Chandler D E, Heuser J
J Cell Biol. 1980 Mar;84(3):618-32. doi: 10.1083/jcb.84.3.618.
Eggs of the sea urchin Strongylocentrotus purpuratus were quick-frozen, freeze fractured, and deep-etched to reveal the detailed structure of the vitelline layer (VL), an extracellular coat. The VL consisted of a network of fibers lying in sheet raised 20 nm off the plasma membrane and connected to it by a series of short processes. Sperm attached to the fibers of this sheet and upon fertilization the VL rose off the egg surface to form the fertilization envelope (FE). By 1 min postinsemination (p.i.), the FE had become augmented by a new set of smaller fibrils, and the original fibers of the VL appeared to be undergoing degradation. The FE exhibited casts of microvilli the VL had once covered. These were rounded at 1 min p.i., but by 2 min they had become angular and coated with an orderly array of repeating macromolecular units. In areas between casts, the coating process was slower; incomplete rows of units were seen at 5 min p.i. and complete rows at 10 min. Deep-etching of FE isolated from eggs by homogenization and differential centrifugation showed that both top and bottom surfaces were coated. The coat pattern was made up of 17.5-nm wide rows of parallelogram-like units that repeated every 12.2 nm along the row axis. Units in adjacent rows were in register to produce a secondary axis 76 degrees from the row axis. The results of this and previous studies suggest that the coating process plays a major role in "hardening" the FE to produce a tough barrier that protects the early embryo from chemical and mechanical injury.
将海胆紫球海胆的卵快速冷冻、冷冻断裂并深度蚀刻,以揭示卵黄膜(VL)这一细胞外被膜的详细结构。卵黄膜由位于距质膜20纳米处的片状纤维网络组成,并通过一系列短突起与之相连。精子附着在这片状纤维上,受精时卵黄膜从卵表面升起形成受精膜(FE)。授精后1分钟(p.i.),受精膜因一组新的较小纤维而增大,卵黄膜的原始纤维似乎正在降解。受精膜呈现出卵黄膜曾经覆盖的微绒毛的铸型。这些在授精后1分钟时是圆形的,但到2分钟时它们变得有角,并覆盖着有序排列的重复大分子单元。在铸型之间的区域,覆盖过程较慢;授精后5分钟时可见不完全的单元行,10分钟时可见完整的单元行。通过匀浆和差速离心从卵中分离出的受精膜的深度蚀刻显示,其顶面和底面都有覆盖物。覆盖物图案由宽17.5纳米的平行四边形样单元行组成,这些单元沿行轴每12.2纳米重复一次。相邻行中的单元对齐,形成与行轴成76度的次轴。这项研究和先前研究的结果表明,覆盖过程在使受精膜“硬化”以形成坚韧屏障从而保护早期胚胎免受化学和机械损伤方面起着主要作用。