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通过动态动力学拆分实现N-/2-/3-芳基吲哚的全方位催化和对映选择性策略。

All-round catalytic and atroposelective strategy via dynamic kinetic resolution for N-/2-/3-arylindoles.

作者信息

Kim Ahreum, Lee Chanhee, Song Jayoung, Lee Sang Kook, Kwon Yongseok

机构信息

School of Pharmacy, Sungkyunkwan University, Suwon, 16419, Republic of Korea.

College of Pharmacy, Seoul National University, Seoul, 08826, Republic of Korea.

出版信息

Nat Commun. 2023 Sep 7;14(1):5502. doi: 10.1038/s41467-023-41299-2.

Abstract

As the complexity of organic molecules utilized by mankind increases, the phenomenon of atropisomerism is more frequently encountered. While a variety of well-established methods enable the control of a stereogenic center, a catalytic method for controlling a stereogenic axis in one substrate is typically unavailable for controlling axial chirality in other substrates with a similar structure. Herein, we report o-amidobiaryl as a flexible platform for chiral phosphoric acid-catalyzed atroposelective dynamic kinetic resolution. To demonstrate our strategy, three distinct types of arylindoles were utilized and reacted intermolecularly with ketomalonate in the presence of chiral phosphoric acid. An investigation of 46 substrates having an aromatic ring in different positions yields the desired products with excellent enantioselectivities. Computational investigation into the origin of enantioselectivity highlights the importance of the NH group. Given the biological significance of indoles, antiproliferative effects have been investigated; our scaffold exhibits good efficacy in this regard.

摘要

随着人类所利用的有机分子复杂性增加,阻转异构现象愈发常见。虽然多种成熟方法能够控制手性中心,但用于控制一个底物中手性轴的催化方法通常无法用于控制其他结构相似底物中的轴手性。在此,我们报道邻氨基联芳基作为用于手性磷酸催化的阻转选择性动态动力学拆分的灵活平台。为证明我们的策略,使用了三种不同类型的芳基吲哚,并使其在手性磷酸存在下与丙二酸酮进行分子间反应。对46种在不同位置具有芳环的底物进行研究,得到了对映选择性优异的所需产物。对映选择性起源的计算研究突出了NH基团的重要性。鉴于吲哚的生物学意义,已对其抗增殖作用进行了研究;我们的支架在这方面表现出良好的效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa65/10485016/5cba670b64ca/41467_2023_41299_Fig1_HTML.jpg

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