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结构糖生物学——从酶到细胞器

Structural glycobiology - from enzymes to organelles.

作者信息

Mycroft-West Courtney J, Leanca Miron A, Wu Liang

机构信息

The Rosalind Franklin Institute, Harwell Science & Innovation Campus, OX11 0QX, Didcot, UK.

Division of Structural Biology, Nuffield Department of Medicine, University of Oxford, OX3 7BN, Oxford, UK.

出版信息

Biochem Soc Trans. 2025 Jan 31;53(1):83-100. doi: 10.1042/BST20241119.

Abstract

Biological carbohydrate polymers represent some of the most complex molecules in life, enabling their participation in a huge range of physiological functions. The complexity of biological carbohydrates arises from an extensive enzymatic repertoire involved in their construction, deconstruction and modification. Over the past decades, structural studies of carbohydrate processing enzymes have driven major insights into their mechanisms, supporting associated applications across medicine and biotechnology. Despite these successes, our understanding of how multienzyme networks function to create complex polysaccharides is still limited. Emerging techniques such as super-resolution microscopy and cryo-electron tomography are now enabling the investigation of native biological systems at near molecular resolutions. Here, we review insights from classical in vitro studies of carbohydrate processing, alongside recent in situ studies of glycosylation-related processes. While considerable technical challenges remain, the integration of molecular mechanisms with true biological context promises to transform our understanding of carbohydrate regulation, shining light upon the processes driving functional complexity in these essential biomolecules.

摘要

生物碳水化合物聚合物是生命中一些最为复杂的分子,使其能够参与众多生理功能。生物碳水化合物的复杂性源于参与其构建、解构和修饰的大量酶类。在过去几十年里,碳水化合物加工酶的结构研究极大地推动了对其作用机制的深入理解,为医学和生物技术领域的相关应用提供了支持。尽管取得了这些成功,但我们对多酶网络如何发挥作用以生成复杂多糖的理解仍然有限。诸如超分辨率显微镜和冷冻电子断层扫描等新兴技术,如今能够在接近分子分辨率的水平上研究天然生物系统。在此,我们回顾了碳水化合物加工经典体外研究的见解,以及糖基化相关过程的近期原位研究。尽管仍然存在相当多的技术挑战,但将分子机制与真实生物背景相结合,有望改变我们对碳水化合物调控的理解,为驱动这些重要生物分子功能复杂性的过程带来新的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84b3/12203961/a49e3b1bd45a/BST-53-01-BST20241119-g001.jpg

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