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粗糙脉孢菌中的细胞质微管阵列依赖于纺锤极体处的微管组织中心和隔膜处依赖于微管正端的假微管组织中心。

The cytoplasmic microtubule array in Neurospora crassa depends on microtubule-organizing centers at spindle pole bodies and microtubule +end-depending pseudo-MTOCs at septa.

作者信息

Ramírez-Cota Rosa, Espino-Vazquez Astrid N, Rodriguez-Vega Tonacy C, Macias-Díaz Rocío E, Callejas-Negrete Olga A, Freitag Michael, Fischer Reinhard, Roberson Robert W, Mouriño-Pérez Rosa R

机构信息

Departamento de Microbiología. Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE), Ensenada, B.C., Mexico.

Department of Biochemistry and Biophysics, Center for Genome Research and Biocomputing, Oregon State University, Corvallis, OR, USA.

出版信息

Fungal Genet Biol. 2022 Sep;162:103729. doi: 10.1016/j.fgb.2022.103729. Epub 2022 Aug 6.

DOI:10.1016/j.fgb.2022.103729
PMID:35944835
Abstract

γ-Tubulin ring complexes (γ-TuRC) mediate nucleation and anchorage of microtubules (MTs) to microtubule organizing centers (MTOCs). In fungi, the spindle pole body (SPB) is the functional equivalent of the centrosome, which is the main MTOC. In addition, non-centrosomal MTOCs (ncMTOCs) contribute to MT formation in some fungi like Schizosaccharomyces pombe and Aspergillus nidulans. In A. nidulans, MTOCs are anchored at septa (sMTOC) and share components of the outer plaque of the SPB. Here we show that the Neurospora crassa SPB is embedded in the nuclear envelope, with the γ-TuRC targeting proteins PCP-1 located at the inner plaque and APS-2 located at the outer plaque of the SPB. PCP-1 was a specific component of nuclear MTOCs, while APS-2 was also present at the septal pore. Although γ-tubulin was only detected at the nucleus, spontaneous MT nucleation occurred in the apical and subapical cytoplasm during recovery from benomyl-induced MT depolymerization experiments. There was no evidence for MT nucleation at septa. However, without benomyl treatment MT plus-ends were organized in the septal pore through MTB-3. Those septal MT plus ends polymerized MTs from septa in interphase cells Thus we conclude that the SPB is the only MT nucleation site in N. crassa, but the septal pore aids the MT network arrangement through the anchorage of the MT plus-ends through a pseudo-MTOC.

摘要

γ-微管蛋白环复合物(γ-TuRC)介导微管(MT)的成核以及微管与微管组织中心(MTOC)的锚定。在真菌中,纺锤体极体(SPB)相当于中心体,是主要的MTOC。此外,非中心体MTOC(ncMTOC)在一些真菌如粟酒裂殖酵母和构巢曲霉中对MT的形成有贡献。在构巢曲霉中,MTOC锚定在隔膜处(sMTOC),并共享SPB外板的组分。在这里我们表明,粗糙脉孢菌的SPB嵌入在核膜中,γ-TuRC靶向蛋白PCP-1位于SPB的内板,而APS-2位于外板。PCP-1是核MTOC的特异性组分,而APS-2也存在于隔膜孔处。尽管仅在细胞核中检测到γ-微管蛋白,但在苯菌灵诱导的MT解聚实验恢复过程中,顶端和亚顶端细胞质中会发生自发的MT成核。没有证据表明在隔膜处会发生MT成核。然而,在没有苯菌灵处理的情况下,MT的正端通过MTB-3在隔膜孔中进行组织。那些隔膜MT正端在间期细胞中从隔膜聚合MT。因此我们得出结论,SPB是粗糙脉孢菌中唯一的MT成核位点,但隔膜孔通过一个假MTOC对MT网络排列起到辅助作用,该假MTOC通过MT正端的锚定来实现。

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引用本文的文献

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Protein interactors of Spindle Pole Body (SPB) components and septal proteins in fungus : A mass spectrometry-based dataset.真菌中纺锤极体(SPB)组件和隔膜蛋白的蛋白质相互作用体:基于质谱的数据集。
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The IV International Symposium on Fungal Stress and the XIII International Fungal Biology Conference.第四届真菌应激国际研讨会暨第十三届国际真菌生物学会议
Fungal Biol. 2023 Jul-Aug;127(7-8):1157-1179. doi: 10.1016/j.funbio.2023.04.006. Epub 2023 May 11.