Introducing glycomics data into the Semantic Web

被引:21
|
作者
Aoki-Kinoshita, Kiyoko F. [1 ]
Bolleman, Jerven [2 ]
Campbell, Matthew P. [3 ]
Kawano, Shin [4 ]
Kim, Jin-Dong [4 ]
Luetteke, Thomas [5 ]
Matsubara, Masaaki [6 ]
Okuda, Shujiro [7 ,8 ]
Ranzinger, Rene [9 ]
Sawaki, Hiromichi [10 ]
Shikanai, Toshihide [10 ]
Shinmachi, Daisuke [10 ]
Suzuki, Yoshinori [10 ]
Toukach, Philip [11 ]
Yamada, Issaku [6 ]
Packer, Nicolle H. [3 ]
Narimatsu, Hisashi [10 ]
机构
[1] Soka Univ, Dept Bioinformat, Fac Engn, Hachioji, Tokyo 1928577, Japan
[2] Swiss Inst Bioinformat, CH-1211 Geneva 4, Switzerland
[3] Macquarie Univ, Biomol Frontiers Res Ctr, Sydney, NSW 2109, Australia
[4] Res Org Informat & Syst, Database Ctr Life Sci, Bunkyo Ku, Tokyo 1130032, Japan
[5] Univ Giessen, Inst Vet Physiol & Biochem, D-35392 Giessen, Germany
[6] Noguchi Inst, Lab Glycoorgan Chem, Itabashi Ku, Tokyo 1730003, Japan
[7] Ritsumeikan Univ, Dept Bioinformat, Coll Life Sci, Kusatsu, Shiga 5258577, Japan
[8] Niigata Univ, Grad Sch Med & Dent Sci, Chuo Ku, Niigata 9518510, Japan
[9] Univ Georgia, Complex Carbohydrate Res Ctr, Athens, GA 30602 USA
[10] Natl Inst Adv Ind Sci & Technol, Res Ctr Med Glycosci, Tsukuba, Ibaraki 3058568, Japan
[11] ND Zelinskii Inst Organ Chem, NMR Lab, Moscow 119991, Russia
来源
基金
俄罗斯基础研究基金会; 日本科学技术振兴机构;
关键词
BioHackathon; Carbohydrate; Data integration; Glycan; Glycoconjugate; SPARQL; RDF standard; Carbohydrate structure database; PROTEIN DATA-BANK; CARBOHYDRATE STRUCTURES; GLYCOSCIENCES.DE; RESOURCES;
D O I
10.1186/2041-1480-4-39
中图分类号
Q [生物科学];
学科分类号
07 ; 0710 ; 09 ;
摘要
Background: Glycoscience is a research field focusing on complex carbohydrates (otherwise known as glycans)(a), which can, for example, serve as "switches" that toggle between different functions of a glycoprotein or glycolipid. Due to the advancement of glycomics technologies that are used to characterize glycan structures, many glycomics databases are now publicly available and provide useful information for glycoscience research. However, these databases have almost no link to other life science databases. Results: In order to implement support for the Semantic Web most efficiently for glycomics research, the developers of major glycomics databases agreed on a minimal standard for representing glycan structure and annotation information using RDF (Resource Description Framework). Moreover, all of the participants implemented this standard prototype and generated preliminary RDF versions of their data. To test the utility of the converted data, all of the data sets were uploaded into a Virtuoso triple store, and several SPARQL queries were tested as "proofs-of-concept" to illustrate the utility of the Semantic Web in querying across databases which were originally difficult to implement. Conclusions: We were able to successfully retrieve information by linking UniCarbKB, GlycomeDB and JCGGDB in a single SPARQL query to obtain our target information. We also tested queries linking UniProt with GlycoEpitope as well as lectin data with GlycomeDB through PDB. As a result, we have been able to link proteomics data with glycomics data through the implementation of Semantic Web technologies, allowing for more flexible queries across these domains.
引用
收藏
页数:7
相关论文
共 50 条
  • [41] Semantic web search model for information retrieval of the semantic data
    Choi, O
    Yoon, S
    Oh, M
    Han, S
    WEB AND COMMUNICATION TECHNOLOGIES AND INTERNET-RELATED SOCIAL ISSUES - HSI 2003, 2003, 2713 : 588 - 593
  • [42] Detecting Abnormal Semantic Web Data Using Semantic Dependency
    Yu, Yang
    Li, Yingjie
    Heflin, Jeff
    FIFTH IEEE INTERNATIONAL CONFERENCE ON SEMANTIC COMPUTING (ICSC 2011), 2011, : 154 - 157
  • [43] Simplifying Semantic Web application development and semantic data usage
    Rico, Mariano
    AI COMMUNICATIONS, 2010, 23 (01) : 65 - 66
  • [44] A unified multimedia and semantic perspective for data retrieval in the semantic web
    Gennaro, Claudio
    Lenzi, Rita
    Mandreoli, Federica
    Martoglia, Riccardo
    Mordacchini, Matteo
    Penzo, Wilma
    Sassatelli, Simona
    INFORMATION SYSTEMS, 2011, 36 (02) : 174 - 191
  • [45] A unified approach to retrieving web documents and Semantic Web data
    Immaneni, Trivilcram
    Thirunarayan, Krishnaprasad
    SEMANTIC WEB: RESEARCH AND APPLICATIONS, PROCEEDINGS, 2007, 4519 : 579 - +
  • [46] A smart web query method for semantic retrieval of web data
    Chiang, RHL
    Chua, CEH
    Storey, VC
    DATA & KNOWLEDGE ENGINEERING, 2001, 38 (01) : 63 - 84
  • [47] Chinese FrameNet data in Semantic Web language
    You, Liping
    Liu, Tao
    Liu, Kaiying
    PROCEEDINGS OF THE 2007 IEEE INTERNATIONAL CONFERENCE ON NATURAL LANGUAGE PROCESSING AND KNOWLEDGE ENGINEERING (NLP-KE'07), 2007, : 50 - +
  • [48] Linked data: a new alphabet for the semantic web
    Guerrini, Mauro
    Possemato, Tiziana
    JLIS.IT, 2013, 4 (01): : 67 - 90
  • [49] Using semantic techniques to access web data
    Trillo, Raquel
    Po, Laura
    Ilarri, Sergio
    Bergamaschi, Sonia
    Mena, Eduardo
    INFORMATION SYSTEMS, 2011, 36 (02) : 117 - 133
  • [50] Automatic Integration of Spatial Data into the Semantic Web
    Prudhomme, Claire
    Homburg, Timo
    Ponciano, Jean-Jacques
    Boochs, Frank
    Roxin, Ana
    Cruz, Christophe
    WEBIST: PROCEEDINGS OF THE 13TH INTERNATIONAL CONFERENCE ON WEB INFORMATION SYSTEMS AND TECHNOLOGIES, 2017, : 107 - 115