Huang Lili, Kim Taehwan, Armendarez Olivia J, Deravi Leila F, Parvatkar Prakash T, Manetsch Roman
Department of Chemistry and Chemical Biology, Northeastern University, Boston, Massachusetts 02115, United States.
Department of Pharmaceutical Sciences, Northeastern University, Boston, Massachusetts 02115, United States.
JACS Au. 2024 Oct 23;4(11):4307-4316. doi: 10.1021/jacsau.4c00667. eCollection 2024 Nov 25.
Ommatins, natural colorants found in cephalopods and arthropods, are biosynthesized from tryptophan with uncyclized xanthommatin (Uc-Xa) as the key biosynthetic precursor. These pigments change color under oxidative or reductive conditions. Xanthommatin (Xa) and dihydro-xanthommatin (H-Xa), as well as decarboxylated xanthommatin (Dc-Xa) and decarboxylated-dihydro-xanthommatin (Dc-H-Xa), are some of the most common and well-studied ommatins. Herein, we describe the biomimetic total synthesis of Xa/H-Xa on a gram scale by using the Mannich reaction and oxidative dimerization as the key steps. The 7-step linear synthetic sequence achieved an overall yield of 27%. Dc-Xa/Dc-H-Xa and protected Uc-Xa/Uc-H-Xa were also synthesized from the common intermediate-protected 3-hydroxykynurenine (3-OHK). The synthesized ommatins underwent thorough characterization using various spectroscopic techniques, including NMR, UV-vis, FTIR, HRMS, and LC-MS. Their optoelectronic properties were studied using spectrophotometry and electrochemical analysis. Furthermore, the antioxidant activity of the synthesized ommatins was evaluated using an oxygen radical antioxidant capacity activity assay. The results indicated that Dc-Xa exhibited the highest antioxidant activity, followed by Xa, while Uc-Xa showed the lowest activity.
眼色素是在头足类动物和节肢动物中发现的天然色素,由色氨酸生物合成,未环化的黄蝶呤(Uc-Xa)是关键的生物合成前体。这些色素在氧化或还原条件下会变色。黄蝶呤(Xa)、二氢黄蝶呤(H-Xa),以及脱羧黄蝶呤(Dc-Xa)和脱羧二氢黄蝶呤(Dc-H-Xa)是一些最常见且研究充分的眼色素。在此,我们描述了以曼尼希反应和氧化二聚反应为关键步骤,克级规模仿生全合成Xa/H-Xa的过程。这个7步线性合成序列的总产率为27%。Dc-Xa/Dc-H-Xa和受保护的Uc-Xa/Uc-H-Xa也由共同中间体——受保护的3-羟基犬尿氨酸(3-OHK)合成。使用包括核磁共振(NMR)、紫外可见光谱(UV-vis)、傅里叶变换红外光谱(FTIR)、高分辨质谱(HRMS)和液相色谱-质谱联用(LC-MS)等各种光谱技术对合成的眼色素进行了全面表征。使用分光光度法和电化学分析研究了它们的光电性质。此外,使用氧自由基抗氧化能力活性测定法评估了合成眼色素的抗氧化活性。结果表明,Dc-Xa表现出最高的抗氧化活性,其次是Xa,而Uc-Xa的活性最低。