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RanBPM 蛋白作为 BLT2 受体的负调节剂,减弱 BLT2 介导的细胞迁移。

RanBPM protein acts as a negative regulator of BLT2 receptor to attenuate BLT2-mediated cell motility.

机构信息

From the School of Life Sciences and Biotechnology, Korea University, 5-1 Anam-dong, Sungbuk-gu, Seoul 136-701.

出版信息

J Biol Chem. 2013 Sep 13;288(37):26753-63. doi: 10.1074/jbc.M113.470260. Epub 2013 Aug 8.

Abstract

BLT2, a low affinity receptor for leukotriene B4 (LTB4), is a member of the G protein-coupled receptor family and is involved in many signal transduction pathways associated with various cellular phenotypes, including chemotactic motility. However, the regulatory mechanism for BLT2 has not yet been demonstrated. To understand the regulatory mechanism of BLT2, we screened and identified the proteins that bind to BLT2. Using a yeast two-hybrid assay with the BLT2 C-terminal domain as bait, we found that RanBPM, a previously proposed scaffold protein, interacts with BLT2. We demonstrated the specific interaction between BLT2 and RanBPM by GST pulldown assay and co-immunoprecipitation assay. To elucidate the biological function of the RanBPM-BLT2 interaction, we evaluated the effects of RanBPM overexpression or knockdown. We found that BLT2-mediated motility was severely attenuated by RanBPM overexpression and that knockdown of endogenous RanBPM by shRNA strongly promoted BLT2-mediated motility, suggesting a negative regulatory function of RanBPM toward BLT2. Furthermore, we observed that the addition of BLT2 ligands caused the dissociation of BLT2 and RanBPM, thus releasing the negative regulatory effect of RanBPM. Finally, we propose that Akt-induced BLT2 phosphorylation at residue Thr(355), which occurs after the addition of BLT2 ligands, is a potential mechanism by which BLT2 dissociates from RanBPM, resulting in stimulation of BLT2 signaling. Taken together, our results suggest that RanBPM acts as a negative regulator of BLT2 signaling to attenuate BLT2-mediated cell motility.

摘要

BLT2 是白三烯 B4(LTB4)的低亲和力受体,属于 G 蛋白偶联受体家族,参与许多与各种细胞表型相关的信号转导途径,包括趋化性运动。然而,BLT2 的调节机制尚未得到证实。为了了解 BLT2 的调节机制,我们筛选并鉴定了与 BLT2 结合的蛋白质。使用带有 BLT2 C 端结构域的酵母双杂交测定,我们发现 RanBPM,一种先前提出的支架蛋白,与 BLT2 相互作用。我们通过 GST 下拉测定和共免疫沉淀测定证实了 BLT2 和 RanBPM 之间的特异性相互作用。为了阐明 RanBPM-BLT2 相互作用的生物学功能,我们评估了 RanBPM 过表达或敲低的影响。我们发现 BLT2 介导的运动严重减弱 RanBPM 过表达,并且 shRNA 强烈促进 BLT2 介导的运动的内源性 RanBPM 敲低,表明 RanBPM 对 BLT2 具有负调节功能。此外,我们观察到 BLT2 配体的添加导致 BLT2 和 RanBPM 的解离,从而释放 RanBPM 的负调节作用。最后,我们提出 BLT2 配体添加后发生的 BLT2 残基 Thr(355)的 Akt 诱导磷酸化是 BLT2 从 RanBPM 解离的潜在机制,导致 BLT2 信号的刺激。总之,我们的结果表明,RanBPM 作为 BLT2 信号的负调节剂起作用,以减弱 BLT2 介导的细胞运动。

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