Malfara Madeline F, Silverberg Lee J, DiMaio John, Lagalante Anthony F, Olsen Mark A, Madison Ekaterina, Povelones Megan L
Department of Biology, Villanova University, Villanova, PA, 19085, USA.
Pennsylvania State University, Schuylkill Campus, Schuylkill Haven, PA, 17972, USA.
Mol Biochem Parasitol. 2021 Sep;245:111396. doi: 10.1016/j.molbiopara.2021.111396. Epub 2021 Jul 21.
Kinetoplastid parasites are model eukaryotes with a complex cell cycle that is highly regulated both spatially and temporally. In addition, diseases caused by these parasites continue to have a significant impact on human and animal health worldwide. While there have been advancements in chemotherapy for these diseases, there is a continual need for an arsenal of compounds that have robust anti-parasite activity with minimal impact on the human host. While investigating a series of 2,3-diphenyl-2,3-dihydro-4H-1,3-thiaza-4-one heterocycles with potential activity against these parasites, we found a pyridothiazinone that inhibits growth of the monoxenous parasite Crithidia fasciculata and two life cycle stages of Trypanosoma brucei. This inhibition is more pronounced in T. brucei and is associated with an unusual pre-abscission cell cycle arrest. Exploring the mode of action for these and related compounds in kinetoplastids may provide tools with which to explore cell cycle regulation in these important organisms.
动质体寄生虫是具有复杂细胞周期的模式真核生物,其细胞周期在空间和时间上都受到高度调控。此外,这些寄生虫引起的疾病继续对全球人类和动物健康产生重大影响。虽然针对这些疾病的化疗已经取得了进展,但仍然持续需要一系列对人类宿主影响最小且具有强大抗寄生虫活性的化合物。在研究一系列对这些寄生虫具有潜在活性的2,3 - 二苯基 - 2,3 - 二氢 - 4H - 1,3 - 噻嗪 - 4 - 酮杂环化合物时,我们发现了一种吡啶并噻嗪酮,它能抑制单宿主寄生虫纤细短膜虫的生长以及布氏锥虫的两个生命周期阶段。这种抑制作用在布氏锥虫中更为明显,并且与一种不寻常的分裂前细胞周期停滞有关。探索这些及相关化合物在动质体中的作用模式可能会提供工具,用于研究这些重要生物体中的细胞周期调控。