首页> 外文OA文献 >WPP-Domain Proteins Mimic the Activity of the HSC70-1 Chaperone in Preventing Mistargeting of RanGAP1-Anchoring Protein WIT11[C][W][OA]
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WPP-Domain Proteins Mimic the Activity of the HSC70-1 Chaperone in Preventing Mistargeting of RanGAP1-Anchoring Protein WIT11[C][W][OA]

机译:WPP域蛋白模拟HSC70-1分子伴侣的活性,以防止RanGAP1锚定蛋白WIT11的误靶[C] [W] [OA]

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摘要

Arabidopsis (Arabidopsis thaliana) tryptophan-proline-proline (WPP)-domain proteins, WPP1 and WPP2, are plant-unique, nuclear envelope-associated proteins of unknown function. They have sequence similarity to the nuclear envelope-targeting domain of plant RanGAP1, the GTPase activating protein of the small GTPase Ran. WPP domain-interacting tail-anchored protein 1 (WIT1) and WIT2 are two Arabidopsis proteins containing a coiled-coil domain and a C-terminal predicted transmembrane domain. They are required for RanGAP1 association with the nuclear envelope in root tips. Here, we show that WIT1 also binds WPP1 and WPP2 in planta, we identify the chaperone heat shock cognate protein 70-1 (HSC70-1) as in vivo interaction partner of WPP1 and WPP2, and we show that HSC70-1 interacts in planta with WIT1. WIT1 and green fluorescent protein (GFP)-WIT1 are targeted to the nuclear envelope in Arabidopsis. In contrast, GFP-WIT1 forms large cytoplasmic aggregates when overexpressed transiently in Nicotiana benthamiana leaf epidermis cells. Coexpression of HSC70-1 significantly reduces GFP-WIT1 aggregation and permits association of most GFP-WIT1 with the nuclear envelope. Significantly, WPP1 and WPP2 show the same activity. A WPP1 mutant with reduced affinity for GFP-WIT1 fails to decrease its aggregation. While the WPP-domain proteins act on a region of WIT1 containing the coiled-coil domain, HSC70-1 additionally acts on the C-terminal transmembrane domain. Taken together, our data suggest that both HSC70-1 and the WPP-domain proteins play a role in facilitating WIT1 nuclear envelope targeting, which is, to our knowledge, the first described in planta activity for the WPP-domain proteins.
机译:拟南芥(Arabidopsis thaliana)色氨酸-脯氨酸-脯氨酸(WPP)域蛋白WPP1和WPP2是功能未知的植物特有的,与核包膜相关的蛋白。它们与植物RanGAP1的核包膜靶向结构域(小GTPase Ran的GTPase活化蛋白)具有序列相似性。 WPP结构域相互作用的尾锚蛋白1(WIT1)和WIT2是两个拟南芥蛋白,包含卷曲螺旋结构域和C端预测跨膜结构域。 RanGAP1与根尖中的核膜壳缔合需要它们。在这里,我们表明WIT1还与植物体内的WPP1和WPP2结合,我们确定了伴侣热休克同源蛋白70-1(HSC70-1)为WPP1和WPP2的体内相互作用伴侣,并且我们证明了HSC70-1在植物体内相互作用与WIT1。 WIT1和绿色荧光蛋白(GFP)-WIT1靶向拟南芥的核膜。相反,GFP-WIT1在烟草本生叶表皮细胞中瞬时过表达时会形成较大的胞质聚集体。 HSC70-1的共表达显着降低了GFP-WIT1的聚集,并允许大多数GFP-WIT1与核膜结合。重要的是,WPP1和WPP2显示相同的活动。对GFP-WIT1的亲和力降低的WPP1突变体无法降低其聚集。 WPP结构域蛋白作用于包含卷曲螺旋结构域的WIT1区域,而HSC70-1另外作用于C端跨膜结构域。综上所述,我们的数据表明HSC70-1和WPP结构域蛋白均在促进WIT1核包膜靶向中发挥作用,据我们所知,这是WPP结构域蛋白在植物活性中首次描述的。

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