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RNA 加工体、过氧化物酶体、高尔基体、线粒体和内质网小管连接处经常在皮质微管上暂停。

RNA processing bodies, peroxisomes, Golgi bodies, mitochondria, and endoplasmic reticulum tubule junctions frequently pause at cortical microtubules.

机构信息

Biology Department, University of Massachusetts Amherst, Amherst, MA 01003, USA.

出版信息

Plant Cell Physiol. 2012 Apr;53(4):699-708. doi: 10.1093/pcp/pcs025. Epub 2012 Mar 1.

Abstract

Organelle motility, essential for cellular function, is driven by the cytoskeleton. In plants, actin filaments sustain the long-distance transport of many types of organelles, and microtubules typically fine-tune the motile behavior. In shoot epidermal cells of Arabidopsis thaliana seedlings, we show here that a type of RNA granule, the RNA processing body (P-body), is transported by actin filaments and pauses at cortical microtubules. Interestingly, removal of microtubules does not change the frequency of P-body pausing. Similarly, we show that Golgi bodies, peroxisomes, and mitochondria all pause at microtubules, and again the frequency of pauses is not appreciably changed after microtubules are depolymerized. To understand the basis for pausing, we examined the endoplasmic reticulum (ER), whose overall architecture depends on actin filaments. By the dual observation of ER and microtubules, we find that stable junctions of tubular ER occur mainly at microtubules. Removal of microtubules reduces the number of stable ER tubule junctions, but those remaining are maintained without microtubules. The results indicate that pausing on microtubules is a common attribute of motile organelles but that microtubules are not required for pausing. We suggest that pausing on microtubules facilitates interactions between the ER and otherwise translocating organelles in the cell cortex.

摘要

细胞器的运动对于细胞功能至关重要,它由细胞骨架驱动。在植物中,肌动蛋白丝维持着许多类型细胞器的长距离运输,而微管通常精细地调节运动行为。在这里,我们展示了在拟南芥幼苗的茎表皮细胞中,一种 RNA 颗粒,即 RNA 处理体 (P 体),是由肌动蛋白丝运输的,并在质膜微管上暂停。有趣的是,去除微管并不会改变 P 体暂停的频率。同样,我们还表明,高尔基体、过氧化物酶体和线粒体都在微管上暂停,而且微管解聚后,暂停的频率也没有明显变化。为了理解暂停的基础,我们研究了内质网 (ER),其整体结构依赖于肌动蛋白丝。通过对 ER 和微管的双重观察,我们发现管状 ER 的稳定连接主要发生在微管上。去除微管会减少稳定的 ER 管连接的数量,但剩余的连接在没有微管的情况下仍能维持。结果表明,微管上的暂停是运动细胞器的一个共同特征,但微管不是暂停所必需的。我们认为,在微管上暂停有助于 ER 与细胞皮层中其他正在迁移的细胞器之间的相互作用。

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