1)云南师范大学生命科学学院,昆明 650500;2)云南省生物资源持续开发利用国际联合研发中心,昆明 650500
国家自然科学基金(82060355,81660519)资助项目。
1)School of Life Sciences, Yunnan Normal University, Kunming 650500, China;2)Yunnan International Joint R&D Center for Sustainable Development and Utilization of Biological Resources, Kunming 650500, China
This work was supported by grants from The National Natural Science Foundation of China (82060355, 81660519).
目的 Ca2+作为胞内信号转导的第二信使,在细胞迁移中发挥重要作用。研究表明,胞外Ca2+内流能够促进细胞趋电性迁移,但胞内Ca2+流对细胞趋电性迁移的影响尚不清楚。因此,本研究以盘基网柄菌为模型,探究胞内外Ca2+流对细胞趋电性迁移的影响及其作用机制。方法 应用模拟内源性电场的外源微直流电场和实时录像系统研究盘基网柄菌在电场中的趋电性迁移;利用激光共聚焦显微镜、钙离子通道抑制剂、胞外Ca2+螯合剂EGTA以及无Ca2+的发育缓冲液(development buffer,DB)缓冲液、咖啡因等探究细胞内外Ca2+流对细胞趋电性迁移的影响;应用基因缺失突变株探究内质网Ca2+释放调控细胞趋电性迁移的分子机制。结果 盘基网柄菌以电压依赖的方式向电场负极进行趋电性迁移;电场刺激会增加细胞内Ca2+浓度,抑制胞外Ca2+内流与胞内Ca2+释放均会抑制细胞趋电性迁移;咖啡因作用显著增加细胞内Ca2+的浓度,抑制内质网Ca2+释放会抑制细胞的趋电性迁移;Gα2、Gβ、Gγ、Erk2缺失均导致细胞趋电性迁移能力显著降低,咖啡因作用完全或部分恢复了Gα2-、Gβ -、Erk2-突变株的趋电性迁移,但没有恢复Gγ-突变株的趋电性迁移。结论 内质网Ca2+释放介导盘基网柄菌细胞的趋电性迁移,且参与G蛋白和细胞外信号调节激酶2(ERK2)对细胞趋电性迁移的调控过程。
Objective As a second messenger in intracellular signal transduction, Ca2+ plays an important role in cell migration. Previous studies have demonstrated that extracellular Ca2+ influx can promote electric field-guided cell migration, known as electrotaxis. However, the effect of intracellular Ca2+ flow on electrotaxis is unclear. Therefore, in this study, we investigate the effect of Ca2+ flux on the electrotaxis of Dictyostelium discoideum.Methods The electrotaxis of Dictyostelium discoideum was investigated by applying a direct current (DC) electric field. Cell migration was recorded using a real-time imaging system. Calcium channel inhibitors, the extracellular Ca2+ chelator EGTA, Ca2+-free DB buffer, and caffeine were applied to investigate the impact of intra- and extracellular Ca2+ flow on electrotaxis. The involvement of G proteins and ERK2 in directed cell migration mediated by endoplasmic reticulum Ca2+ release was explored using mutants.Results Dictyostelium discoideum migrated toward the cathode in the electric field in a voltage-dependent manner. The intracellular Ca2+ concentration of the cells was significantly increased in the electric field. Inhibition of both extracellular Ca2+ influx and intracellular Ca2+ release suppressed cell electrotaxis migration. Inhibition of endoplasmic reticulum Ca2+ release induced by caffeine significantly impaired the electrotaxis of Dictyostelium discoideum. Deletion of Gα2, Gβ, Gγ, and Erk2 notably reduced the electrotaxis of the cells. Enhancing Ca2+ release mediated by caffeine restored the electrotaxis of the Gα2-, Gβ -, and Erk2- mutant cells partially or completely, but did not restore electrotaxis in the Gγ- mutant cells.Conclusion Ca2+ release from the endoplasmic reticulum regulates electrotaxis migration in Dictyostelium discoideum and is involved in the regulation of cell electrotaxis by G proteins and ERK2.
王一凡,袁淑琴,高润池,赵三军.内质网Ca2+释放介导盘基网柄菌细胞的趋电性迁移[J].生物化学与生物物理进展,2025,52(5):1252-1263
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