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使用硫代杯[4]芳烃C - 1193对线粒体的功能活性进行定向影响,并使用Petri网对该过程进行模拟。

Use of thiacalix[4]arene C-1193 for a directed influence on the functional activity of mitochondria and simulation of this process using a Petri nets.

作者信息

Danylovych Hanna, Danylovych Yurii, Chunikhin Alexander, Cherenok Sergiy, Kalchenko Vitaly, Kosterin Sergiy

机构信息

Palladin Institute of Biochemistry, National Academy of Science of Ukraine, Kyiv, Ukraine.

Institute of Organic Chemistry, National Academy of Science of Ukraine, Kyiv, Ukraine.

出版信息

BioTechnologia (Pozn). 2024 Mar 29;105(1):69-81. doi: 10.5114/bta.2024.135643. eCollection 2024.

Abstract

In molecular biological studies, considerable attention is paid to macrocyclic nanoscale compounds known as calix[4]arenes. An imperative concern in biochemical membranology and molecular biotechnology is the exploration of effectors capable of modifying the intensity of redox reactions within the inner mitochondrial membrane and influencing the activity of its Ca transport systems. The simulation model development is relevant to formalize and generalize the experimental data and assess the conformity of experimental results with theoretical predictions. Experiments were carried out on a suspension of isolated rat myometrial mitochondria. The synthesized thiacalix[4]arene C-1193, containing four sulfur atoms, was employed. Demonstrations of time-dependent and concentration-dependent (0.01-10 μM) inhibition of Ca accumulation and reactive oxygen species (ROS) formation by mitochondria in the presence of C-1193 were observed. While C-1193 inhibited the oxidation of NADH and FADH, it did not induce mitochondrial swelling. The thiacalix[4]arene also inhibited the synthesis of nitric oxide, with a Ki of 5.5 ± 1.7 nM, positioning it as a high-affinity blocker of endogenous NO generation in mitochondria. These results are the basis for the possible application of the synthesized thiacalix[4]arene as a tool in researching biochemical processes in mitochondria. A simulation model employing functional hybrid Petri nets was developed, reproducing the functional activity of mitochondria, including simultaneous NADH oxidation, ROS formation, NO synthesis, and Ca accumulation. The derived equations formalize and describe the time dependencies of the listed processes in the medium under the influence of thiacalix[4]arene C-1193.

摘要

在分子生物学研究中,被称为杯[4]芳烃的大环纳米级化合物受到了广泛关注。生物化学膜学和分子生物技术中一个至关重要的问题是探索能够改变线粒体内膜氧化还原反应强度并影响其钙转运系统活性的效应物。开发模拟模型对于将实验数据形式化和概括化以及评估实验结果与理论预测的一致性具有重要意义。实验是在分离的大鼠子宫肌层线粒体悬浮液上进行的。使用了合成的含有四个硫原子的硫代杯[4]芳烃C-1193。观察到在C-1193存在下,线粒体对钙积累和活性氧(ROS)形成的时间依赖性和浓度依赖性(0.01 - 10 μM)抑制作用。虽然C-1193抑制了NADH和FADH的氧化,但它并未诱导线粒体肿胀。硫代杯[4]芳烃还抑制了一氧化氮的合成,其抑制常数Ki为5.5 ± 1.7 nM,这使其成为线粒体中内源性NO生成的高亲和力阻断剂。这些结果为合成的硫代杯[4]芳烃作为研究线粒体生化过程的工具的可能应用奠定了基础。开发了一个使用功能混合Petri网的模拟模型,该模型再现了线粒体的功能活性,包括同时进行的NADH氧化、ROS形成、NO合成和钙积累。推导的方程形式化并描述了在硫代杯[4]芳烃C-1193影响下介质中所列过程的时间依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/39c7/11020151/ff23f6b1bea3/BTA-105-1-52458-g001.jpg

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