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揭开雷帕霉素次要构象体的真实身份。

Unmasking the True Identity of Rapamycin's Minor Conformer.

机构信息

Department of Chemistry and Biochemistry, University of North Carolina Wilmington, Wilmington, North Carolina 28409, United States.

BioPharmics LLC, Santa Rosa, California 95404, United States.

出版信息

J Nat Prod. 2023 Jul 28;86(7):1862-1869. doi: 10.1021/acs.jnatprod.3c00421. Epub 2023 Jul 11.

Abstract

Rapamycin, a well-known macrocyclic natural product with myriad biological activities, has been the subject of intense study since its first isolation and characterization over five decades ago. Rapamycin has been found to adopt a single conformation in the solid state (both when protein bound and uncomplexed) and exists as a mixture of two conformations in solution. Early work established that the major conformer in solution is the trans amide isomer but left the minor conformer mostly uncharacterized. Since that time, it has been widely accepted that the minor conformer of rapamycin is the cis amide, based solely on analogy to FK-506, another potent immunosuppressive compound with some shared key structural elements. To address this long-standing and unresolved question, the solution structure of the minor conformer of rapamycin was investigated using a combination of NMR techniques and computational methods and determined to be a trans amide species with rotation about the ester linkage.

摘要

雷帕霉素是一种具有多种生物活性的知名大环天然产物,自半个多世纪前首次分离和表征以来,一直是研究的热点。雷帕霉素在固态(与蛋白结合和未络合时)中采用单一构象,在溶液中则存在两种构象的混合物。早期的工作确定了溶液中的主要构象是反式酰胺异构体,但对次要构象的特征描述较少。从那时起,人们普遍认为雷帕霉素的次要构象是顺式酰胺,这主要是基于与 FK-506 的类比,FK-506 是另一种具有一些共享关键结构元素的强效免疫抑制剂化合物。为了解决这个长期存在且未解决的问题,使用 NMR 技术和计算方法组合研究了雷帕霉素的次要构象的溶液结构,并确定其为酯键旋转的反式酰胺物种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2578/10391620/cadf3a39bbb8/np3c00421_0001.jpg

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