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增强的免疫沉淀技术用于鉴定 RNA 结合蛋白的相互作用伙伴:乳腺上皮细胞中的 IGF2BP1 相互作用。

Enhanced immunoprecipitation techniques for the identification of RNA-binding protein partners: IGF2BP1 interactions in mammary epithelial cells.

机构信息

McArdle Laboratory for Cancer Research, University of Wisconsin-Madison, Madison, Wisconsin, USA.

Department of Biomedical Engineering, University of Wisconsin-Madison, Madison, Wisconsin, USA.

出版信息

J Biol Chem. 2022 Mar;298(3):101649. doi: 10.1016/j.jbc.2022.101649. Epub 2022 Jan 29.

Abstract

RNA-binding proteins (RBPs) regulate the expression of large cohorts of RNA species to produce programmatic changes in cellular phenotypes. To describe the function of RBPs within a cell, it is key to identify their mRNA-binding partners. This is often done by crosslinking nucleic acids to RBPs, followed by chemical release of the nucleic acid fragments for analysis. However, this methodology is lengthy, which involves complex processing with attendant sample losses, thus large amounts of starting materials and prone to artifacts. To evaluate potential alternative technologies, we tested "exclusion-based" purification of immunoprecipitates (IFAST or SLIDE) and report here that these methods can efficiently, rapidly, and specifically isolate RBP-RNA complexes. The analysis requires less than 1% of the starting material required for techniques that include crosslinking. Depending on the antibody used, 50% to 100% starting protein can be retrieved, facilitating the assay of endogenous levels of RBPs; the isolated ribonucleoproteins are subsequently analyzed using standard techniques, to provide a comprehensive portrait of RBP complexes. Using exclusion-based techniques, we show that the mRNA-binding partners for RBP IGF2BP1 in cultured mammary epithelial cells are enriched in mRNAs important for detoxifying superoxides (specifically glutathione peroxidase [GPX]-1 and GPX-2) and mRNAs encoding mitochondrial proteins. We show that these interactions are functionally significant, as loss of function of IGF2BP1 leads to destabilization of GPX mRNAs and reduces mitochondrial membrane potential and oxygen consumption. We speculate that this underlies a consistent requirement for IGF2BP1 for the expression of clonogenic activity in vitro.

摘要

RNA 结合蛋白 (RBP) 通过调控大量 RNA 种类的表达,从而在细胞表型中产生程序化的变化。为了描述 RBP 在细胞内的功能,关键是要鉴定它们的 mRNA 结合伙伴。这通常是通过将核酸交联到 RBP 上来完成的,然后通过化学方法释放核酸片段进行分析。然而,这种方法冗长且复杂,涉及到大量的样品损失,因此需要大量的起始材料,并且容易产生假象。为了评估潜在的替代技术,我们测试了基于排除的免疫沉淀(IFAST 或 SLIDE)纯化,并在此报告这些方法可以有效地、快速地、特异性地分离 RBP-RNA 复合物。与包括交联在内的技术相比,该分析仅需要不到 1%的起始材料。根据所用抗体的不同,可以回收 50%至 100%的起始蛋白,这有助于检测内源性 RBP 水平;随后使用标准技术分析分离的核糖核蛋白,以提供 RBP 复合物的全面特征。使用基于排除的技术,我们表明,在培养的乳腺上皮细胞中,RBP IGF2BP1 的 mRNA 结合伙伴在超氧化物解毒(特别是谷胱甘肽过氧化物酶 [GPX]-1 和 GPX-2)和编码线粒体蛋白的 mRNA 中富集。我们表明这些相互作用具有功能意义,因为 IGF2BP1 的功能丧失会导致 GPX mRNA 的不稳定性,并降低线粒体膜电位和耗氧量。我们推测,这是 IGF2BP1 在体外表达克隆形成活性的一致需求的基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c20b/8891971/15f486ad33c0/gr1.jpg

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