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一种在体内有丝分裂星状体形成所必需的胞质动力蛋白。

A cytoplasmic dynein required for mitotic aster formation in vivo.

作者信息

Inoue S, Yoder O C, Turgeon B G, Aist J R

机构信息

Department of Plant Pathology, Cornell University, Ithaca, New York 14853, USA.

出版信息

J Cell Sci. 1998 Sep;111 ( Pt 17):2607-14. doi: 10.1242/jcs.111.17.2607.

Abstract

An astral pulling force helps to elongate the mitotic spindle in the filamentous ascomycete, Nectria haematococca. Evidence is mounting that dynein is required for the formation of mitotic spindles and asters. Obviously, this would be an important mitotic function of dynein, since it would be a prerequisite for astral force to be applied to a spindle pole. Missing from the evidence for such a role of dynein in aster formation, however, has been a dynein mutant lacking mitotic asters. To determine whether or not cytoplasmic dynein is involved in mitotic aster formation in N. haematococca, a dynein-deficient mutant was made. Immunocytochemistry visualized few or no mitotic astral microtubules in the mutant cells, and studies of living cells confirmed the veracity of this result by revealing the absence of mitotic aster functions in vivo: intra-astral motility of membranous organelles was not apparent; the rate and extent of spindle elongation during anaphase B were reduced; and spindle pole body separation almost stopped when the anaphase B spindle in the mutant was cut by a laser microbeam, demonstrating unequivocally that no astral pulling force was present. These unique results not only provide a demonstration that cytoplasmic dynein is required for the formation of mitotic asters in N. haematococca; they also represent the first report of mitotic phenotypes in a dynein mutant of any filamentous fungus and the first cytoplasmic dynein mutant of any organism whose mitotic phenotypes demonstrate the requirement of cytoplasmic dynein for aster formation in vivo.

摘要

在丝状子囊菌血座壳菌中,一种星体拉力有助于延长有丝分裂纺锤体。越来越多的证据表明,动力蛋白是形成有丝分裂纺锤体和星体所必需的。显然,这将是动力蛋白一项重要的有丝分裂功能,因为这是星体力作用于纺锤体极的先决条件。然而,在动力蛋白在星体形成中发挥这种作用的证据中,一直缺少一个缺乏有丝分裂星体的动力蛋白突变体。为了确定细胞质动力蛋白是否参与血座壳菌有丝分裂星体的形成,制作了一个动力蛋白缺陷型突变体。免疫细胞化学显示突变体细胞中很少或没有有丝分裂星体微管,对活细胞的研究通过揭示体内有丝分裂星体功能的缺失证实了这一结果的真实性:膜性细胞器的星体内运动不明显;后期B期间纺锤体延长的速率和程度降低;当用激光微束切割突变体中的后期B纺锤体时,纺锤体极体分离几乎停止,明确表明不存在星体拉力。这些独特的结果不仅证明了细胞质动力蛋白是血座壳菌有丝分裂星体形成所必需的;它们还代表了任何丝状真菌的动力蛋白突变体中有丝分裂表型的首次报道,以及任何生物体中第一个细胞质动力蛋白突变体,其有丝分裂表型证明了体内星体形成需要细胞质动力蛋白。

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