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A new role for the dynamin GTPase in the regulation of fusion pore expansion

机译:dynamin GTPase在调节融合孔扩展中的新作用

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Dynamin is a master regulator of membrane fission in endocytosis. However, a function for dynamin immediately upon fusion has also been suspected from a variety of experiments that measured release of granule contents. The role of dynamin guanosine triphosphate hydrolase (GTPase) activity in controlling fusion pore expansion and postfusion granule membrane topology was investigated using polarization optics and total internal reflection fluorescence microscopy (pTIRFM) and amperometry. A dynamin-1 (Dyn1) mutant with increased GTPase activity resulted in transient deformations consistent with rapid fusion pore widening after exocytosis; a Dyn1 mutant with decreased activity slowed fusion pore widening by stabilizing postfusion granule membrane deformations. The experiments indicate that, in addition to its role in endocytosis, GTPase activity of dynamin regulates the rapidity of fusion pore expansion from tens of milliseconds to seconds after fusion. These findings expand the membrane-sculpting repertoire of dynamin to include the regulation of immediate postfusion events in exocytosis that control the rate of release of soluble granule contents.
机译:动力蛋白是内吞作用中膜裂变的主要调节剂。然而,也已经从测量颗粒含量释放的各种实验中怀疑了融合后立即产生的动力蛋白的功能。使用偏振光学,全内反射荧光显微镜(pTIRFM)和安培法研究了动力性鸟苷三磷酸鸟苷水解酶(GTPase)活性在控制融合孔扩展和融合后颗粒膜拓扑中的作用。具有增加的GTPase活性的dynamin-1(Dyn1)突变体导致瞬时变形,与胞吐作用后融合孔快速扩大相一致;具有降低活性的Dyn1突变体通过稳定融合后颗粒膜变形来减慢融合孔的扩展。实验表明,除其在胞吞作用中的作用外,发电机组的GTPase活性还可以调节融合后从几十毫秒到几秒的扩孔速度。这些发现扩大了动态雕塑的膜雕刻库,以包括胞吐作用中立即发生的融合后事件的调节,从而控制可溶性颗粒内容物的释放速率。

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