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微囊藻毒素-LR通过抑制蛋白磷酸酶而非诱导活性氧来诱导蚕豆有丝分裂纺锤体组装紊乱。

Microcystin-LR induces mitotic spindle assembly disorders in Vicia faba by protein phosphatase inhibition and not reactive oxygen species induction.

作者信息

Garda Tamás, Kónya Zoltán, Tándor Ildikó, Beyer Dániel, Vasas Gábor, Erdődi Ferenc, Vereb György, Papp Georgina, Riba Milán, M-Hamvas Márta, Máthé Csaba

机构信息

Department of Botany, Faculty of Science and Technology, University of Debrecen, Egyetem ter 1, H-4032, Debrecen, Hungary.

Department of Medical Chemistry, Faculty of Medicine, University of Debrecen, Egyetem ter 1, H-4032, Debrecen, Hungary.

出版信息

J Plant Physiol. 2016 Jul 20;199:1-11. doi: 10.1016/j.jplph.2016.04.009. Epub 2016 Apr 30.

Abstract

We aimed to reveal the mechanisms of mitotic spindle anomalies induced by microcystin-LR (MCY-LR), a cyanobacterial toxin in Vicia faba, a well-known model in plant cell and molecular biology. MCY-LR inhibits type 1 and 2A phosphoserine/threonine specific protein phosphatases (PP1 and PP2A) and induces reactive oxygen species (ROS) formation. The cytoskeleton is one of the main targets of the cyanotoxin during cytopathogenesis. Histochemical-immunohistochemical and biochemical methods were used. A significant number of MCY-LR induced spindle alterations are described for the first time. Disrupted, multipolar spindles and missing kinetochore fibers were detected both in metaphase and anaphase cells. Additional polar microtubule (MT) bundles, hyperbundling of spindle MTs, monopolar spindles, C-S- shaped, additional and asymmetric spindles were detected in metaphase, while midplane kinetochore fibers were detected in anaphase cells only. Several spindle anomalies induced mitotic disorders, i.e. they occurred concomitantly with altered sister chromatid separation. Alterations were dependent on the MCY-LR dose and exposure time. Under long-term (2 and mainly 6 days') exposure they were detected in the concentration range of 0.1-20μgmL(-1) MCY-LR that inhibited PP1 and PP2A significantly without significant ROS induction. Elevated peroxidase/catalase activities indicated that MCY-LR treated V. faba plants showed efficient defense against oxidative stress. Thus, although the elevation of ROS is known to induce cytoskeletal aberrations in general, this study shows that long-term protein phosphatase inhibition is the primary cause of MCY-LR induced spindle disorders.

摘要

我们旨在揭示微囊藻毒素-LR(MCY-LR),一种蓝藻毒素,在蚕豆(植物细胞和分子生物学中著名的模型)中诱导有丝分裂纺锤体异常的机制。MCY-LR抑制1型和2A型磷酸丝氨酸/苏氨酸特异性蛋白磷酸酶(PP1和PP2A)并诱导活性氧(ROS)形成。细胞骨架是细胞病变过程中蓝藻毒素的主要靶点之一。使用了组织化学-免疫组织化学和生化方法。首次描述了大量MCY-LR诱导的纺锤体改变。在中期和后期细胞中均检测到纺锤体破坏、多极纺锤体和动粒纤维缺失。在中期检测到额外的极微管(MT)束、纺锤体MTs超束集、单极纺锤体、C-S形、额外的和不对称的纺锤体,而仅在后期细胞中检测到中平面动粒纤维。几种纺锤体异常诱导了有丝分裂紊乱,即它们与姐妹染色单体分离改变同时发生。这些改变取决于MCY-LR剂量和暴露时间。在长期(2天,主要是6天)暴露下,在0.1-20μgmL(-1) MCY-LR浓度范围内检测到这些改变,该浓度范围显著抑制PP1和PP2A且无明显ROS诱导。过氧化物酶/过氧化氢酶活性升高表明经MCY-LR处理的蚕豆植株对氧化应激表现出有效的防御。因此,虽然已知ROS升高通常会诱导细胞骨架畸变,但本研究表明长期抑制蛋白磷酸酶是MCY-LR诱导纺锤体紊乱的主要原因。

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