“One-Pot” Protection, Glycosylation, and Protection–Glycosylation Strategies of Carbohydrates

糖基化 化学 聚糖 同种类的 糖蛋白 低聚糖 计算生物学 组合化学 生物化学 生物 物理 热力学
作者
Suvarn S. Kulkarni,Cheng‐Chung Wang,Narayana Murthy Sabbavarapu,Ananda Rao Podilapu,Pin‐Hsuan Liao,Shang‐Cheng Hung
出处
期刊:Chemical Reviews [American Chemical Society]
卷期号:118 (17): 8025-8104 被引量:256
标识
DOI:10.1021/acs.chemrev.8b00036
摘要

Carbohydrates, which are ubiquitously distributed throughout the three domains of life, play significant roles in a variety of vital biological processes. Access to unique and homogeneous carbohydrate materials is important to understand their physical properties, biological functions, and disease-related features. It is difficult to isolate carbohydrates in acceptable purity and amounts from natural sources. Therefore, complex saccharides with well-defined structures are often most conviently accessed through chemical syntheses. Two major hurdles, regioselective protection and stereoselective glycosylation, are faced by carbohydrate chemists in synthesizing these highly complicated molecules. Over the past few years, there has been a radical change in tackling these problems and speeding up the synthesis of oligosaccharides. This is largely due to the development of one-pot protection, one-pot glycosylation, and one-pot protection-glycosylation protocols and streamlined approaches to orthogonally protected building blocks, including those from rare sugars, that can be used in glycan coupling. In addition, new automated strategies for oligosaccharide syntheses have been reported not only for program-controlled assembly on solid support but also by the stepwise glycosylation in solution phase. As a result, various sugar molecules with highly complex, large structures could be successfully synthesized. To summarize these recent advances, this review describes the methodologies for one-pot protection and their one-pot glycosylation into the complex glycans and the chronological developments associated with automated syntheses of oligosaccharides.
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