Wang Lai-Xi, Davis Benjamin G
Institute of Human Virology and Department of Biochemistry & Molecular Biology, University of Maryland School of Medicine, 725 W. Lombard Street, Baltimore, MD 21201, USA.
Chem Sci. 2013 Sep 1;4(9):3381-3394. doi: 10.1039/C3SC50877C.
Chemical glycobiology is emerging as one of the most uniquely powerful sub-disciplines of chemical biology. The previous scarcity of chemical strategies and the unparalleled structural diversity have created a uniquely fertile ground that is both rich in challenges and potentially very profound in implications. Glycans (oligosaccharides, polysaccharides, and glycoconjugates) are everywhere in biological systems and yet remain disproportionately neglected - reviews highlighting this 'Cinderella status' abound. Yet, the last two decades have witnessed tremendous progress, notably in chemical and chemoenzymatic synthesis, 'sequencing' and arraying, metabolic engineering and imaging. These vital steps serve to highlight not only the great potential but just how much more remains to be done. The vast chemical and functional space of glycans remains to be truly explored. Top-down full-scale glycomic and glycoproteomic studies coupled with hypothesis-driven, bottom-up innovative chemical strategies will be required to properly realize the potential impact of glycoscience on human health, energy, and economy. In this review, we cherry-pick far-sighted advances and use these to identify possible challenges, opportunities and avenues in chemical glycobiology.
化学糖生物学正逐渐成为化学生物学中最具独特力量的子学科之一。以往化学策略的匮乏以及无与伦比的结构多样性,创造了一个独特的沃土,既充满挑战,又可能具有深远的影响。聚糖(寡糖、多糖和糖缀合物)在生物系统中无处不在,但仍被严重忽视——大量综述都强调了这种“灰姑娘地位”。然而,在过去的二十年里取得了巨大进展,尤其是在化学和化学酶促合成、“测序”和阵列化、代谢工程以及成像方面。这些关键步骤不仅凸显了巨大的潜力,也表明还有多少工作有待完成。聚糖广阔的化学和功能空间仍有待真正探索。需要自上而下的全规模糖组学和糖蛋白质组学研究,以及基于假设驱动、自下而上的创新化学策略,才能充分实现糖科学对人类健康、能源和经济的潜在影响。在这篇综述中,我们精选了有远见的进展,并以此来识别化学糖生物学中可能存在的挑战、机遇和途径。