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糖生物学中的数据库与工具。

Databases and tools in glycobiology.

作者信息

Artemenko Natalia V, McDonald Andrew G, Davey Gavin P, Rudd Pauline M

机构信息

NIBRT Glycobiology Laboratory, The National Institute for Bioprocessing Research and Training, Dublin, Ireland.

出版信息

Methods Mol Biol. 2012;899:325-50. doi: 10.1007/978-1-61779-921-1_21.

Abstract

Glycans are crucial to the functioning of multicellular organisms. They may also play a role as mediators between host and parasite or symbiont. As many proteins (>50%) are posttranslationally modified by glycosylation, this mechanism is considered to be the most widespread posttranslational modification in eukaryotes. These surface modifications alter and regulate structure and biological activities/functions of proteins/biomolecules as they are largely involved in the recognition process of the appropriate structure in order to bind to the target cells. Consequently, the recognition of glycans on cellular surfaces plays a crucial role in the promotion or inhibition of various diseases and, therefore, glycosylation itself is considered to be a critical protein quality control attribute for commercial therapeutics, which is one of the fastest growing segments in the pharmaceutical industry. With the development of glycobiology as a separate discipline, a number of databases and tools became available in a similar way to other well-established "omics." Alleviating the recognized shortcomings of the available tools for data storage and retrieval is one of the highest priorities of the international glycoinformatics community. In the last decade, major efforts have been made, by leading scientific groups, towards the integration of a number of major databases and tools into a single portal, which would act as a centralized data repository for glycomics, equipped with a number of comprehensive analytical tools for data systematization, analysis, and comparison. This chapter provides an overview of the most important carbohydrate-related databases and glycoinformatic tools.

摘要

聚糖对于多细胞生物的功能至关重要。它们也可能作为宿主与寄生虫或共生体之间的介质发挥作用。由于许多蛋白质(>50%)会进行翻译后糖基化修饰,这种机制被认为是真核生物中最广泛的翻译后修饰。这些表面修饰改变并调节蛋白质/生物分子的结构和生物活性/功能,因为它们在很大程度上参与了识别合适结构以便与靶细胞结合的过程。因此,细胞表面聚糖的识别在各种疾病的促进或抑制中起着关键作用,所以糖基化本身被认为是商业治疗药物的关键蛋白质质量控制属性,而商业治疗药物是制药行业中发展最快的领域之一。随着糖生物学作为一门独立学科的发展,出现了许多数据库和工具,其方式与其他成熟的“组学”类似。减轻现有数据存储和检索工具公认的缺点是国际糖信息学领域的最高优先事项之一。在过去十年中,主要科学团队做出了重大努力,将一些主要数据库和工具整合到一个单一门户中,该门户将作为糖组学的集中数据存储库,并配备许多用于数据系统化、分析和比较的综合分析工具。本章概述了最重要的与碳水化合物相关的数据库和糖信息学工具。

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