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PI3K 抑制剂 3-甲基腺嘌呤通过自噬信号通路对水螅再生的负向影响。

The negative effect of the PI3K inhibitor 3-methyladenine on planarian regeneration via the autophagy signalling pathway.

机构信息

College of Life Science, Henan Normal University, Xinxiang, China.

College of Life Science, Xingxiang Medical University, Xinxiang, China.

出版信息

Ecotoxicology. 2021 Nov;30(9):1941-1948. doi: 10.1007/s10646-021-02439-w. Epub 2021 Aug 17.

DOI:10.1007/s10646-021-02439-w
PMID:34403000
Abstract

As an important PI3K (VPS34) inhibitor, 3-methyladenine (3-MA) can block the formation of autophagic vesicles in animals. Most toxicological studies using 3-MA have shown that 3-MA leads to serious disorders via autophagy suppression in mammals. However, no toxicological research on 3-MA has been performed on individuals undergoing regeneration. The freshwater planarian has powerful regenerative capability, and it can regenerate a new brain in 5 days and undergo complete adult individual remodelling in approximately 14 days. Moreover, it is also an excellent model organism for studies on environmental toxicology due to its high chemical sensitivity and extensive distribution. Here, Dugesia japonica planarians were treated with 3-MA, and the results showed that autophagy was inhibited and Djvps34 expression levels were down-regulated. After exposure to 10 mM 3-MA for 18 h, all the controls showed normal phenotypes, while one-half of the planarians treated with 3-MA showed morphological defects. In most cases, an ulcer appeared in the middle of the body, and a normal phenotype was restored 7 days following 3-MA exposure. During regeneration, disproportionate blastemas with tissue regression were observed. Furthermore, 3-MA treatment suppressed stem cell proliferation in intact and regenerating worms. These findings demonstrate that autophagy is indispensable for tissue homeostasis and regeneration in planarians and that 3-MA treatment is detrimental to planarian regeneration via its effect on the autophagy pathway.

摘要

作为一种重要的 PI3K(VPS34)抑制剂,3-甲基腺嘌呤(3-MA)可以阻断动物中自噬小体的形成。大多数使用 3-MA 的毒理学研究表明,3-MA 通过抑制哺乳动物中的自噬作用导致严重的紊乱。然而,对于正在进行再生的个体,尚未对 3-MA 进行毒理学研究。淡水涡虫具有强大的再生能力,它可以在 5 天内再生新的大脑,并在大约 14 天内完成完整的成年个体重塑。此外,由于其高化学敏感性和广泛的分布,它也是环境毒理学研究的优秀模式生物。在这里,用 3-MA 处理日本三角涡虫,结果表明自噬被抑制,Djvps34 表达水平下调。在 10mM 3-MA 暴露 18 小时后,所有对照均表现出正常表型,而 3-MA 处理的一半涡虫表现出形态缺陷。在大多数情况下,身体中部出现溃疡,在 3-MA 暴露后 7 天恢复正常表型。在再生过程中,观察到不成比例的芽基伴有组织退化。此外,3-MA 处理抑制了完整和再生蠕虫中的干细胞增殖。这些发现表明,自噬对于涡虫组织稳态和再生是必不可少的,并且 3-MA 通过其对自噬途径的影响对涡虫再生有害。

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