Department of Chemistry and Chemical Technologies, University of Calabria, Cosenza, Italy.
Department of Veterinary Medical Sciences, University of Bologna, Ozzano Emilia, Italy.
Ann N Y Acad Sci. 2021 Feb;1485(1):43-55. doi: 10.1111/nyas.14474. Epub 2020 Sep 22.
The mitochondrial permeability transition pore (mPTP), a high-conductance channel triggered by a sudden Ca concentration increase, is composed of the F F -ATPase. Since mPTP opening leads to mitochondrial dysfunction, which is a feature of many diseases, a great pharmacological challenge is to find mPTP modulators. In our study, the effects of two 1,5-disubstituted 1,2,3-triazole derivatives, five-membered heterocycles with three nitrogen atoms in the ring and capable of forming secondary interactions with proteins, were investigated. Compounds 3a and 3b were selected among a wide range of structurally related compounds because of their chemical properties and effectiveness in preliminary studies. In swine heart mitochondria, both compounds inhibit Ca -activated F F -ATPase without affecting F-ATPase activity sustained by the natural cofactor Mg . The inhibition is mutually exclusive, probably because of their shared enzyme site, and uncompetitive with respect to the ATP substrate, since they only bind to the enzyme-ATP complex. Both compounds show the same inhibition constant (K' ), but compound 3a has a doubled inactivation rate constant compared with compound 3b. Moreover, both compounds desensitize mPTP opening without altering mitochondrial respiration. The results strengthen the link between Ca -activated F F -ATPase and mPTP and suggest that these inhibitors can be pharmacologically exploited to counteract mPTP-related diseases.
线粒体通透性转换孔(mPTP)是一种由钙离子浓度突然增加触发的高电导通道,由 F F -ATP 酶组成。由于 mPTP 的开放导致线粒体功能障碍,这是许多疾病的特征,因此一个巨大的药理学挑战是找到 mPTP 调节剂。在我们的研究中,研究了两种 1,5-取代的 1,2,3-三唑衍生物的作用,这些衍生物是五元杂环,环中有三个氮原子,能够与蛋白质形成次级相互作用。由于它们的化学性质和在初步研究中的有效性,化合物 3a 和 3b 从广泛的结构相关化合物中被选择出来。在猪心肌线粒体中,这两种化合物都抑制 Ca 激活的 F F -ATP 酶,而不影响由天然辅因子 Mg 维持的 F-ATP 酶活性。这种抑制是相互排斥的,可能是因为它们共享酶结合位点,并且对 ATP 底物呈非竞争性,因为它们仅与酶-ATP 复合物结合。这两种化合物都显示出相同的抑制常数(K'),但化合物 3a 的失活速率常数是化合物 3b 的两倍。此外,这两种化合物都使 mPTP 开放脱敏而不改变线粒体呼吸。这些结果加强了 Ca 激活的 F F -ATP 酶和 mPTP 之间的联系,并表明这些抑制剂可以被药理学利用来对抗与 mPTP 相关的疾病。