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聚糖的生物学作用。

Biological roles of glycans.

作者信息

Varki Ajit

机构信息

Departments of Medicine and Cellular & Molecular Medicine, Glycobiology Research and Training Center, University of California at San Diego, La Jolla, CA 92093-0687, USA

出版信息

Glycobiology. 2017 Jan;27(1):3-49. doi: 10.1093/glycob/cww086. Epub 2016 Aug 24.

Abstract

Simple and complex carbohydrates (glycans) have long been known to play major metabolic, structural and physical roles in biological systems. Targeted microbial binding to host glycans has also been studied for decades. But such biological roles can only explain some of the remarkable complexity and organismal diversity of glycans in nature. Reviewing the subject about two decades ago, one could find very few clear-cut instances of glycan-recognition-specific biological roles of glycans that were of intrinsic value to the organism expressing them. In striking contrast there is now a profusion of examples, such that this updated review cannot be comprehensive. Instead, a historical overview is presented, broad principles outlined and a few examples cited, representing diverse types of roles, mediated by various glycan classes, in different evolutionary lineages. What remains unchanged is the fact that while all theories regarding biological roles of glycans are supported by compelling evidence, exceptions to each can be found. In retrospect, this is not surprising. Complex and diverse glycans appear to be ubiquitous to all cells in nature, and essential to all life forms. Thus, >3 billion years of evolution consistently generated organisms that use these molecules for many key biological roles, even while sometimes coopting them for minor functions. In this respect, glycans are no different from other major macromolecular building blocks of life (nucleic acids, proteins and lipids), simply more rapidly evolving and complex. It is time for the diverse functional roles of glycans to be fully incorporated into the mainstream of biological sciences.

摘要

长期以来,人们一直认为单糖和复合碳水化合物(聚糖)在生物系统中发挥着主要的代谢、结构和物理作用。针对微生物与宿主聚糖结合的研究也已有数十年。但这些生物学作用只能解释自然界中聚糖显著的复杂性和生物多样性的一部分。大约二十年前回顾这一主题时,人们会发现很少有明确的实例表明聚糖的聚糖识别特异性生物学作用对表达它们的生物体具有内在价值。与之形成鲜明对比的是,现在有大量的例子,以至于这篇更新的综述无法做到全面。相反,本文将进行历史概述,概述广泛的原则并引用一些例子,这些例子代表了不同进化谱系中由各种聚糖类别介导的不同类型的作用。不变的事实是,虽然关于聚糖生物学作用的所有理论都有令人信服的证据支持,但每个理论都有例外。回顾过去,这并不奇怪。复杂多样的聚糖似乎在自然界中普遍存在于所有细胞中,并且对所有生命形式都至关重要。因此,超过30亿年的进化不断产生利用这些分子发挥许多关键生物学作用的生物体,即使有时也会将它们用于次要功能。在这方面,聚糖与生命的其他主要大分子组成部分(核酸、蛋白质和脂质)没有什么不同,只是进化得更快且更复杂。是时候将聚糖的多种功能作用充分纳入生物科学的主流了。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e470/5884436/4869f5910a74/cww086f01.jpg

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