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寡糖的生物学作用:所有理论都是正确的。

Biological roles of oligosaccharides: all of the theories are correct.

作者信息

Varki A

机构信息

Glycobiology Program, UCSD Cancer Center.

出版信息

Glycobiology. 1993 Apr;3(2):97-130. doi: 10.1093/glycob/3.2.97.

Abstract

Many different theories have been advanced concerning the biological roles of the oligosaccharide units of individual classes of glycoconjugates. Analysis of the evidence indicates that while all of these theories are correct, exceptions to each can also be found. The biological roles of oligosaccharides appear to span the spectrum from those that are trivial, to those that are crucial for the development, growth, function or survival of an organism. Some general principles emerge. First, it is difficult to predict a priori the functions a given oligosaccharide on a given glycoconjugate might be mediating, or their relative importance to the organism. Second, the same oligosaccharide sequence may mediate different functions at different locations within the same organism, or at different times in its ontogeny or life cycle. Third, the more specific and crucial biological roles of oligosaccharides are often mediated by unusual oligosaccharide sequences, unusual presentations of common terminal sequences, or by further modifications of the sugars themselves. However, such oligosaccharide sequences are also more likely to be targets for recognition by pathogenic toxins and microorganisms. As such, they are subject to more intra- and inter-species variation because of ongoing host-pathogen interactions during evolution. In the final analysis, the only common features of the varied functions of oligosaccharides are that they either mediate 'specific recognition' events or that they provide 'modulation' of biological processes. In so doing, they generate much of the functional diversity required for the development and differentiation of complex organisms, and for their interactions with other organisms in the environment.

摘要

关于各类糖缀合物中寡糖单元的生物学作用,已经提出了许多不同的理论。对证据的分析表明,虽然所有这些理论都是正确的,但也能找到每个理论的例外情况。寡糖的生物学作用似乎涵盖了从微不足道到对生物体的发育、生长、功能或生存至关重要的范围。一些一般原则浮现出来。首先,很难先验地预测给定糖缀合物上的特定寡糖可能介导的功能,以及它们对生物体的相对重要性。其次,相同的寡糖序列可能在同一生物体内的不同位置、或在其个体发育或生命周期的不同时间介导不同的功能。第三,寡糖更具体和关键的生物学作用通常由不寻常的寡糖序列、常见末端序列的不寻常呈现方式、或糖本身的进一步修饰介导。然而,这样的寡糖序列也更有可能成为致病毒素和微生物识别的靶点。因此,由于进化过程中宿主与病原体的持续相互作用,它们在种内和种间存在更多变异。归根结底,寡糖各种功能的唯一共同特征是它们要么介导“特异性识别”事件,要么对生物过程提供“调节”。这样一来,它们产生了复杂生物体发育和分化以及它们与环境中其他生物体相互作用所需的大部分功能多样性。

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