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Affinity Purification of NF1 Protein–Protein Interactors Identifies Keratins and Neurofibromin Itself as Binding Partners

机译:NF1蛋白-蛋白质相互作用物的亲和纯化可确定角蛋白和神经纤维蛋白本身是否为结合伴侣

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摘要

Neurofibromatosis Type 1 (NF1) is caused by pathogenic variants in the NF1 gene encoding neurofibromin. Definition of NF1 protein–protein interactions (PPIs) has been difficult and lacks replication, making it challenging to define binding partners that modulate its function. We created a novel tandem affinity purification (TAP) tag cloned in frame to the 3’ end of the full-length murine Nf1 cDNA (mNf1). We show that this cDNA is functional and expresses neurofibromin, His-Tag, and can correct p-ERK/ERK ratios in NF1 null HEK293 cells. We used this affinity tag to purify binding partners with Strep-Tactin®XT beads and subsequently, identified them via mass spectrometry (MS). We found the tagged mNf1 can affinity purify human neurofibromin and vice versa, indicating that neurofibromin oligomerizes. We identify 21 additional proteins with high confidence of interaction with neurofibromin. After Metacore network analysis of these 21 proteins, eight appear within the same network, primarily keratins regulated by estrogen receptors. Previously, we have shown that neurofibromin levels negatively regulate keratin expression. Here, we show through pharmacological inhibition that this is independent of Ras signaling, as the inhibitors, selumetinib and rapamycin, do not alter keratin expression. Further characterization of neurofibromin oligomerization and binding partners could aid in discovering new neurofibromin functions outside of Ras regulation, leading to novel drug targets.
机译:1型神经纤维瘤病(NF1)是由编码神经纤维蛋白的NF1基因中的致病变异引起的。 NF1蛋白-蛋白相互作用(PPI)的定义一直很困难,而且缺乏复制性,因此很难定义调节其功能的结合伴侣。我们创建了一个新颖的串联亲和纯化(TAP)标签,该标签按帧克隆到全长鼠Nf1 cDNA(mNf1)的3'端。我们显示该cDNA是功能性的,并表达神经纤维蛋白,His-Tag,并可以纠正NF1空HEK293细胞中的p-ERK / ERK比。我们使用该亲和标签纯化了带有Strep-Tactin ® XT珠的结合伴侣,随后通过质谱(MS)对其进行了鉴定。我们发现标记的mNf1可以亲和纯化人神经纤维蛋白,反之亦然,表明神经纤维蛋白寡聚。我们确定与神经纤维蛋白的相互作用具有高置信度的其他21种蛋白质。在对这21种蛋白质进行Metacore网络分析后,有8种出现在同一网络中,主要是由雌激素受体调节的角蛋白。以前,我们已经证明神经纤维蛋白水平负调节角蛋白的表达。在这里,我们通过药理学抑制作用表明这独立于Ras信号传导,因为抑制剂selumetinib和雷帕霉素不会改变角蛋白的表达。神经纤维蛋白寡聚和结合伴侣的进一步表征可以帮助发现Ras调节以外的新神经纤维蛋白功能,从而产生新的药物靶标。

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