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A Structured Workflow for Mapping Human Sin3 Histone Deacetylase Complex Interactions Using Halo-MudPIT Affinity-Purification Mass Spectrometry

机译:使用Halo-MudPIT亲和纯化质谱分析人Sin3组蛋白脱乙酰基酶复杂相互作用的结构化工作流程

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摘要

Although a variety of affinity purification mass spectrometry (AP-MS) strategies have been used to investigate complex interactions, many of these are susceptible to artifacts because of substantial overexpression of the exogenously expressed bait protein. Here we present a logical and systematic workflow that uses the multifunctional Halo tag to assess the correct localization and behavior of tagged subunits of the Sin3 histone deacetylase complex prior to further AP-MS analysis. Using this workflow, we modified our tagging/expression strategy with 21.7% of the tagged bait proteins that we constructed, allowing us to quickly develop validated reagents. Specifically, we apply the workflow to map interactions between stably expressed versions of the Sin3 subunits SUDS3, SAP30, or SAP30L and other cellular proteins. Here we show that the SAP30 and SAP30L paralogues strongly associate with the core Sin3 complex, but SAP30L has unique associations with the proteasome and the myelin sheath. Next, we demonstrate an advancement of the complex NSAF (cNSAF) approach, in which normalization to the scaffold protein SIN3A accounts for variations in the proportion of each bait capturing Sin3 complexes and allows a comparison among different baits capturing the same protein complex. This analysis reveals that although the Sin3 subunit SUDS3 appears to be used in both SIN3A and SIN3B based complexes, the SAP30 subunit is not used in SIN3B based complexes. Intriguingly, we do not detect the Sin3 subunits SAP18 and SAP25 among the 128 high-confidence interactions identified, suggesting that these subunits may not be common to all versions of the Sin3 complex in human cells. This workflow provides the framework for building validated reagents to assemble quantitative interaction networks for chromatin remodeling complexes and provides novel insights into focused protein interaction networks.
机译:尽管已使用多种亲和纯化质谱(AP-MS)策略来研究复杂的相互作用,但由于外源表达的诱饵蛋白的大量过表达,其中许多易受伪影的影响。在这里,我们提出了一种逻辑和系统的工作流程,该流程使用多功能Halo标签在进一步进行AP-MS分析之前评估Sin3组蛋白脱乙酰基酶复合物的标记亚基的正确定位和行为。使用该工作流程,我们用构建的21.7%的诱饵蛋白修改了标记/表达策略,从而使我们能够快速开发经过验证的试剂。具体而言,我们将工作流应用于映射Sin3亚基SUDS3,SAP30或SAP30L的稳定表达版本与其他细胞蛋白之间的相互作用。在这里,我们显示SAP30和SAP30L旁系同源物与核心Sin3复合物密切相关,但SAP30L与蛋白酶体和髓鞘之间具有独特的关联。接下来,我们展示了复合物NSAF(cNSAF)方法的进步,其中对支架蛋白SIN3A的归一化说明了每种诱捕Sin3复合物的诱饵比例的变化,并允许在捕获相同蛋白复合物的不同诱饵之间进行比较。该分析表明,尽管Sin3亚基SUDS3似乎已在基于SIN3A和SIN3B的复合物中使用,但SAP30亚基未在基于SIN3B的复合物中使用。有趣的是,我们未在所识别的128个高可信度相互作用中检测到Sin3亚基SAP18和SAP25,这表明这些亚基可能不是人类细胞中所有Sin3复合体版本所共有的。该工作流程提供了构建经过验证的试剂以组装用于染色质重塑复合物的定量相互作用网络的框架,并提供了对聚焦蛋白相互作用网络的新颖见解。

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