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斑马鱼胚胎早期卵裂期沟定位过程中纺锤体中部微管的特征分析

Characterization of mid-spindle microtubules during furrow positioning in early cleavage period zebrafish embryos.

作者信息

Lee Karen W, Ho Steven M, Wong Carey H, Webb Sarah E, Miller Andrew L

机构信息

Department of Biology, The Hong Kong University of Science and Technology, Clear Water Bay, Hong Kong SAR, PRC.

出版信息

Zygote. 2004 Aug;12(3):221-30. doi: 10.1017/s0967199404002886.

Abstract

We report evidence to suggest that during the first few meroblastic cell divisions in zebrafish embryos a dynamic population of central-spindle microtubules serve a crucial function in positioning the cleavage furrow at the surface of the blastoderm. Originating from the mid-zone of the mitotic spindle they develop into what we term a mid-spindle 'pre-furrowing microtubule array' that expands upward and outward from the spindle mid-zone towards the blastodisc surface. We suggest that this structure transmits positional information to the blastodisc cortex that results in the correctly positioned assembly of the cytokinetic contractile apparatus. We also propose that the pre-furrowing microtubule array then develops into a furrow-ingression microtubule array that helps direct and assemble the deepening furrow as it cuts its way through the blastodisc. Due to the location of its origin, the pre-furrowing microtubule array serves to successfully separate the daughter nuclei and thus equally divide the blastoderm. Furthermore, co-localization with elements of the cortical endoplasmic reticulum and their inositol 1,4,5-trisphosphate receptors suggests that the pre-furrowing microtubule array may also play a role in organizing localized Ca2+ transients that have been shown to be essential to the furrow positioning, propagation and deepening process during cytokinesis in zebrafish embryos.

摘要

我们报告的证据表明,在斑马鱼胚胎的最初几次不完全卵裂细胞分裂过程中,中心纺锤体微管的动态群体在将卵裂沟定位在胚盘表面发挥着关键作用。它们起源于有丝分裂纺锤体的中区,发育成我们所称的纺锤体中部“预沟微管阵列”,该阵列从纺锤体中区向上和向外扩展至胚盘表面。我们认为,这种结构将位置信息传递给胚盘皮层,从而导致细胞分裂收缩装置正确定位组装。我们还提出,预沟微管阵列随后发育成沟内陷微管阵列,在沟切入胚盘时帮助引导和组装加深的沟。由于其起源位置,预沟微管阵列成功地分离了子核,从而使胚盘均匀分裂。此外,与皮质内质网及其肌醇1,4,5-三磷酸受体成分的共定位表明,预沟微管阵列可能还在组织局部Ca2+瞬变中发挥作用,已证明这种瞬变对斑马鱼胚胎细胞分裂过程中沟的定位、传播和加深过程至关重要。

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