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肽上的Z-选择性烯烃复分解反应:侧链影响、预组织及底物选择指南的研究

Z-Selective olefin metathesis on peptides: investigation of side-chain influence, preorganization, and guidelines in substrate selection.

作者信息

Mangold Shane L, O'Leary Daniel J, Grubbs Robert H

机构信息

Arnold and Mabel Beckman Laboratories for Chemical Synthesis, Division of Chemistry and Chemical Engineering, California Institute of Technology , Pasadena, California 91125, United States.

出版信息

J Am Chem Soc. 2014 Sep 3;136(35):12469-78. doi: 10.1021/ja507166g. Epub 2014 Aug 20.

Abstract

Olefin metathesis has emerged as a promising strategy for modulating the stability and activity of biologically relevant compounds; however, the ability to control olefin geometry in the product remains a challenge. Recent advances in the design of cyclometalated ruthenium catalysts has led to new strategies for achieving such control with high fidelity and Z selectivity, but the scope and limitations of these catalysts on substrates bearing multiple functionalities, including peptides, remained unexplored. Herein, we report an assessment of various factors that contribute to both productive and nonproductive Z-selective metathesis on peptides. The influence of sterics, side-chain identity, and preorganization through peptide secondary structure are explored by homodimerization, cross metathesis, and ring-closing metathesis. Our results indicate that the amino acid side chain and identity of the olefin profoundly influence the activity of cyclometalated ruthenium catalysts in Z-selective metathesis. The criteria set forth for achieving high conversion and Z selectivity are highlighted by cross metathesis and ring-closing metathesis on diverse peptide substrates. The principles outlined in this report are important not only for expanding the scope of Z-selective olefin metathesis to peptides but also for applying stereoselective olefin metathesis in general synthetic endeavors.

摘要

烯烃复分解反应已成为一种调控生物相关化合物稳定性和活性的有前景的策略;然而,控制产物中烯烃几何构型的能力仍然是一个挑战。环金属化钌催化剂设计方面的最新进展带来了以高保真度和Z选择性实现这种控制的新策略,但这些催化剂对包括肽在内的具有多种官能团的底物的适用范围和局限性仍未得到探索。在此,我们报告了对肽上有成效和无成效的Z选择性复分解反应的各种影响因素的评估。通过同二聚化、交叉复分解和关环复分解反应,研究了空间位阻、侧链特性以及肽二级结构预组织的影响。我们的结果表明,氨基酸侧链和烯烃的特性对环金属化钌催化剂在Z选择性复分解反应中的活性有深远影响。通过对多种肽底物进行交叉复分解和关环复分解反应,突出了实现高转化率和Z选择性的标准。本报告中概述的原理不仅对于将Z选择性烯烃复分解反应的范围扩展到肽很重要,而且对于在一般合成工作中应用立体选择性烯烃复分解反应也很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b3a/4156862/e58114f78bec/ja-2014-07166g_0002.jpg

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