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首页> 外文期刊>The Plant Cell >Identification of myosin XI receptors in Arabidopsis defines a distinct class of transport vesicles.
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Identification of myosin XI receptors in Arabidopsis defines a distinct class of transport vesicles.

机译:拟南芥中肌球蛋白XI受体的鉴定定义了不同种类的运输囊泡。

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To characterize the mechanism through which myosin XI-K attaches to its principal endomembrane cargo, a yeast two-hybrid library of Arabidopsis thaliana cDNAs was screened using the myosin cargo binding domain as bait. This screen identified two previously uncharacterized transmembrane proteins (hereinafter myosin binding proteins or MyoB1/2) that share a myosin binding, conserved domain of unknown function 593 (DUF593). Additional screens revealed that MyoB1/2 also bind myosin XI-1, whereas myosin XI-I interacts with the distantly related MyoB7. The in vivo interactions of MyoB1/2 with myosin XI-K were confirmed by immunoprecipitation and colocalization analyses. In epidermal cells, the yellow fluorescent protein-tagged MyoB1/2 localize to vesicles that traffic in a myosin XI-dependent manner. Similar to myosin XI-K, MyoB1/2 accumulate in the tip-growing domain of elongating root hairs. Gene knockout analysis demonstrated that functional cooperation between myosin XI-K and MyoB proteins is required for proper plant development. Unexpectedly, the MyoB1-containing vesicles did not correspond to brefeldin A-sensitive Golgi and post-Golgi or prevacuolar compartments and did not colocalize with known exocytic or endosomal compartments. Phylogenomic analysis suggests that DUF593 emerged in primitive land plants and founded a multigene family that is conserved in all flowering plants. Collectively, these findings indicate that MyoB are membrane-anchored myosin receptors that define a distinct, plant-specific transport vesicle compartment.
机译:为了表征肌球蛋白XI-K附着于其主要内膜货物的机制,使用肌球蛋白货物结合结构域作为诱饵,筛选了拟南芥cDNA的酵母的两个杂交文库。该筛选鉴定了两个以前未表征的跨膜蛋白(以下称为肌球蛋白结合蛋白或MyoB1 / 2),它们共享肌球蛋白结合的保守功能未知结构域593(DUF593)。其他屏幕显示,MyoB1 / 2也结合了肌球蛋白XI-1,而肌球蛋白XI-I与遥远相关的MyoB7相互作用。免疫沉淀和共定位分析证实了MyoB1 / 2与肌球蛋白XI-K的体内相互作用。在表皮细胞中,黄色荧光蛋白标记的MyoB1 / 2定位于以肌球蛋白XI依赖性方式运输的囊泡。与肌球蛋白XI-K相似,MyoB1 / 2积累在伸长的根毛的尖端生长域中。基因敲除分析表明,肌球蛋白XI-K和MyoB蛋白之间的功能合作对于适当的植物发育是必需的。出乎意料的是,含MyoB1的囊泡不对应于布雷菲德菌素A敏感的高尔基体和高尔基体后或室前区,也不与已知的胞外或内体区共定位。系统发育分析表明,DUF593出现在原始的陆地植物中,并建立了一个多基因家族,该家族在所有开花植物中均得到保护。总的来说,这些发现表明,MyoB是膜锚定的肌球蛋白受体,定义了一个独特的,植物特异性的运输小泡区室。

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