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ER network dynamics are differentially controlled by myosins XI-K XI-C XI-E XI-I XI-1 and XI-2

机译:ER网络动力学受到肌球蛋白XI-KXI-CXI-EXI-IXI-1和XI-2的差异控制

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摘要

The endoplasmic reticulum (ER) of higher plants is a complex network of tubules and cisternae. Some of the tubules and cisternae are relatively persistent, while others are dynamically moving and remodeling through growth and shrinkage, cycles of tubule elongation and retraction, and cisternal expansion and diminution. Previous work showed that transient expression in tobacco leaves of the motor-less, truncated tail of myosin XI-K increases the relative area of both persistent cisternae and tubules in the ER. Likewise, transient expression of XI-K tail diminishes the movement of organelles such as Golgi and peroxisomes. To examine whether other class XI myosins are involved in the remodeling and movement of the ER, other myosin XIs implicated in organelle movement, XI-1 (MYA1),XI-2 (MYA2), XI-C, XI-E, XI-I, and one not, XI-A, were expressed as motor-less tail constructs and their effect on ER persistent structures determined. Here, we indicate a differential effect on ER dynamics whereby certain class XI myosins may have more influence over controlling cisternalization rather than tubulation.
机译:高等植物的内质网(ER)是由小管和水箱组成的复杂网络。一些肾小管和池是相对持久的,而另一些则通过生长和收缩,肾小管伸长和收缩,以及胸骨扩张和缩小而动态地移动和重塑。先前的研究表明,肌球蛋白XI-K的无运动,截短的尾巴在烟叶中的瞬时表达增加了内质网中持久性水箱和小管的相对面积。同样,XI-K尾巴的瞬时表达减少了高尔基体和过氧化物酶体等细胞器的运动。为了检查其他XI类肌球蛋白是否参与ER的重塑和运动,其他与细胞器运动有关的肌球蛋白XI分别为XI-1(MYA1),XI-2(MYA2),XI-C,XI-E,XI- I,一个没有,XI-A被表示为无运动尾巴结构,并确定了它们对ER持久性结构的影响。在这里,我们指出了对内质网动力学的不同影响,其中某些XI类肌球蛋白可能对控制脑血栓形成比对输卵管产生更大的影响。

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