1호
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    • pp.34-40
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    • 2016
  • Due to advances in omics technologies, numerous genome-wide studies on human samples have been published, and most of the omics data with the associated clinical information are available in public repositories, such as Gene Expression Omnibus and ArrayExpress. While analyzing several public datasets, we observed that errors in gender information occur quite often in public datasets. When we analyzed the gender description and the methylation patterns of gender-specific probes (glucose-6-phosphate dehydrogenase [G6PD], ephrin-B1 [EFNB1], and testis specific protein, Y-linked 2 [TSPY2]) in 5,611 samples produced using Infinium 450K HumanMethylation arrays, we found that 19 samples from 7 datasets were erroneously described. We also analyzed 1,819 samples produced using the Affymetrix U133Plus2 array using several gender-specific genes (X (inactive)-specific transcript [XIST], eukaryotic translation initiation factor 1A, Y-linked [EIF1AY], and DEAD [Asp-Glu-Ala-Asp] box polypeptide 3, Y-linked [DDDX3Y]) and found that 40 samples from 3 datasets were erroneously described. We suggest that the users of public datasets should not expect that the data are error-free and, whenever possible, that they should check the consistency of the data.

식품분야에서 Iipidomics 분석 기술의 활용 (Application of Iipidomics in food science)

  • 김현진;장광주;이현정;김보민;오주홍
    • 식품과학과 산업
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    • 제50권1호
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    • pp.16-25
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    • 2017
  • There is no doubt that accumulation of big data using multi-omics technologies will be useful to solve human's long-standing problems such as development of personalized diet and medicine, overcoming diseases, and longevity. However, in the food industry, big data based on omics is scarcely accumulated. In particular, comprehensive analysis of molecular lipid metabolites directly associated with food quality, such as taste, flavor, and texture has been very limited. Moreover, most of food lipidomics studies are applied to analyze lipid components and discriminate authenticity and freshness of limited foods including vegetable and fish oil. However, if lipid big data through food lipidomics research of various foods and materials can be accumulated, lipidomics can be used in the optimization of food processing, production, delivery system, food safety, and storage as well as functional food.

멀티 오믹스 데이터 및 생물학적 네트워크 정보를 이용한 드라이버 유전자 분류 (Cancer driver gene using multi-omics data and biological network information)

  • 박정호;조겨리
    • 한국정보처리학회:학술대회논문집
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    • 한국정보처리학회 2023년도 춘계학술발표대회
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    • pp.490-492
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    • 2023
  • 시퀀싱(sequencing) 기술의 발달로 다양한 오믹스(omics) 데이터의 축적과 인공 지능 기술의 발달로 인하여 다양한 드라이버 유전자 분류기법이 제안되어왔다. 최근에는 암 데이터가 대용량으로 축적되며 기계 학습 기반의 다양한 기법들이 활발히 제안되었다. 특히 다양한 오믹스 데이터를 결합한 고차원 데이터에서 높은 정확도를 확보하기 위한 시도가 활발히 이루어지고 있다. 본 논문에서는 멀티 오믹스와 네트워크 관련 특징을 기반으로 암의 증식 및 발생에 중요한 역할을 하는 드라이버 유전자를 분류하는 딥러닝 모델을 제시한다. 또한 The Cancer Genome Atlas(TCGA) 데이터를 통해서 모델 학습 후 기존 통계 및 머신러닝 기반 기법과 비교하여 성능이 개선되었음을 확인하였다.

Single-Cell Toolkits Opening a New Era for Cell Engineering

  • Lee, Sean;Kim, Jireh;Park, Jong-Eun
    • Molecules and Cells
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    • 제44권3호
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    • pp.127-135
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    • 2021
  • Since the introduction of RNA sequencing (RNA-seq) as a high-throughput mRNA expression analysis tool, this procedure has been increasingly implemented to identify cell-level transcriptome changes in a myriad of model systems. However, early methods processed cell samples in bulk, and therefore the unique transcriptomic patterns of individual cells would be lost due to data averaging. Nonetheless, the recent and continuous development of new single-cell RNA sequencing (scRNA-seq) toolkits has enabled researchers to compare transcriptomes at a single-cell resolution, thus facilitating the analysis of individual cellular features and a deeper understanding of cellular functions. Nonetheless, the rapid evolution of high throughput single-cell "omics" tools has created the need for effective hypothesis verification strategies. Particularly, this issue could be addressed by coupling cell engineering techniques with single-cell sequencing. This approach has been successfully employed to gain further insights into disease pathogenesis and the dynamics of differentiation trajectories. Therefore, this review will discuss the current status of cell engineering toolkits and their contributions to single-cell and genome-wide data collection and analyses.

전자태그를 이용한 해양 연구 기기 및 장비 통합 관리시스템 (Introduction of Total Management System for Oceanographic Instruments Using RFID(Radio Frequency IDentification))

  • 이정한;황근춘;김은수
    • 한국해양환경ㆍ에너지학회지
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    • 제14권3호
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    • pp.192-204
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    • 2011
  • 최근 들어 기후변화, 자원보전 개발 등과 관련하여 전 세계적으로 해양의 중요성이 점차 증대되고 있는 가운데, 해양 관련 연구가 다방면으로 확산됨에 따라 해양선진국들은 해양 연구에 필요한 기기 및 장비에 대하여 효율적이고 체계적으로 관리하는 시스템을 구축해 나가고 있다. 그러나 우리나라의 경우에는 이러한 관리 시스템 구축의 필요성을 느끼고 있지만 아직까지 체계적인 시스템을 구축하고 있지 못한 실정이다. 증가하고 있는 해양관측 조사 수요에 보다 효율적으로 대처하고 양질의 데이터를 얻기 위해서는 해양 조사 관측 장비들에 대한 체계적이고 전문적인 유지 관리 시스템 구축이 필요하다. 본 논문에서는 국내 해양 연구 기기 및 장비 보유 현황 파악 및 해양연구 기기 및 장비 통합 관리시스템 구축의 필요성을 살펴본다. 그리고 현재 한국해양연구원의 전자태그를 이용한 해양연구 기기 및 장비 통합 관리시스템 소개 및 향후 해양연구장비 공동활용방안에 대해서 토의한다.

OAS1 and OAS3 negatively regulate the expression of chemokines and interferon-responsive genes in human macrophages

  • Lee, Wook-Bin;Choi, Won Young;Lee, Dong-Hyun;Shim, Hyeran;KimHa, Jeongsil;Kim, Young-Joon
    • BMB Reports
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    • 제52권2호
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    • pp.133-138
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    • 2019
  • Upon viral infection, the 2', 5'-oligoadenylate synthetase (OAS)-ribonuclease L (RNaseL) system works to cleave viral RNA, thereby blocking viral replication. However, it is unclear whether OAS proteins have a role in regulating gene expression. Here, we show that OAS1 and OAS3 act as negative regulators of the expression of chemokines and interferon-responsive genes in human macrophages. Clustered regularly interspaced short palindromic repeats (CRISPR)-CRISPR-associated protein-9 nuclease (Cas9) technology was used to engineer human myeloid cell lines in which the OAS1 or OAS3 gene was deleted. Neither OAS1 nor OAS3 was exclusively responsible for the degradation of rRNA in macrophages stimulated with poly(I:C), a synthetic surrogate for viral double-stranded (ds)RNA. An mRNA sequencing analysis revealed that genes related to type I interferon signaling and chemokine activity were increased in $OAS1^{-/-}$ and $OAS3^{-/-}$ macrophages treated with intracellular poly(I:C). Indeed, retinoic-acid-inducible gene (RIG)-I- and interferon-induced helicase C domain-containing protein (IFIH1 or MDA5)-mediated induction of chemokines and interferon-stimulated genes was regulated by OAS3, but Toll-like receptor 3 (TLR3)- and TLR4-mediated induction of those genes was modulated by OAS1 in macrophages. However, stimulation of these cells with type I interferons had no effect on OAS1- or OAS3-mediated chemokine secretion. These data suggest that OAS1 and OAS3 negatively regulate the expression of chemokines and interferon-responsive genes in human macrophages.

Prospects of omics-driven synthetic biology for sustainable agriculture

  • Soyoung Park;Sung-Dug Oh;Vimalraj Mani;Jin A Kim;Kihun Ha;Soo-Kwon Park;Kijong Lee
    • 농업과학연구
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    • 제49권4호
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    • pp.749-760
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    • 2022
  • Omics-driven synthetic biology is a multidisciplinary research field that creates new artificial life by employing genetic components, biological devices, and engineering technique based on genetic knowledge and technological expertise. It is also utilized to make valuable biomaterials with limited production via current organisms faster, more efficient, and in huge quantities. As the bioeconomic age begins, and the global synthetic biology market becomes more competitive, investment in research and development (R&D) and associated sectors has grown considerably. By overcoming the constraints of present biotechnologies through the merging of big data and artificial intelligence technologies, huge ripple effects are envisaged in the pharmaceutical, chemical, and energy industries. In agriculture, synthetic biology is being used to solve current agricultural problems and develop sustainable agricultural systems by increasing crop productivity, implementing low-carbon agriculture, and developing plant-based, high-value-added bio-materials such as vaccines for diagnosing and preventing livestock diseases. As international regulatory debates on synthetic biology are now underway, discussions should also take place in our country for the growth of bioindustries and the dissemination of research findings. Furthermore, the system must be improved to facilitate practical application and to enhance the risk evaluation technology and management system.

오믹스 자료를 이용한 정준방법 비교 (A comparison study of canonical methods: Application to -Omics data)

  • 이승수;민은정
    • 응용통계연구
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    • 제37권2호
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    • pp.157-176
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    • 2024
  • 생명현상의 복잡한 시스템에 대한 이해를 위한 융합분석의 중요성이 점점 커지고 있다. 하나의 연구대상을 다양한 관점에서 관찰하여 얻게 되는 여러 데이터의 융합분석은 통해 좀 더 대상에 대한 깊은 이해를 가능하게 한다. 본 연구에서는 그중에서도 특히 하나의 샘플에서 두개의 고차원 데이터가 생성된 경우 다룰 수 있는 분석인 공관성분석과 정준상관분석을 비교하였다. 정준상관분석의 경우 고차원 데이터를 다룰 수 없는 단점이 있기에, 해당 문제를 극복하기 위하여 능형상수를 이용하는 방법(CCA-ridge)과 각 데이터의 공분산행렬을 항등행렬로 가정하여 벌점화 특이값분해를 이용한 방법(CCA-PMD) 두 가지를 고려하였으며 각 방법을 NCI60 세포주 패널에서 얻은 RNA 시퀀싱 데이터와 단백질 시퀀싱 데이터 분석에 적용하였다. 그 결과 정준상관분석의 경우 두 정준변수간의 상관관계에 좀 더 집중하는 반면 공관성분석은 각 데이터의 선형조합간의 상관관계뿐 아니라 각 선형조합의 변동성을 함께 고려함을 확인할 수 있었다. 또한 공관성분석의 경우 여러가지의 가중치행렬을 고려하여 그 결과값을 비교하고 중요 시사점을 도출하였다.

식물 생명공학과 생물정보학 (Plant Biotechnology and Bioinformatics)

  • 김정은;백효정;김영철;허철구
    • Journal of Plant Biotechnology
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    • 제33권3호
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    • pp.209-222
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    • 2006
  • 애기 장대와 벼의 전체 게놈 염기서열 분석이 완료되었고, 다량의 EST 데이터가 많은 식물에서 이용 가능하게 되었다. 또한, 방대한 양의 다양한 생물학적 데이터들이 transcriptomics, proteomics, metabolomics와 같은 여러 '-omics' 기술에 의하여 만들어져 왔다. 생물정보학은 이런 방대한 양의 생물학적 데이터로부터 유용한 정보를 얻는데 필수적이고도 매우 중요한 역할을 수행한다. 이 총설에서, 우리는 대량의 데이터를 생성하는 실험적 방법들과, 식물 병 저항성과 분자 육종과 같은 식물 연구분야로의 응용, 그리고 식물 생명공학의 연구 개발에 유용한 생물정보학적 기술과. 인터넷 정보 사이트들을 소개하였다. 우리는 새로운 실험 방법들과 생물정보학적 분석 기술들이 식물 생명공학 발전에 중요하게 기여할 것으로 기대하고 있으며, 생물정보학은 식물 생명공학의 연구 개발에 있어서 결정적인 요소가 될 것이라 생각한다.