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天然存在的 N-糖基化碳水化合物。

N-glycolylated carbohydrates in nature.

机构信息

Department of Biology, Center for Biotechnology and Interdisciplinary Studies, Rensselaer Polytechnic Institute, Troy, NY 12180, USA.

Glycobiology Research and Training Center, University of California, San Diego, CA 92093, USA.

出版信息

Glycobiology. 2022 Oct 31;32(11):921-932. doi: 10.1093/glycob/cwac048.

Abstract

N-glycolylated carbohydrates are amino sugars with an N-glycolyl amide group. These glycans have not been well studied due to their surprising rarity in nature in comparison with N-acetylated carbohydrates. Recently, however, there has been increasing interest in N-glycolylated sugars because the non-human sialic acid N-glycolylneuraminic acid (Neu5Gc), apparently the only source of all N-glycolylated sugars in deuterostomes, appears to be involved in xenosialitis (inflammation associated with consumption of Neu5Gc-rich red meats). Xenosialitis has been implicated in cancers as well as other diseases including atherosclerosis. Furthermore, metabolites of Neu5Gc have been shown to be incorporated into glycosaminoglycans (GAGs), resulting in N-glycolylated GAGs. These N-glycolylated GAGs have important potential applications, such as dating the loss of the Neu5Gc-generating CMAH gene in humans and being explored as a xenosialitis biomarker and/or estimate of the body burden of diet-derived Neu5Gc, to understand the risks associated with the consumption of red meats. This review explores N-glycolylated carbohydrates, how they are metabolized to N-glycolylglucosamine and N-glycolylgalactosamine, and how these metabolites can be incorporated into N-glycolylated GAGs in human tissues. We also discuss other sources of N-glycolylated sugars, such as recombinant production from microorganisms using metabolic engineering as well as chemical synthesis.

摘要

N-糖基化碳水化合物是具有 N-糖基酰胺基团的氨基糖。与 N-乙酰化碳水化合物相比,这些糖在自然界中的存在非常罕见,因此研究甚少。然而,最近人们对 N-糖基化糖的兴趣日益增加,因为非人类唾液酸 N-羟乙酰神经氨酸(Neu5Gc)显然是所有原口动物 N-糖基化糖的唯一来源,似乎与异种唾液炎(与食用富含 Neu5Gc 的红肉有关的炎症)有关。异种唾液炎与癌症以及包括动脉粥样硬化在内的其他疾病有关。此外,Neu5Gc 的代谢物已被证明可整合到糖胺聚糖 (GAG) 中,从而产生 N-糖基化 GAG。这些 N-糖基化 GAG 具有重要的潜在应用,例如确定人类失去产生 Neu5Gc 的 CMAH 基因的时间,并作为异种唾液炎生物标志物和/或估计饮食来源的 Neu5Gc 的体内负荷,以了解与食用红肉相关的风险。这篇综述探讨了 N-糖基化碳水化合物,它们如何代谢为 N-羟乙酰氨基葡萄糖和 N-羟乙酰半乳糖胺,以及这些代谢物如何在人类组织中整合到 N-糖基化 GAG 中。我们还讨论了其他 N-糖基化糖的来源,例如使用代谢工程从微生物中重组生产以及化学合成。

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