4.7 Article

FGDB: Database of follicle stimulating hormone glycans

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出版社

ELSEVIER
DOI: 10.1016/j.csbj.2021.03.009

关键词

Follicle stimulating hormones (FSH); Glycan structures; Glycoprotein database; Glycomics; Glycan abundance analysis

资金

  1. NIH [5P20GM103427, 5P30CA036727, 2P01AG029531]
  2. Nebraska Research Initiative

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Glycomics, focusing on the study of sugars in organisms, has gained attention due to advancements in mass spectrometry. Analyzing glycan structures associated with FSH has helped understand its biological roles, leading to the development of FSH Glycans DataBase (FGDB) for data storage and analysis to accelerate research in this field.
Glycomics, the study of the entire complement of sugars of an organism has received significant attention in the recent past due to the advances made in high throughput mass spectrometry technologies. These analytical advancements have facilitated the characterization of glycans associated with the follicle-stimulating hormones (FSH), which play a central role in the human reproductive system both in males and females utilizing regulating gonadal (testicular and ovarian) functions. The irregularities in FSH activity are also directly linked with osteoporosis. The glycoanalytical studies have been tremendously helpful in understanding the biological roles of FSH. Subsequently, the increasing number of characterized FSH glycan structures and related glycoform data has thrown a challenge to the glycoinformatics community in terms of data organization, storage and access. Also, a user-friendly platform is needed for providing easy access to the database and performing integrated analysis using a high volume of experimental data to accelerate FSH-focused research. FSH Glycans DataBase (FGDB) serves as a comprehensive and unique repository of structures, features, and related information of glycans associated with FSH. Apart from providing multiple search options, the database also facilitates an integrated user-friendly interface to perform the glycan abundance and comparative analyses using experimental data. The automated integrated pipelines present the possible structures of glycans and variants of FSH based on the input data, and allow the user to perform various analyses. The potential application of FGDB will significantly help both glycoinformaticians as well as wet-lab researchers to stimulate the research in this area. FGDB web access: https://fgdb.unmc.edu/ (C) 2021 The Author(s). Published by Elsevier B.V. on behalf of Research Network of Computational and Structural Biotechnology.

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