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An Arabidopsis Ran-binding protein, AtRanBP1c, is a co-activator of Ran GTPase-activating protein and requires the C-terminus for its cytoplasmic localization

机译:拟南芥Ran结合蛋白AtRanBP1c是Ran GTPase激活蛋白的共激活子,需要C端进行胞质定位

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Ran-binding proteins (RanBPs) are a group of proteins that bind to Ran (Ras-related nuclear small GTP-binding protein), and thus either control the GTP/GDP-bound states of Ran or help couple the Ran GTPase cycle to a cellular process. AtRanBP1c is a Ran-binding protein from Arabidopsis thaliana (L.) Heynh. that was recently shown to be critically involved in the regulation of auxin-induced mitotic progression [S.-H. Kim et al. (2001) Plant Cell 13:2619–2630]. Here we report that AtRanBP1c inhibits the EDTA-induced release of GTP from Ran and serves as a co-activator of Ran-GTPase-activating protein (RanGAP) in vitro. Transient expression of AtRanBP1c fused to a β-glucuronidase (GUS) reporter reveals that the protein localizes primarily to the cytosol. Neither the N- nor C-terminus of AtRanBP1c, which flank the Ran-binding domain (RanBD), is necessary for the binding of PsRan1-GTP to the protein, but both are needed for the cytosolic localization of GUS-fused AtRanBP1c. These findings, together with a previous report that AtRanBP1c is critically involved in root growth and development, imply that the promotion of GTP hydrolysis by the Ran/RanGAP/AtRanBP1c complex in the cytoplasm, and the resulting concentration gradient of Ran-GDP to Ran-GTP across the nuclear membrane could be important in the regulation of auxin-induced mitotic progression in root tips of A. thaliana.
机译:Ran结合蛋白(RanBPs)是与Ran(与Ras相关的核小GTP结合蛋白)结合的一组蛋白质,因此可以控制Ran的GTP / GDP结合状态或帮助将Ran GTPase循环偶联到Ran细胞过程。 AtRanBP1c是来自拟南芥(L.)Heynh的Ran结合蛋白。最近发现,它与植物生长素诱导的有丝分裂进程的调控密切相关[S.-H。 Kim等。 (2001)Plant Cell 13:2619–2630]。在这里,我们报告AtRanBP1c抑制EDTA诱导的Ran释放GTP,并在体外充当Ran-GTPase激活蛋白(RanGAP)的共激活因子。 AtRanBP1c与β-葡萄糖醛酸苷酶(GUS)报告基因融合的瞬时表达表明该蛋白主要定位于胞质溶胶。 Ran结合结构域(RanBD)两侧的AtRanBP1c的N端和C端都不是PsRan1-GTP与蛋白质结合的必要条件,但GUS融合的AtRanBP1c的胞质定位都不需要。这些发现以及以前的报告AtRanBP1c关键参与根的生长和发育,暗示Ran / RanGAP / AtRanBP1c复合物在细胞质中促进GTP水解,以及由此产生的Ran-GDP浓度梯度向Ran-跨核膜的GTP在调节拟南芥根尖中生长素诱导的有丝分裂进程中可能很重要。

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