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细胞穿透性动态共价级联交换剂对细胞运动的抑制作用:整合素参与硫醇介导的摄取过程。

Inhibition of Cell Motility by Cell-Penetrating Dynamic Covalent Cascade Exchangers: Integrins Participate in Thiol-Mediated Uptake.

作者信息

Coelho Filipe, Saidjalolov Saidbakhrom, Moreau Dimitri, Thorn-Seshold Oliver, Matile Stefan

机构信息

Department of Organic Chemistry, University of Geneva, 1211 Geneva, Switzerland.

Department of Biochemistry, University of Geneva, 1211 Geneva, Switzerland.

出版信息

JACS Au. 2023 Apr 12;3(4):1010-1016. doi: 10.1021/jacsau.3c00113. eCollection 2023 Apr 24.

Abstract

Integrins are cell surface proteins responsible for cell motility. Inspired by the rich disulfide exchange chemistry of integrins, we show here the inhibition of cell migration by cascade exchangers (CAXs), which also enable and inhibit cell penetration by thiol-mediated uptake. Fast-moving CAXs such as reversible Michael acceptor dimers, dithiabismepanes, and bioinspired epidithiodiketopiperazines are best, much better than Ellman's reagent. The implication that integrins participate in thiol-mediated uptake is confirmed by reduced uptake in integrin-knockdown cells. Although thiol-mediated uptake is increasingly emerging as a unifying pathway to bring matter into cells, its molecular basis is essentially unknown. These results identify the integrin superfamily as experimentally validated general cellular partners in the dynamic covalent exchange cascades that are likely to account for thiol-mediated uptake. The patterns identified testify to the complexity of the dynamic covalent networks involved. This work also provides chemistry tools to explore cell motility and expands the drug discovery potential of CAXs from antiviral toward antithrombotic and antitumor perspectives.

摘要

整合素是负责细胞运动的细胞表面蛋白。受整合素丰富的二硫键交换化学的启发,我们在此展示了级联交换剂(CAXs)对细胞迁移的抑制作用,CAXs还能通过硫醇介导的摄取促进和抑制细胞穿透。快速移动的CAXs,如可逆迈克尔受体二聚体、二硫代双甲撑胺和受生物启发的环二硫代二酮哌嗪效果最佳,比埃尔曼试剂要好得多。整合素参与硫醇介导的摄取这一观点在整合素敲低细胞摄取减少中得到证实。尽管硫醇介导的摄取越来越多地成为将物质带入细胞的统一途径,但其分子基础基本上仍不清楚。这些结果确定整合素超家族是动态共价交换级联反应中经过实验验证的一般细胞伙伴,这些级联反应可能是硫醇介导摄取的原因。所确定的模式证明了所涉及的动态共价网络的复杂性。这项工作还提供了探索细胞运动的化学工具,并从抗病毒、抗血栓和抗肿瘤的角度扩展了CAXs的药物发现潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de41/10131202/ea17bbb9a18a/au3c00113_0001.jpg

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