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纤毛虫中的细胞极性:嗜热四膜虫一个破坏细胞骨架组织的无序突变体中整体极性的持续性。

Cellular polarity in ciliates: persistence of global polarity in a disorganized mutant of Tetrahymena thermophila that disrupts cytoskeletal organization.

作者信息

Jerka-Dziadosz M, Jenkins L M, Nelsen E M, Williams N E, Jaeckel-Williams R, Frankel J

机构信息

Department of Biological Sciences, University of Iowa, Iowa City 52242-1324, USA.

出版信息

Dev Biol. 1995 Jun;169(2):644-61. doi: 10.1006/dbio.1995.1176.

Abstract

Much of the cell surface on the ciliate Tetrahymena thermophila is covered by a polarized lattice of cytoskeletal structures that are associated with basal bodies of the ciliary rows. Unique structural landmarks, including an oral apparatus and contractile vacuole pores, develop before cell division in localized domains located, respectively, posterior and anterior to the transverse fission zone. All of these structures can be visualized by specific monoclonal antibodies. A single-locus recessive mutation, disorganized-A (disA), primarily affects the striated rootlets of the ciliary-row basal bodies and brings about a severe disorganization in the positioning and orientation of these basal bodies and associated cytoskeletal elements. Nonetheless, the new oral apparatus, contractile vacuole pores, and other unique structures appeared at or near their normal sites along the anteroposterior axis of disA cells, indicating that the positioning of these localized structures is not dependent on the integrity of the ciliary rows. Abnormalities were present in the details of construction of some of the localized structures and in aspects of cell shape that may be influenced by these details. In the main, however, analysis of disA mutant cells indicates that intracellular domains near the cell poles develop independently of the vectorial polarity of the ciliary rows.

摘要

嗜热四膜虫细胞表面的大部分区域被与纤毛排基体相关的细胞骨架结构的极化晶格所覆盖。独特的结构标志,包括口器和收缩泡孔,在细胞分裂前分别在位于横向分裂带后方和前方的局部区域发育形成。所有这些结构都可以通过特异性单克隆抗体可视化。一个单基因座隐性突变,即无序-A(disA),主要影响纤毛排基体的横纹小根,并导致这些基体以及相关细胞骨架元件的定位和方向严重紊乱。尽管如此,新的口器、收缩泡孔和其他独特结构在disA细胞的前后轴上的正常位置或其附近出现,这表明这些局部结构的定位并不依赖于纤毛排的完整性。一些局部结构的构建细节以及可能受这些细节影响的细胞形状方面存在异常。然而,总体而言,对disA突变细胞的分析表明,细胞两极附近的细胞内区域的发育独立于纤毛排的矢量极性。

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