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Immunodetection of cytoskeletal structures and the Eg5 motor protein on deep-etch replicas of Xenopus egg cortices isolated during the cortical rotation.

作者信息

Chang P, LeGuellec K, Houliston E

机构信息

Unité de Biologie Cellulaire Marine (URA 671 CNRS, Université Paris VI), Villefranche-sur-Mer, France.

出版信息

Biol Cell. 1996;88(3):89-98.

PMID:9237365
Abstract

We have developed a new method for immunogold detection on deep-etch replicas of isolated Xenopus egg cortices in order to examine the interactions of different cortical elements in three dimensions at high resolution. We have applied this technique to vegetal cortices isolated during the second half of the first cell cycle. The vegetal cortical region at this time is the site of cellular machinery responsible for the 'cortical rotation'. The entire cortex translocates with respect to the inner cytoplasm, relocating dorsalising determinants to the future dorsal side of the egg. The aligned microtubules in the shear zone between cytoplasm and cortex, implicated in the cortical rotation, were found to be organised as interweaving loose bundles. Interleaved amongst these aligned microtubules were extensive sheets of ER lying in layers parallel to the egg surface. Cytokeratin filaments were found to associate closely with the microtubules over short stretches. Putative actin filaments were present in the shear zone and in the cortex. Eg5, an abundant kinesin-related microtubule motor protein, and candidate for a role in generating cortical rotation movement, showed an almost exclusive localisation to microtubules. Immunofluorescence studies of cortices treated with detergent to disrupt ER or cold to depolymerise microtubules confirmed that Eg5 associates primarily with microtubules. We propose revised models for the mechanism of cortical rotation based on these observations and conclude that Eg5 is unlikely to move ER relative to microtubules during the cortical rotation.

摘要

相似文献

1
Immunodetection of cytoskeletal structures and the Eg5 motor protein on deep-etch replicas of Xenopus egg cortices isolated during the cortical rotation.
Biol Cell. 1996;88(3):89-98.
2
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Analysis of microtubule movement on isolated Xenopus egg cortices provides evidence that the cortical rotation involves dynein as well as Kinesin Related Proteins and is regulated by local microtubule polymerisation.对非洲爪蟾卵离体皮层上微管运动的分析提供了证据,表明皮层旋转涉及动力蛋白以及驱动蛋白相关蛋白,并受局部微管聚合作用的调节。
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Surface contraction waves (SCWs) in the Xenopus egg are required for the localization of the germ plasm and are dependent upon maternal stores of the kinesin-like protein Xklp1.非洲爪蟾卵中的表面收缩波(SCWs)对于生殖质的定位是必需的,并且依赖于驱动蛋白样蛋白Xklp1的母体储存。
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Quick-freeze, deep-etch, rotary-shadow views of the extracellular matrix and cortical cytoskeleton of Xenopus laevis eggs.非洲爪蟾卵的细胞外基质和皮质细胞骨架的快速冷冻、深度蚀刻、旋转阴影视图。
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引用本文的文献

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Genesis. 2012 Mar;50(3):219-34. doi: 10.1002/dvg.20825. Epub 2011 Dec 27.
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Consistent left-right asymmetry cannot be established by late organizers in Xenopus unless the late organizer is a conjoined twin.在非洲爪蟾中,晚期组织者不能建立一致的左右不对称性,除非晚期组织者是联体双胞胎。
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Expression of the mitotic motor protein Eg5 in postmitotic neurons: implications for neuronal development.
有丝分裂运动蛋白Eg5在有丝分裂后神经元中的表达:对神经元发育的影响。
J Neurosci. 1998 Oct 1;18(19):7822-35. doi: 10.1523/JNEUROSCI.18-19-07822.1998.