Hirao Kohtaro, Speciale Immacolata, Notaro Anna, Manabe Yoshiyuki, Teramoto Yoshiaki, Sato Takaaki, Atomi Haruyuki, Molinaro Antonio, Ueda Yoshihiro, De Castro Cristina, Fukase Koichi
Department of Chemistry, Graduate School of Science, Osaka University, 1-1 Machikaneyama, Toyonaka, Osaka, 560-0043, Japan.
Department of Agricultural Sciences, University of Napoli Federico II, Via Università 96, 80055, Portici, Naples, Italy.
Angew Chem Int Ed Engl. 2023 Mar 20;62(13):e202218655. doi: 10.1002/anie.202218655. Epub 2023 Feb 16.
Asparagine-linked protein glycosylations (N-glycosylations) are one of the most abundant post-translational modifications and are essential for various biological phenomena. Herein, we describe the isolation, structural determination, and chemical synthesis of the N-glycan from the hyperthermophilic archaeon Thermococcus kodakarensis. The N-glycan from the organism possesses a unique structure including myo-inositol, which has not been found in previously characterized N-glycans. In this structure, myo-inositol is highly glycosylated and linked with a disaccharide unit through a phosphodiester. The straightforward synthesis of this glycan was accomplished through diastereoselective phosphorylation and phosphodiester construction by S 2 coupling. Considering the early divergence of hyperthermophilic organisms in evolution, this study can be expected to open the door to approaching the primitive function of glycan modification at the molecular level.
天冬酰胺连接的蛋白质糖基化(N-糖基化)是最丰富的翻译后修饰之一,对各种生物学现象至关重要。在此,我们描述了来自嗜热古菌柯达热球菌的N-聚糖的分离、结构测定和化学合成。该生物体的N-聚糖具有独特的结构,包括肌醇,这在先前表征的N-聚糖中尚未发现。在这种结构中,肌醇高度糖基化,并通过磷酸二酯与一个二糖单元相连。通过S2偶联进行非对映选择性磷酸化和磷酸二酯构建,实现了这种聚糖的直接合成。考虑到嗜热生物在进化中的早期分化,这项研究有望为在分子水平上探究聚糖修饰的原始功能打开大门。