Kruk Jerzy, Szymańska Renata
Department of Plant Physiology and Biochemistry, Faculty of Biochemistry, Biophysics and Biotechnology, Jagiellonian University Gronostajowa 7 30-387 Kraków Poland
Faculty of Physics and Applied Computer Science, AGH University of Science and Technology Reymonta 19 30-059 Kraków Poland.
RSC Adv. 2023 Jul 31;13(33):23122-23129. doi: 10.1039/d3ra02872k. eCollection 2023 Jul 26.
We elaborate the chemical synthesis of polyprenols by chain lengthening, which is considerably less time-consuming than the other previously described methods. Our method eliminates critical steps requiring low temperature and toxic chemicals, which are difficult to perform in ordinary laboratories. The critical step of acetylene addition in liquid ammonia was replaced by a new approach, namely, the use of sodium acetylide in dimethoxyethane at room temperature, where the reaction is completed within one hour. This method is of general significance as it can also be applied to the synthesis of any other acetylides. Our method provides reasonable yields and can be scaled depending on the requirements. All the reactions were followed by high-performance liquid chromatography, allowing the formation of undesired isomers and other side-products to be controlled. The resulting polyprenols were further used in the synthesis of plastoquinones, although a variety of biological prenylquinones can be synthesized this way. Moreover, we found a new method for the direct formation of tocochromanols (plastochromanols, tocochromanols) from polyprenols and aromatic head groups.
我们阐述了通过链延长进行聚戊烯醇的化学合成方法,该方法比之前描述的其他方法耗时要少得多。我们的方法省去了需要低温和有毒化学品的关键步骤,而这些步骤在普通实验室中很难实施。液氨中乙炔加成的关键步骤被一种新方法所取代,即在室温下于二甲氧基乙烷中使用乙炔钠,该反应在一小时内即可完成。此方法具有普遍意义,因为它也可应用于任何其他乙炔化物的合成。我们的方法产率合理,并且可以根据需求进行规模放大。所有反应均通过高效液相色谱进行跟踪,从而能够控制不想要的异构体和其他副产物的形成。所得的聚戊烯醇进一步用于质体醌的合成,不过通过这种方式也可以合成多种生物异戊二烯醌。此外,我们发现了一种由聚戊烯醇和芳香头基直接形成生育色满醇(质体色满醇、生育色满醇)的新方法。