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氨基涡轮手性及其不对称控制。

Amino Turbo Chirality and Its Asymmetric Control.

作者信息

Xu Ting, Wang Yu, Jin Shengzhou, Rahman Anis U, Yan Xianghua, Yuan Qingkai, Liu Hao, Wang Jia-Yin, Yan Wenxin, Jiao Yinchun, Liang Ruibin, Li Guigen

机构信息

School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210093, China.

Department of Chemistry and Biochemistry, Texas Tech University, Lubbock, TX 79409-1061, USA.

出版信息

Research (Wash D C). 2024 Sep 19;7:0474. doi: 10.34133/research.0474. eCollection 2024.

Abstract

A series of new targets containing 3 chiral elements of central, orientational, and turbo chirality have been designed and synthesized asymmetrically. The absolute configurations and conformations of these types of chirality were concurrently controlled by using chiral sulfonimine auxiliary and unambiguously determined by x-ray diffraction analysis. These targets include alpha unnatural amino acid derivatives, which may play an important role for drug design, discovery, and development. Three propellers of turbo framework are covalently connected to a chiral C(sp) center via C(sp)-C(sp) bonding along with a C-N axis, while one of them is orientated away from the same carbon chiral center. The turbo or propeller chirality is characterized by 2 types of molecular arrangements of propellers, clockwise () and counterclockwise (), respectively. The turbo stereogenicity was found to depend on the center chirality of sulfonimine auxiliary instead of the chiral C(sp) center, i.e., ()- and ()-sulfinyl centers led to the asymmetric formation of and -configurations, respectively. Computational studies were conducted on relative energies for rotational barriers of a turbo target along the C-N anchor and the transition pathway between 2 enantiomers meeting our experimental observations. This work is anticipated to have a broad impact on chemical, biomedical, and materials sciences in the future.

摘要

一系列包含中心手性、取向手性和涡轮手性这3种手性元素的新目标分子已被设计并通过不对称合成法制备出来。通过使用手性亚磺酰亚胺助剂同时控制这些手性类型的绝对构型和构象,并通过X射线衍射分析明确确定其结构。这些目标分子包括α-非天然氨基酸衍生物,它们可能在药物设计、发现和开发中发挥重要作用。涡轮骨架的三个螺旋桨通过C(sp)-C(sp)键沿着C-N轴共价连接到一个手性C(sp)中心,其中一个螺旋桨的方向远离同一个碳手性中心。涡轮或螺旋桨手性分别由螺旋桨的两种分子排列类型表征,即顺时针( )和逆时针( )。发现涡轮立体异构性取决于亚磺酰亚胺助剂的中心手性而非手性C(sp)中心,即()-和()-亚磺酰基中心分别导致 和 -构型的不对称形成。针对涡轮目标分子沿C-N锚定键的旋转势垒的相对能量以及两种对映体之间的过渡途径进行了计算研究,计算结果与我们的实验观察结果相符。预计这项工作未来将对化学、生物医学和材料科学产生广泛影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0edc/11411161/74244b48b95f/research.0474.fig.001.jpg

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