Spacho Ntaniela, Casertano Marcello, Imperatore Concetta, Papadopoulos Christos, Menna Marialuisa, Eleftheriadis Nikolaos
Department of Chemistry, University of Crete, 70013, Voutes, Heraklion, Greece.
Department of Pharmacy, University of Naples "Federico II", Via D. Montesano 49, 80131, Naples, Italy.
Chemistry. 2024 Sep 19;30(53):e202402279. doi: 10.1002/chem.202402279. Epub 2024 Sep 9.
Human 15-lipoxygenase-1 (15-LOX-1) is a key enzyme that possesses an important role in (neuro)inflammatory diseases. The pocket of the enzyme plays the role of a chiral catalyst, and therefore chirality could be an important component for the design of effective enzyme inhibitors. To advance our knowledge on this concept, we developed a library of the identified chiral 15-LOX-1 inhibitors and applied cheminformatic tools. Our analysis highlighted specific structural elements, which we integrated them in small molecules, and employed them as "smart" tools to effectively navigate the chemical space of previously unexplored regions. To this purpose, we utilized the marine derived natural product phosphoeleganin (PE) among with a small library of synthetic fragment derivatives, including a certain degree of stereochemical diversity. Enzyme inhibition/kinetic and molecular modelling studies has been performed in order to characterize structurally novel PE-based inhibitors, which proved to present a different type of inhibition with low micromolar potency, according to their structural features. We demonstrate that different warheads work as anchor, and either guide specific stereochemistry, or causing a time-depended inhibition. Finally, we prove that the positioning of the chiral substituents or/and the favorable stereochemistry can be crucial, as it can lead from active to completely inactive compounds.
人15-脂氧合酶-1(15-LOX-1)是一种关键酶,在(神经)炎症性疾病中发挥重要作用。该酶的活性口袋起着手性催化剂的作用,因此手性可能是设计有效酶抑制剂的重要组成部分。为了增进我们对这一概念的了解,我们开发了一个已鉴定的手性15-LOX-1抑制剂库,并应用了化学信息学工具。我们的分析突出了特定的结构元素,我们将其整合到小分子中,并将其用作“智能”工具,以有效地探索以前未探索区域的化学空间。为此,我们利用了海洋来源的天然产物磷海松素(PE)以及一个包含一定程度立体化学多样性的合成片段衍生物小文库。为了表征基于PE的新型结构抑制剂,我们进行了酶抑制/动力学和分子建模研究,结果表明,根据其结构特征,这些抑制剂呈现出不同类型的抑制作用,且具有低微摩尔效力。我们证明不同的弹头作为锚定基团起作用,要么引导特定的立体化学,要么导致时间依赖性抑制。最后,我们证明手性取代基的位置或/和有利的立体化学可能至关重要,因为它可以导致从活性化合物到完全无活性化合物的转变。