Key Laboratory of Animal Models and Human Disease Mechanisms of Chinese Academy of Sciences/Engineering Laboratory of Peptides of Chinese Academy of Sciences, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, Yunnan, 650201, China.
Kunming College of Life Science, University of Chinese Academy of Sciences, Kunming, Yunnan, 650204, China.
Commun Biol. 2022 Jul 22;5(1):730. doi: 10.1038/s42003-022-03686-1.
Maintaining water balance is a real challenge for amphibians in terrestrial environments. Our previous studies with toad Bombina maxima discovered a pore-forming protein and trefoil factor complex βγ-CAT, which is assembled under tight regulation depending on environmental cues. Here we report an unexpected role for βγ-CAT in toad water maintaining. Deletion of toad skin secretions, in which βγ-CAT is a major component, increased animal mortality under hypertonic stress. βγ-CAT was constitutively expressed in toad osmoregulatory organs, which was inducible under the variation of osmotic conditions. The protein induced and participated in macropinocytosis in vivo and in vitro. During extracellular hyperosmosis, βγ-CAT stimulated macropinocytosis to facilitate water import and enhanced exosomes release, which simultaneously regulated aquaporins distribution. Collectively, these findings uncovered that besides membrane integrated aquaporin, a secretory pore-forming protein can facilitate toad water maintaining via macropinocytosis induction and exocytosis modulation, especially in responses to osmotic stress.
维持水平衡是陆生环境中两栖动物面临的真正挑战。我们之前对蟾蜍 Bombina maxima 的研究发现了一种形成孔的蛋白和三叶因子复合物 βγ-CAT,它根据环境线索在严格的调节下组装。在这里,我们报告了 βγ-CAT 在蟾蜍保水中的一个意外作用。缺失蟾蜍皮肤分泌物,其中 βγ-CAT 是主要成分,会增加动物在高渗应激下的死亡率。βγ-CAT 在蟾蜍渗透压调节器官中持续表达,在渗透压变化时可诱导表达。该蛋白在体内和体外诱导并参与巨胞饮作用。在细胞外高渗条件下,βγ-CAT 刺激巨胞饮作用,促进水的摄入,并增强外泌体的释放,同时调节水通道蛋白的分布。总的来说,这些发现揭示了除了膜整合水通道蛋白外,一种分泌的形成孔蛋白可以通过诱导巨胞饮作用和调节胞吐作用来促进蟾蜍保水,特别是在应对渗透压应激时。