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1
On the role of microtubules in movement and alignment of nuclei in virus-induced syncytia.关于微管在病毒诱导的多核细胞中细胞核移动和排列中的作用。
J Cell Biol. 1968 Dec;39(3):526-43. doi: 10.1083/jcb.39.3.526.
2
Involvement of microtubules and 10-nm filaments in the movement and positioning of nuclei in syncytia.微管和10纳米细丝在多核体中细胞核的移动和定位中的作用。
J Cell Biol. 1979 Nov;83(2 Pt 1):320-37. doi: 10.1083/jcb.83.2.320.
3
On the role of the response of the cell membrane in determining virus virulence. Contrasting effects of the parainfluenza virus SV5 in two cell types.关于细胞膜反应在决定病毒毒力中的作用。副流感病毒SV5在两种细胞类型中的不同作用。
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4
The role of three cytoplasmic fibers in BHK-21 cell motility. I. Microtubules and the effects of colchicine.三种细胞质纤维在BHK - 21细胞运动中的作用。I. 微管及秋水仙碱的作用
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Relationship between movement and aggregation of centrioles in syncytia and formation of microtubule bundles.多核体中中心粒的运动与聚集以及微管束形成之间的关系。
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Phorbol myristate acetate stimulates microtubule and 10-nm filament extension and lysosome redistribution in mouse macrophages.佛波醇肉豆蔻酸酯乙酸盐刺激小鼠巨噬细胞中的微管和10纳米细丝伸展以及溶酶体重新分布。
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Microtubules and microfilaments in HSV-Infected rabbit-kidney cells.单纯疱疹病毒感染的兔肾细胞中的微管和微丝
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10
The association of a class of saltatory movements with microtubules in cultured cells.一类跳跃运动与培养细胞中微管的关联。
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本文引用的文献

1
A "MICROTUBULE" IN PLANT CELL FINE STRUCTURE.植物细胞精细结构中的“微管”。
J Cell Biol. 1963 Oct 1;19(1):239-50. doi: 10.1083/jcb.19.1.239.
2
The effect of mitotic inhibitors in myogenesis in vitro.有丝分裂抑制剂在体外肌生成中的作用。
J Cell Biol. 1968 Jan;36(1):111-27.
3
A study of fixation for electron microscopy.电子显微镜固定研究。
J Exp Med. 1952 Mar;95(3):285-98. doi: 10.1084/jem.95.3.285.
4
Polyoma transformation of hamster cell clones--an investigation of genetic factors affecting cell competence.仓鼠细胞克隆的多瘤病毒转化——对影响细胞感受态的遗传因素的研究
Virology. 1962 Feb;16:147-51. doi: 10.1016/0042-6822(62)90290-8.
5
POLYKARYOCYTOSIS INDUCED BY NEWCASTLE DISEASE VIRUS IN MONOLAYERS OF ANIMAL CELLS.新城疫病毒在动物细胞单层中诱导的多核细胞形成
Virology. 1965 Jun;26:228-45. doi: 10.1016/0042-6822(65)90050-4.
6
STUDIES ON THE MECHANISM OF POLIOVIRUS-INDUCED CELL DAMAGE. I. THE RELATION BETWEEN POLIOVIRUS,-INDUCED METABOLIC AND MORPHOLOGICAL ALTERATIONS IN CULTURED CELLS.脊髓灰质炎病毒所致细胞损伤机制的研究。I. 脊髓灰质炎病毒诱导的培养细胞代谢与形态学改变之间的关系。
Virology. 1965 May;26:100-13. doi: 10.1016/0042-6822(65)90030-9.
7
HISTOCHEMICAL AND ULTRASTRUCTURAL STUDIES ON HELA CELL CULTURES EXPOSED TO SPINDLE INHIBITORS WITH SPECIAL REFERENCE TO THE INTERPHASE CELL.对暴露于纺锤体抑制剂的海拉细胞培养物进行的组织化学和超微结构研究,特别关注间期细胞。
J Histochem Cytochem. 1964 Sep;12:704-11. doi: 10.1177/12.9.704.
8
MULTIPLICATION OF A MYXOVIRUS (SV5) WITH MINIMAL CYTOPATHIC EFFECTS AND WITHOUT INTERFERENCE.一种具有最小细胞病变效应且无干扰的黏液病毒(SV5)的增殖
Virology. 1964 Jun;23:224-33. doi: 10.1016/0042-6822(64)90286-7.
9
THE MORPHOLOGY OF SV5 VIRUS.SV5病毒的形态学
Virology. 1964 Jun;23:195-202. doi: 10.1016/0042-6822(64)90282-x.
10
SOME OBSERVATIONS ON MEASLES INDUCED GIANT CELL FORMATION.关于麻疹诱导巨细胞形成的一些观察
Exp Cell Res. 1963 Aug;31:438-40. doi: 10.1016/0014-4827(63)90023-5.

关于微管在病毒诱导的多核细胞中细胞核移动和排列中的作用。

On the role of microtubules in movement and alignment of nuclei in virus-induced syncytia.

作者信息

Holmes K V, Choppin P W

出版信息

J Cell Biol. 1968 Dec;39(3):526-43. doi: 10.1083/jcb.39.3.526.

DOI:10.1083/jcb.39.3.526
PMID:4301760
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2107552/
Abstract

Infection of baby hamster kidney (BHK21-F) cells with the parainfluenza virus SV5 causes rapid and extensive cell fusion. Time-lapse cinematography shows that when cells fuse, their nuclei migrate straight to the center of the syncytium at rates of 1-2 micro/min. Nuclei are often arranged in long, tightly packed, parallel rows in syncytia derived from the fibroblastic BHK21-F cells. Polarization microscopy shows birefringent material between and parallel to these rows of nuclei, and electron microscopy shows bundles of cytoplasmic microtubules, approximately 250 A in diameter, and filaments, approximately 80 A in diameter, parallel to and between the rows of nuclei. Colchicine treatment causes disappearance of microtubules from BHK21-F cells and an apparent increase in the number of 80-A filaments. Although colchicine-treated, SV5-infected cells fuse, their nuclei do not migrate or form rows but remain randomly scattered through the syncytial cytoplasm. Incubation at 4 degrees C does not disrupt microtubules in BHK21-F cells. Rows of nuclei have been isolated from SV5-induced syncytia, and the nuclei in them have been found to be intimately associated with microtubules but not with other cytoplasmic structures. These results suggest that microtubules demarcate cytoplasmic channels through which nuclei migrate and that they may also be involved in the mechanism of nuclear movement.

摘要

用副流感病毒SV5感染幼仓鼠肾(BHK21 - F)细胞会导致快速且广泛的细胞融合。延时摄影显示,当细胞融合时,它们的细胞核以1 - 2微米/分钟的速度直接迁移到多核体的中心。在源自成纤维细胞BHK21 - F细胞的多核体中,细胞核常常排列成长而紧密堆积的平行行。偏振显微镜显示在这些细胞核行之间并与它们平行存在双折射物质,电子显微镜显示有直径约250埃的成束细胞质微管以及直径约80埃的细丝,与细胞核行平行并在其之间。秋水仙碱处理导致BHK21 - F细胞中的微管消失,并且直径80埃的细丝数量明显增加。尽管经秋水仙碱处理的、被SV5感染的细胞会融合,但其细胞核不会迁移或形成行,而是随机散布在多核体细胞质中。在4℃下孵育不会破坏BHK21 - F细胞中的微管。已从SV5诱导的多核体中分离出细胞核行,并且发现其中的细胞核与微管紧密相关,而与其他细胞质结构无关。这些结果表明,微管划定了细胞核迁移所通过的细胞质通道,并且它们可能也参与了核运动的机制。