Phosphoregulation of Microtubule Assembly and Disassembly for Phragmoplast Expansion During Plant Cytokinesis.

IF 3.2 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY BioEssays Pub Date : 2025-03-03 DOI:10.1002/bies.202500004
Yuh-Ru Julie Lee, Bo Liu
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Abstract

Plant cytokinesis results in the formation of the cell plate by the phragmoplast which contains dynamic microtubules serving as the track for the delivery of cell wall builders included in Golgi vesicles. During the centrifugal process of cell plate assembly, new microtubules are assembled and bundled at the leading edge to prepare for vesicle transport while older microtubules are disassembled at the lagging edge upon the completion of vesicle delivery. The turnover of phragmoplast microtubules in this process is thought to be regulated by phosphorylation of the key microtubule bundling factor MAP65. A recent study revealed a surprising role of the α-Aurora kinase, which is typically known for its role in governing the formation of the bipolar spindle apparatus, in phosphorylating the primary microtubule bundler MAP65-3 in Arabidopsis. This phosphorylation positively contributes to the expansion of the phragmoplast. The phragmoplast midzone is also the hub for other cytokinesis-important kinases. It is intriguing how these kinases are targeted and how they may crosstalk with each other to orchestrate the expansion of the phragmoplast.

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植物细胞分裂的结果是噬菌体形成细胞板,细胞板包含动态微管,是运送高尔基体囊泡中细胞壁构建物的轨道。在细胞板组装的离心过程中,新的微管在前缘组装和捆绑,为囊泡运输做准备,而旧的微管则在囊泡运输完成后在滞后边缘解体。在这一过程中,噬菌体微管的更替被认为是由关键微管捆绑因子 MAP65 的磷酸化调控的。最近的一项研究揭示了α-极光激酶在拟南芥主要微管束因子MAP65-3磷酸化过程中的惊人作用。这种磷酸化对噬菌体的扩展有积极作用。膈膜中区也是其他细胞分裂重要激酶的枢纽。令人感兴趣的是,这些激酶是如何靶向的,它们又是如何相互影响以协调膈质体的扩展的。
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来源期刊
BioEssays
BioEssays 生物-生化与分子生物学
CiteScore
7.30
自引率
2.50%
发文量
167
审稿时长
4-8 weeks
期刊介绍: molecular – cellular – biomedical – physiology – translational research – systems - hypotheses encouraged BioEssays is a peer-reviewed, review-and-discussion journal. Our aims are to publish novel insights, forward-looking reviews and commentaries in contemporary biology with a molecular, genetic, cellular, or physiological dimension, and serve as a discussion forum for new ideas in these areas. An additional goal is to encourage transdisciplinarity and integrative biology in the context of organismal studies, systems approaches, through to ecosystems, where appropriate.
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