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Live-Cell Imaging of Dual-Labeled Golgi Stacks in Tobacco BY-2 Cells Reveals Similar Behaviors for Different Cisternae duringn Movement and Brefeldin A Treatment

机译:烟草BY-2细胞中双标签高尔基烟囱的活细胞成像揭示了运动和布雷菲德菌素A处理期间不同水箱的相似行为。

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摘要

In plant cells, the Golgi apparatus consists of numerous stacks that, in turn, are composed of several flattened cisternae with a clear cis-to-trans polarity. During normal functioning within living cells, this unusual organelle displays a wide range of dynamic behaviors such as whole stack motility, constant membrane flux through the cisternae, and Golgi enzyme recycling through the ER. In order to further investigate various aspects of Golgi stack dynamics and integrity, we co-expressed pairs of established Golgi markers in tobacco BY-2 cells to distinguish sub-compartments of the Golgi during monensin treatments, movement, and brefeldin A (BFA)-induced disassembly. A combination of cis and trans markers revealed that Golgi stacks remain intact as they move through the cytoplasm. The Golgi stack orientation during these movements showed a slight preference for the cis side moving ahead, but trans cisternae were also found at the leading edge. During BFA treatments, the different sub-compartments of about half of the observed stacks fused with the ER sequentially; however, no consistent order could be detected. In contrast, the ionophore monensin resulted in swelling of trans cisternae while medial and particularly cis cisternae were mostly unaffected. Our results thus demonstrate a remarkable equivalence of the different cisternae with respect to movement and BFA-induced fusion with the ER. In addition, we propose that a combination of dual-label fluorescence microscopy and drug treatments can provide a simple alternative approach to the determination of protein localization to specific Golgi sub-compartments.
机译:在植物细胞中,高尔基体由许多叠层组成,而这些叠层又由几个扁平的水箱组成,这些水箱具有清晰的顺反极性。在活细胞内正常运行期间,这种异常的细胞器会表现出广泛的动态行为,例如整个堆栈运动,通过水箱的恒定膜通量以及通过ER的高尔基酶循环。为了进一步研究高尔基体堆栈动力学和完整性的各个方面,我们在烟草BY-2细胞中共表达了已建立的高尔基体标记对,以区分莫能菌素治疗,运动和布雷菲德菌素A(BFA)-期间的高尔基体小室。诱导拆卸。顺式和反式标记的组合显示,高尔基体堆栈在穿过细胞质时仍保持完整。在这些运动过程中,高尔基体堆的方向显示出对顺侧向前移动的偏爱,但在前缘也发现了反式水箱。在BFA治疗期间,大约一半的观察到的烟囱的不同子隔间依次与ER融合;但是,无法检测到一致的顺序。相反,离子载体莫能菌素导致反式水箱膨胀,而内侧水箱,尤其是顺式水箱大部分不受影响。因此,我们的结果证明了不同的水箱在运动和BFA诱导的与ER融合方面的显着等效性。此外,我们建议双标记荧光显微镜和药物治疗相结合可以提供一种简单的替代方法来确定蛋白质在特定高尔基体小室中的定位。

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  • 来源
    《Molecular Plant》 |2011年第5期|p.896-908|共13页
  • 作者

    Andreas Nebenführ;

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    To whom correspondence should be addressed. E-mail;

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