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核孔复合体和环孔片层的组装促进受精哺乳动物卵母细胞中正常原核发育。

Assembly of nuclear pore complexes and annulate lamellae promotes normal pronuclear development in fertilized mammalian oocytes.

作者信息

Sutovsky P, Simerly C, Hewitson L, Schatten G

机构信息

Departments of Obstetrics and Gynecology, and Cell and Developmental Biology, Oregon Health Sciences University, Portland, Oregon, USA.

出版信息

J Cell Sci. 1998 Oct;111 ( Pt 19):2841-54. doi: 10.1242/jcs.111.19.2841.

Abstract

In addition to functional nuclear pore complexes engaged in nucleo-cytoplasmic transport, the cytoplasmic stacks of pore complexes, called annulate lamellae, exist in numerous cell types. Although both annulate lamellae and nuclear pore complexes are present in fertilized mammalian oocytes, their relative roles in the process of fertilization and preimplantation development are not known. Using epifluorescence and electron microscopy, we explored their fate during bovine fertilization. The assembly of annulate lamellae in bovine oocytes was triggered by sperm-oocyte binding and continued concomitantly with the incorporation of the nuclear pores in the nuclear envelopes of the developing male and female pronuclei. This process was also induced by the parthenogenetic activation of metaphase-II-arrested oocytes. Depletion of Ca2+, previously implicated in oocyte activation and in the insertion of pore complexes into the nuclear envelope, prevented the formation of nuclear pore complexes, but not the assembly of annulate lamellae in oocyte cytoplasm. Injection of the nuclear pore antagonist, wheat germ agglutinin, into the cytoplasm of mature oocytes that were subsequently fertilized caused the arrest of pronuclear development, indicating the requirement of nuclear pore complexes for normal pronuclear development. Treatment of the fertilized oocytes with the microtubule inhibitor, nocodazole, prevented gathering of annulate lamellae around the developing pronuclei, insertion of nuclear pores into their nuclear envelopes, and further pronuclear development. The formation of the male pronuclei was reconstituted in Xenopus egg extracts and reflected the behavior of nuclear pores during natural fertilization. These data suggest that nuclear pore complexes are required for normal pronuclear development from its beginning up until pronuclear apposition. Annulate lamellae may be involved in the turnover of nuclear pore complexes during fertilization, which is in turn facilitated by the reorganization of oocyte microtubules and influx of Ca2+ into oocyte cytoplasm.

摘要

除了参与核质运输的功能性核孔复合体之外,被称为环孔片层的孔复合体胞质堆叠存在于多种细胞类型中。虽然环孔片层和核孔复合体都存在于受精的哺乳动物卵母细胞中,但它们在受精和植入前发育过程中的相对作用尚不清楚。我们利用落射荧光显微镜和电子显微镜,探究了它们在牛受精过程中的命运。牛卵母细胞中环孔片层的组装由精卵结合触发,并与发育中的雄原核和雌原核核膜中核孔的并入同时进行。中期II期阻滞的卵母细胞孤雌激活也能诱导这一过程。先前认为与卵母细胞激活以及孔复合体插入核膜有关的Ca2+耗竭,阻止了核孔复合体的形成,但并未阻止卵母细胞细胞质中环孔片层的组装。将核孔拮抗剂麦胚凝集素注入随后受精的成熟卵母细胞细胞质中,导致原核发育停滞,这表明正常的原核发育需要核孔复合体。用微管抑制剂诺考达唑处理受精后的卵母细胞,可阻止环孔片层在发育中的原核周围聚集、核孔插入其核膜以及进一步的原核发育。在非洲爪蟾卵提取物中重建了雄原核的形成,并反映了自然受精过程中核孔的行为。这些数据表明,从原核形成开始到原核并置,正常的原核发育都需要核孔复合体。环孔片层可能参与受精过程中核孔复合体的周转,而这又反过来受到卵母细胞微管重组和Ca2+流入卵母细胞细胞质的促进。

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