O'Neill Mara K, Piligian Brent F, Olson Claire D, Woodruff Peter J, Swarts Benjamin M
Department of Chemistry and Biochemistry, Central Michigan University, Mount Pleasant, MI 48859, USA.
Department of Chemistry, University of Southern Maine, Portland, ME, USA.
Pure Appl Chem. 2017 Sep;89(9):1223-1249. doi: 10.1515/pac-2016-1025. Epub 2017 Jan 11.
Trehalose is a non-reducing sugar whose ability to stabilize biomolecules has brought about its widespread use in biological preservation applications. Trehalose is also an essential metabolite in a number of pathogens, most significantly the global pathogen , though it is absent in humans and other mammals. Recently, there has been a surge of interest in modifying the structure of trehalose to generate analogues that have applications in biomedical research and biotechnology. Non-degradable trehalose analogues could have a number of advantages as bioprotectants and food additives. Trehalose-based imaging probes and inhibitors are already useful as research tools and may have future value in the diagnosis and treatment of tuberculosis, among other uses. Underlying the advancements made in these areas are novel synthetic methods that facilitate access to and evaluation of trehalose analogues. In this review, we focus on both aspects of the development of this class of molecules. First, we consider the chemical and chemoenzymatic methods that have been used to prepare trehalose analogues and discuss their prospects for synthesis on commercially relevant scales. Second, we describe ongoing efforts to develop and deploy detectable trehalose analogues, trehalose-based inhibitors, and non-digestible trehalose analogues. The current and potential future uses of these compounds are discussed, with an emphasis on their roles in understanding and combatting mycobacterial infection.
海藻糖是一种非还原性糖,其稳定生物分子的能力使其在生物保存应用中得到广泛应用。海藻糖也是许多病原体中的一种必需代谢物,在全球病原体中最为显著,不过在人类和其他哺乳动物中不存在。最近,人们对修饰海藻糖的结构以生成在生物医学研究和生物技术中有应用的类似物产生了浓厚兴趣。不可降解的海藻糖类似物作为生物保护剂和食品添加剂可能具有许多优势。基于海藻糖的成像探针和抑制剂已经作为研究工具很有用,并且在结核病的诊断和治疗等方面可能具有未来价值。这些领域取得进展的基础是有助于获得和评估海藻糖类似物的新型合成方法。在这篇综述中,我们关注这类分子发展的两个方面。首先,我们考虑用于制备海藻糖类似物的化学和化学酶法,并讨论它们在商业相关规模上的合成前景。其次,我们描述了开发和应用可检测海藻糖类似物、基于海藻糖的抑制剂和不可消化海藻糖类似物的持续努力。讨论了这些化合物当前和潜在的未来用途,重点是它们在理解和对抗分枝杆菌感染中的作用。