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1
Role of spindle microtubules in the control of cell cycle timing.纺锤体微管在细胞周期定时控制中的作用。
J Cell Biol. 1979 Mar;80(3):674-91. doi: 10.1083/jcb.80.3.674.
2
The role of spindle microtubules in the timing of the cell cycle in echinoderm eggs.纺锤体微管在棘皮动物卵细胞周期定时中的作用。
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3
Control mechanisms of the cell cycle: role of the spatial arrangement of spindle components in the timing of mitotic events.细胞周期的调控机制:纺锤体组件的空间排列在有丝分裂事件时间安排中的作用。
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4
Nuclear envelope breakdown is under nuclear not cytoplasmic control in sea urchin zygotes.在海胆受精卵中,核膜破裂受细胞核而非细胞质的控制。
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5
Experimental manipulation of the amount of tubulin available for assembly into the spindle of dividing sea urchin eggs.对可用于组装分裂海胆卵纺锤体的微管蛋白数量进行实验操作。
J Cell Biol. 1976 Jul;70(1):75-85. doi: 10.1083/jcb.70.1.75.
6
Experimental separation of pronuclei in fertilized sea urchin eggs: chromosomes do not organize a spindle in the absence of centrosomes.对受精海胆卵原核进行的实验分离:在没有中心体的情况下,染色体无法形成纺锤体。
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Caffeine-induced monaster cycling in fertilized eggs of the sea urchin Strongylocentrotus purpuratus.咖啡因诱导紫海胆受精卵中的单性生殖循环。
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Nuclear envelope breakdown and mitosis in sand dollar embryos is inhibited by microinjection of calcium buffers in a calcium-reversible fashion, and by antagonists of intracellular Ca2+ channels.海胆胚胎中的核膜破裂和有丝分裂可通过以钙可逆方式显微注射钙缓冲剂以及细胞内钙离子通道拮抗剂来抑制。
Dev Biol. 1989 Jan;131(1):11-26. doi: 10.1016/s0012-1606(89)80034-x.

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Developmental Timing in Fertilized Merogones of the Sand Dollar, Clypeaster japonicus: (merogone/cleavage/sea urchin/DNA synthesis/mitosis).日本饼海胆受精卵裂球的发育时间:(裂球/卵裂/海胆/DNA合成/有丝分裂)
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Analysis of cytoskeletal and motility proteins in the sea urchin genome assembly.海胆基因组组装中细胞骨架和运动蛋白的分析。
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Mitotic Behavior of Induced Chromosomal Fragments Lacking Spindle Attachments in the Neuroblasts of the Grasshopper.蝗虫神经母细胞中缺乏纺锤体附着的诱导染色体片段的有丝分裂行为
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THE MECHANISM OF COLCHICINE INHIBITION OF MITOSIS. I. KINETICS OF INHIBITION AND THE BINDING OF H3-COLCHICINE.秋水仙碱抑制有丝分裂的机制。I. 抑制动力学及H3-秋水仙碱的结合
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Cine-micrographic studies on chromosome movements in beta-irradiated cell.关于β射线照射细胞中染色体运动的电影显微摄影研究。
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On the mitotic movements of chromosomes.论染色体的有丝分裂运动
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7
Cell motility by labile association of molecules. The nature of mitotic spindle fibers and their role in chromosome movement.通过分子的不稳定结合实现细胞运动。有丝分裂纺锤体纤维的性质及其在染色体移动中的作用。
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8
The biochemical events of mitosis. II. The in vivo and in vitro binding of colchicine in grasshopper embryos and its possible relation to inhibition of mitosis.有丝分裂的生化事件。II. 秋水仙碱在蝗虫胚胎中的体内和体外结合及其与有丝分裂抑制的可能关系。
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9
Action of colcemid in sea urchin eggs.秋水仙酰胺在海胆卵中的作用。
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10
Cine micrographic studies on mitotic spiralization cycle.关于有丝分裂螺旋化周期的电影显微摄影研究。
Hereditas. 1966;54(3):356-75. doi: 10.1111/j.1601-5223.1966.tb02027.x.

纺锤体微管在细胞周期定时控制中的作用。

Role of spindle microtubules in the control of cell cycle timing.

作者信息

Sluder G

出版信息

J Cell Biol. 1979 Mar;80(3):674-91. doi: 10.1083/jcb.80.3.674.

DOI:10.1083/jcb.80.3.674
PMID:572367
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2110356/
Abstract

Sea urchin eggs are used to investigate the involvement of spindle microtubules in the mechanisms that control the timing of cell cycle events. Eggs are treated for 4 min with Colcemid at prophase of the first mitosis. No microtubules are assembled for at least 3 h, and the eggs do not divide. These eggs show repeated cycles of nuclear envelope breakdown (NEB) and nuclear envelope reformation (NER). Mitosis (NEB to NER) is twice as long in Colcemid-treated eggs as in the untreated controls. Interphase (NER to NEB) is the same in both. Thus, each cycle is prolonged entirely in mitosis. The chromosomes of treated eggs condense and eventually split into separate chromatids which do not move apart. This "canaphase" splitting is substantially delayed relative to anaphase onset in the control eggs. Treated eggs are irradiated after NEB with 366-nm light to inactivate the Colcemid. This allows the eggs to assemble normal spindles and divide. Up to 14 min after NEB, delays in the start of microtubule assembly give equal delays in anaphase onset, cleavage, and the events of the following cell cycle. Regardless of the delay, anaphase follows irradiation by the normal prometaphase duration. The quantity of spindle microtubules also influences the timing of mitotic events. Short Colcemid treatments administered in prophase of second division cause eggs to assemble small spindles. One blastomere is irradiated after NEB to provide a control cell with a normal-sized spindle. Cells with diminished spindles always initiate anaphase later than their controls. Telophase events are correspondingly delayed. This work demonstrates that spindle microtubules are involved in the mechanisms that control the time when the cell will initiate anaphase, finish mitosis, and start the next cell cycle.

摘要

海胆卵被用于研究纺锤体微管在控制细胞周期事件时间机制中的作用。在第一次有丝分裂前期,用秋水仙酰胺处理海胆卵4分钟。至少3小时内没有微管组装,并且卵不分裂。这些卵表现出核膜破裂(NEB)和核膜重新形成(NER)的重复循环。在经秋水仙酰胺处理的卵中,有丝分裂(从NEB到NER)的时间是未处理对照卵的两倍。两者的间期(从NER到NEB)相同。因此,每个周期完全在有丝分裂阶段延长。经处理的卵的染色体浓缩,最终分裂成单独的染色单体,但它们不会分开移动。这种“后期”分裂相对于对照卵的后期开始明显延迟。在NEB后,用366纳米的光照射经处理的卵,使秋水仙酰胺失活。这使得卵能够组装正常的纺锤体并进行分裂。在NEB后长达14分钟,微管组装开始的延迟会导致后期开始、卵裂以及随后细胞周期事件出现同等程度的延迟。无论延迟情况如何,后期在照射后会经历正常的前中期持续时间。纺锤体微管的数量也会影响有丝分裂事件的时间。在第二次分裂前期进行短时间的秋水仙酰胺处理会使卵组装出小的纺锤体。在NEB后对一个卵裂球进行照射,以提供一个具有正常大小纺锤体的对照细胞。纺锤体变小的细胞总是比其对照细胞更晚开始后期。末期事件也相应延迟。这项工作表明,纺锤体微管参与了控制细胞启动后期、完成有丝分裂以及开始下一个细胞周期时间的机制。