School of Marine Science and Technology, Newcastle University, Ridley Building, Claremont Road, Newcastle upon Tyne NE17RU, England, UK.
Mar Biotechnol (NY). 2010 Jun;12(3):241-52. doi: 10.1007/s10126-010-9263-5.
Glycobiology, which is the study of the structure and function of carbohydrates and carbohydrate containing molecules, is fundamental to all biological systems.Progress in glycobiology has shed light on a range of complex biological processes associated with, for example,disease and immunology, molecular and cellular communication,and developmental biology. There is an established,if rather modest, tradition of glycobiology research in marine systems that has primarily focused on reproduction,biofouling, and chemical communication. The current status of marine glycobiology research is primarily descriptive with very limited progress on structural elucidation and the subsequent definition of precise functional roles beyond a small number of classical examples, e.g., induction of the acrosome reaction in echinoderms. However, with recent advances in analytical instrumentation, there is now the capacity to begin to characterize marine glycoconjugates,many of which will have potential biomedical and biotechnological applications. The analytical approach to glycoscience has developed to such an extent that it has acquired its own "-omics" identity. Glycomics is the quest to decipher the complex information conveyed by carbohydrate molecules--the carbohydrate code or glycocode. Due to the paucity of structural information available, this article will highlight the fundamental importance of glycobiology for many biological processes in marine organisms and will draw upon the best defined systems. These systems therefore may prove genuine candidates for full carbohydrate characterization.
糖生物学是研究碳水化合物和含有碳水化合物的分子的结构和功能的学科,是所有生物系统的基础。糖生物学的进展揭示了一系列与疾病和免疫学、分子和细胞通讯以及发育生物学等相关的复杂生物学过程。海洋系统中的糖生物学研究虽然已经有一定的传统,但相对较小,主要集中在生殖、生物污损和化学通讯上。海洋糖生物学研究的现状主要是描述性的,在结构阐明和随后定义精确的功能作用方面进展非常有限,除了少数经典例子外,例如在棘皮动物中诱导顶体反应。然而,随着分析仪器的最新进展,现在已经有能力开始对海洋糖缀合物进行表征,其中许多将具有潜在的生物医学和生物技术应用。糖科学的分析方法已经发展到如此程度,以至于它已经获得了自己的“组学”身份。糖组学是破译碳水化合物分子所传递的复杂信息的探索——碳水化合物密码或糖码。由于可用的结构信息很少,本文将强调糖生物学对海洋生物中许多生物学过程的重要性,并将借鉴定义最明确的系统。因此,这些系统可能是碳水化合物全特征分析的真正候选者。