Devel Laurent, Malgorn Carole, Tohon Regis-William, Launay Marie, Patiniotis Konstantinos, Sejalon-Cipolla Mylene, Beau Fabrice, Thai Robert, Bruyat Pierrick, Bonino Annabelle, Bregant Sarah, Subra Gilles, Cantel Sonia, Georgiadis Dimitris
CEA, INRAE, Médicaments et Technologies pour la Santé (MTS), SIMoS, Université Paris-Saclay, 91191, Gif-sur-Yvette, France.
Department of Chemistry, Laboratory of Organic Chemistry, University of Athens, Panepistimiopolis, Zografou, 15771, Athens, Greece.
Chembiochem. 2024 Dec 2;25(23):e202400441. doi: 10.1002/cbic.202400441. Epub 2024 Nov 6.
Original covalent probes with an N-acyl-N-alkyl sulfonamide cleavable linker were developed to target a broad set of human Matrix Metalloproteases (MMPs). The electrophilicity of this cleavable linker was modulated to improve the selectivity of the probes as well as reduce their unspecific reactivity in complex biological matrices. We first demonstrated that targeting the S subsite of MMPs enables access to broad-spectrum affinity-based probes that exclusively react with the active version of these proteases. The probes were further assessed in proteomes of varying complexity, where human MMP-13 was artificially introduced at known concentration and the resulting labeled MMP was imaged by in-gel fluorescence imaging. We showed that the less reactive probe was still able to covalently modify MMP-13 while exhibiting reduced off-target unspecific reactivity. This study clearly demonstrated the importance of finely controlling the reactivity of the NASA warhead to improve the selectivity of covalent probes in complex biological systems.
开发了具有N-酰基-N-烷基磺酰胺可裂解连接子的原始共价探针,以靶向多种人类基质金属蛋白酶(MMP)。调节这种可裂解连接子的亲电性,以提高探针的选择性,并降低其在复杂生物基质中的非特异性反应性。我们首先证明,靶向MMP的S亚位点能够获得基于亲和力的广谱探针,这些探针仅与这些蛋白酶的活性形式发生反应。在不同复杂程度的蛋白质组中对探针进行了进一步评估,其中将人MMP-13以已知浓度人工引入,然后通过凝胶内荧光成像对产生的标记MMP进行成像。我们表明,反应性较低的探针仍能够共价修饰MMP-13,同时表现出降低的脱靶非特异性反应性。这项研究清楚地证明了精细控制NASA弹头反应性对于提高共价探针在复杂生物系统中的选择性的重要性。