Giordano Assunta, Andreotti Giuseppina, Tramice Annabella, Trincone Antonio
Istituto di Chimica Biomolecolare, Naples, Italy.
Biotechnol J. 2006 May;1(5):511-30. doi: 10.1002/biot.200500036.
The marine ecosystem can be considered a rather unexplored source of biological material (e.g. natural substances with therapeutic activity) and can also be a surprising source of enzymes carrying new and interesting catalytic activities to be applied in biocatalysis. The use of glycosyl hydrolases from marine environments dates back to the end of the 1960s and was mainly focused on the development of sensitive and reliable hydrolytic methods for the analysis of sugar chains. As a result not all the benefits of a particular enzymatic activity have been investigated, especially regarding the transglycosylation potential of these enzymes for the synthesis of glycosidic bonds. In this review, the potential of marine sources will be demonstrated reporting on the few examples found in literature for the synthesis and hydrolysis of biologically relevant oligosaccharides catalyzed by glycosyl hydrolases of marine origin. Particular emphasis is given to the synthesis of glycosidic bonds, which is easy by the use of glycosyl hydrolases. Further aspects considered in this review are applications of these biocatalysts for vegetal waste treatment in recovering useful materials, for structural identification and for preparation of target materials from new purified polysaccharides, for the synthesis or modification of food-related compounds and for glycobiology related studies.
海洋生态系统可被视为一个尚未充分探索的生物材料来源(例如具有治疗活性的天然物质),同时也可能是酶的惊人来源,这些酶具有新的、有趣的催化活性,可应用于生物催化。海洋环境中糖基水解酶的使用可追溯到20世纪60年代末,主要集中在开发用于糖链分析的灵敏可靠的水解方法。因此,特定酶活性的所有益处尚未得到充分研究,尤其是这些酶在合成糖苷键方面的转糖基化潜力。在这篇综述中,将通过报道文献中发现的少数由海洋来源的糖基水解酶催化生物相关寡糖合成和水解的例子,来展示海洋来源的潜力。特别强调糖苷键的合成,这通过使用糖基水解酶很容易实现。本综述中考虑的其他方面包括这些生物催化剂在处理植物废料以回收有用材料、结构鉴定、从新纯化的多糖制备目标材料、合成或修饰食品相关化合物以及糖生物学相关研究中的应用。