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首页> 外文期刊>Protist >Identification of a Cell Cycle-Dependent Duplicating Complex that Assembles Basal Bodies de novo in Naegleria
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Identification of a Cell Cycle-Dependent Duplicating Complex that Assembles Basal Bodies de novo in Naegleria

机译:组装的细胞周期依赖性复制复合体的基础从头开始在内格勒州的基础。

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摘要

During the differentiation of the amoeba Naegleria pringsheimi into a flagellate, a transient complex containing gamma-tubulin, pericentrin-like protein, and myosin II (GPM complex) is formed, and subsequently a pair of basal bodies is assembled from the complex. It is not understood, however, how a single GPM is formed nor how the capability to form this complex is acquired by individual cells. We hypothesized that the GPM is formed from a precursor complex and developed an antibody that recognizes Naegleria (Ng)-transacylase, a component of the precursor complex. Immunostaining of differentiating cells showed that Ng-transacylase is concentrated at a site in the amoeba and that gamma(-)tubulin is transiently co-concentrated at the site, suggesting that the GPM is formed from a precursor, GPMp, which contains Ng-transacylase and is already present in the amoeba. Immunostaining of growing N. pringsheimi with Ng-transacylase antibody revealed the presence of one GPMp in interphase cells, but two GPMps in mitotic cells, suggesting that N. pringsheimi maintains one GPMp per cell by duplicating and segregating the complex according to its cell cycle. Our results demonstrate the existence of a cell cycle-dependent duplicating complex that provides a site for the de novo assembly of the next generation of basal bodies. (C) 2014 Elsevier GmbH. All rights reserved.
机译:在将变形虫拟南芥分化为鞭毛的过程中,形成了包含γ-微管蛋白,pericentrin样蛋白和肌球蛋白II的瞬时复合物(GPM复合物),随后从该复合物中组装了一对基体。然而,还不了解单个细胞如何形成单个GPM或如何形成该复合物的能力。我们假设GPM由前体复合物形成,并开发出识别前体复合物Naegleria(Ng)-transacylase的抗体。分化细胞的免疫染色显示Ng-transacylase集中在变形虫的一个位点,并且γ(-)tubulin在该位点瞬时共集中,这表明GPM是由含有Ng-transacylase的前体GPMp形成的。并且已经存在于变形虫中。用Ng-transacylase抗体对正在生长的N. pringsheimi进行免疫染色显示,相间细胞中存在一种GPMp,但在有丝分裂细胞中存在两种GPMp,这表明pringsheimi N.通过根据复合物的细胞周期复制和分离复合物来维持每细胞一个GPMp。我们的结果证明了细胞周期依赖性复制复合体的存在,该复合体为下一代基体的从头组装提供了场所。 (C)2014 Elsevier GmbH。版权所有。

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