Organic Chemistry Laboratory, Department of Chemistry, National and Kapodistrian University of Athens, 10571 Athens, Greece.
Institute of Chemical Biology, National Hellenic Research Foundation, 11635 Athens, Greece.
Molecules. 2019 Jun 25;24(12):2327. doi: 10.3390/molecules24122327.
In the case of type 2 diabetes, inhibitors of glycogen phosphorylase (GP) may prevent unwanted glycogenolysis under high glucose conditions and thus aim at the reduction of excessive glucose production by the liver. Anomeric spironucleosides, such as hydantocidin, present a rich synthetic chemistry and important biological function (e.g., inhibition of GP). For this study, the Suárez radical methodology was successfully applied to synthesize the first example of a 1,6-dioxa-4-azaspiro[4.5]decane system, not previously constructed via a radical pathway, starting from 6-hydroxymethyl-β-d-glucopyranosyluracil. It was shown that, in the rigid pyranosyl conformation, the required [1,5]-radical translocation was a minor process. The stereochemistry of the spirocycles obtained was unequivocally determined based on the chemical shifts of key sugar protons in the H-NMR spectra. The two spirocycles were found to be modest inhibitors of RMGP.
在 2 型糖尿病的情况下,糖原磷酸化酶抑制剂 (GP) 可能会阻止高葡萄糖条件下不需要的糖原分解,从而旨在减少肝脏的过量葡萄糖产生。差向立体核昔,如海他西定,呈现出丰富的合成化学和重要的生物学功能(例如,抑制 GP)。在这项研究中,Suárez 自由基方法成功地应用于合成第一个 1,6-二氧代-4-氮杂螺[4.5]癸烷系统的实例,该系统以前没有通过自由基途径构建,从 6-羟甲基-β-d-吡喃葡萄糖基尿嘧啶开始。结果表明,在刚性吡喃糖构象中,所需的[1,5]-自由基迁移是一个次要过程。根据 H-NMR 光谱中关键糖质子的化学位移,明确确定了获得的螺环的立体化学。发现这两个螺环是 RMGP 的适度抑制剂。