Department of Chemistry, North Carolina State University, Raleigh, NC 27695, USA.
Molecules. 2023 Jan 30;28(3):1323. doi: 10.3390/molecules28031323.
The photosynthetic tetrapyrroles share a common structural feature comprised of a β-ketoester motif embedded in an exocyclic ring (ring E). As part of a total synthesis program aimed at preparing native structures and analogues, 3-(3-methoxy-1,3-dioxopropyl)pyrrole was sought. The pyrrole is a precursor to analogues of ring C and the external framework of ring E. Four routes were developed. Routes 1-3 entail a Pd-mediated coupling process of a 3-iodopyrrole with potassium methyl malonate, whereas route 4 relies on electrophilic substitution of TIPS-pyrrole with methyl malonyl chloride. Together, the four routes afford considerable latitude. A long-term objective is to gain the capacity to create chlorophylls and bacteriochlorophylls and analogues thereof by facile de novo means for diverse studies across the photosynthetic sciences.
光合四吡咯具有一个共同的结构特征,包括一个β-酮酯基序嵌入在一个外环(环 E)中。作为旨在制备天然结构和类似物的全合成计划的一部分,我们寻找了 3-(3-甲氧基-1,3-二氧代丙基)吡咯。该吡咯是 C 环和 E 环外部框架类似物的前体。我们开发了四条路线。路线 1-3 涉及 3-碘吡咯与丙二酸二甲酯的 Pd 介导偶联过程,而路线 4 依赖于 TIPS-吡咯与甲基丙二酰氯的亲电取代。这四条路线都提供了相当大的自由度。我们的长期目标是通过简便的从头方法获得创造叶绿素和细菌叶绿素及其类似物的能力,以便在整个光合作用科学领域进行各种研究。