Piotrowska Dorota G, Głowacka Iwona E, Wróblewski Andrzej E, Lubowiecka Liwia
Bioorganic Chemistry Laboratory, Faculty of Pharmacy, Medical University of Lodz, Muszynskiego 1, 90-151 Lodz, Poland.
Beilstein J Org Chem. 2019 Jan 25;15:236-255. doi: 10.3762/bjoc.15.22. eCollection 2019.
Glutamic acid is involved in several cellular processes though its role as the neurotransmitter is best recognized. For detailed studies of interactions with receptors a number of structural analogues of glutamic acid are required to map their active sides. This review article summarizes syntheses of nonracemic hydroxyglutamic acid analogues equipped with functional groups capable for the formation of additional hydrogen bonds, both as donors and acceptors. The majority of synthetic strategies starts from natural products and relies on application of chirons having the required configuration at the carbon atom bonded to nitrogen (e.g., serine, glutamic and pyroglutamic acids, proline and 4-hydroxyproline). Since various hydroxyglutamic acids were identified as components of complex natural products, syntheses of orthogonally protected derivatives of hydroxyglutamic acids are also covered.
谷氨酸虽作为神经递质的作用最为人所熟知,但它也参与多种细胞过程。为详细研究其与受体的相互作用,需要多种谷氨酸结构类似物来确定其活性位点。本文综述了非外消旋羟基谷氨酸类似物的合成方法,这些类似物带有能够形成额外氢键的官能团,既可以作为氢键供体,也可以作为氢键受体。大多数合成策略都以天然产物为起始原料,并依赖于在与氮原子相连的碳原子上具有所需构型的手性源(例如丝氨酸、谷氨酸、焦谷氨酸、脯氨酸和4-羟基脯氨酸)。由于各种羟基谷氨酸已被鉴定为复杂天然产物的组成部分,因此本文也涵盖了羟基谷氨酸正交保护衍生物的合成方法。