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通过吡啶基丙氨酸的α-烷基化实现化学选择性肽共轭:溶液和固相应用

Introducing Chemoselective Peptide Conjugation via -Alkylation of Pyridyl-alanine: Solution and Solid Phase Applications.

作者信息

Dutta Soumit, Chowdhury Arnab, Bandyopadhyay Anupam

机构信息

Biomimetic Peptide Engineering Lab, Department of Chemistry, Indian Institute of Technology Ropar, Birla Farms, Rupnagar, Punjab 140001, India.

出版信息

Org Lett. 2024 Sep 27;26(38):8206-8210. doi: 10.1021/acs.orglett.4c03168. Epub 2024 Sep 13.

Abstract

A novel chemoselective peptide conjugation via late-stage -alkylation of pyridyl-alanine (PAL) in the solution and solid phase, namely, NAP, is demonstrated. The method constructs functionally diverse and highly stable -alkylated conjugates with various peptides. Notably, conjugations in the solid phase offered a more economical process. The method can provide the opportunity for dual labeling along with a cysteine handle in a peptide chain. Finally, we showcased that the antiproliferative activities of the p53 peptide (MDM2 inhibitor) could be 2-fold enhanced via NAP conjugation with the RGD peptide (selective integrin binder).

摘要

本文展示了一种通过溶液和固相中吡啶基丙氨酸(PAL)的后期烷基化实现的新型化学选择性肽共轭方法,即NAP。该方法构建了具有功能多样性且高度稳定的与各种肽的烷基化共轭物。值得注意的是,固相结合提供了更经济的过程。该方法可以为肽链中带有半胱氨酸手柄的双标记提供机会。最后,我们展示了通过将p53肽(MDM2抑制剂)与RGD肽(选择性整合素结合剂)进行NAP共轭,其抗增殖活性可提高2倍。

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