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肌动蛋白介导的内吞作用在 E-YSL 中有助于驱动斑马鱼的胚环运动。

Actin-mediated endocytosis in the E-YSL helps drive epiboly in zebrafish.

机构信息

The Division of Life Science and Key State Laboratory for Molecular Neuroscience, HKUST, Clear Water Bay, Hong Kong, China.

出版信息

Zygote. 2023 Dec;31(6):517-526. doi: 10.1017/S0967199423000357. Epub 2023 Aug 3.

Abstract

In zebrafish, a punctate band of F-actin is reported to develop in the external yolk syncytial layer (E-YSL) during the latter part of epiboly in zebrafish embryos. Here, electron microscopy (EM) and fluorescence confocal microscopy were conducted to investigate dynamic changes in the E-YSL membrane during epiboly. Using scanning EM, we report that the surface of the E-YSL is highly convoluted, consisting of a complex interwoven network of branching membrane surface microvilli-like protrusions. The region of membrane surface protrusions was relatively wide at 30% epiboly but narrowed as epiboly progressed. This narrowing was coincident with the formation of the punctate actin band. We also demonstrated using immunogold transmission EM that actin clusters were localized at the membrane surface mainly within the protrusions as well as in deeper locations of the E-YSL. Furthermore, during the latter part of epiboly, the punctate actin band was coincident with a region of highly dynamic endocytosis. Treatment with cytochalasin B led to the disruption of the punctate actin band and the membrane surface protrusions, as well as the attenuation of endocytosis. Together, our data suggest that, in the E-YSL, the region encompassing the membrane surface protrusions and its associated punctate actin band are likely to be an integral part of the localized endocytosis, which is important for the progression of epiboly in zebrafish embryos.

摘要

在斑马鱼中,据报道,在斑马鱼胚胎的外包过程的后期,外部卵黄合胞层(E-YSL)中会形成点状的 F-肌动蛋白带。在这里,通过电子显微镜(EM)和荧光共聚焦显微镜来研究外包过程中 E-YSL 膜的动态变化。使用扫描 EM,我们报告说 E-YSL 的表面高度卷曲,由分支的膜表面微绒毛状突起的复杂交织网络组成。在 30%的外包过程中,膜表面突起的区域相对较宽,但随着外包的进行而变窄。这种变窄与点状肌动蛋白带的形成一致。我们还通过免疫金传输 EM 证明,肌动蛋白簇主要位于突起内以及 E-YSL 的更深层位置的膜表面上。此外,在外包过程的后期,点状肌动蛋白带与高度动态的胞吞作用区域一致。用细胞松弛素 B 处理会导致点状肌动蛋白带和膜表面突起的破坏,以及胞吞作用的减弱。总的来说,我们的数据表明,在 E-YSL 中,包含膜表面突起及其相关点状肌动蛋白带的区域可能是局部胞吞作用的一个组成部分,这对于斑马鱼胚胎的外包过程很重要。

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