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Differential HDAC1/2 network analysis reveals a role for prefoldin/CCT in HDAC1/2 complex assembly

机译:差分HDAC1 / 2网络分析揭示了prefoldin / CCT在HDAC1 / 2复杂装配中的作用

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摘要

HDAC1 and HDAC2 are components of several corepressor complexes (NuRD, Sin3, CoREST and MiDAC) that regulate transcription by deacetylating histones resulting in a more compact chromatin environment. This limits access of transcriptional machinery to genes and silences transcription. While using an AP-MS approach to map HDAC1/2 protein interaction networks, we noticed that N-terminally tagged versions of HDAC1 and HDAC2 did not assemble into HDAC corepressor complexes as expected, but instead appeared to be stalled with components of the prefoldin-CCT chaperonin pathway. These N-terminally tagged HDACs were also catalytically inactive. In contrast to the N-terminally tagged HDACs, C-terminally tagged HDAC1 and HDAC2 captured complete histone deacetylase complexes and the purified proteins had deacetylation activity that could be inhibited by SAHA (Vorinostat), a Class I/II HDAC inhibitor. This tag-mediated reprogramming of the HDAC1/2 protein interaction network suggests a mechanism whereby HDAC1 is first loaded into the CCT complex by prefoldin to complete folding, and then assembled into active, functional HDAC complexes. Imaging revealed that the prefoldin subunit VBP1 colocalises with nuclear HDAC1, suggesting that delivery of HDAC1 to the CCT complex happens in the nucleus.
机译:HDAC1和HDAC2是几种核心加压复合物(NuRD,Sin3,CoREST和MiDAC)的组成部分,它们通过使组蛋白脱乙酰基来调节转录,从而形成更紧凑的染色质环境。这限制了转录机制对基因的访问,并使转录沉默。在使用AP-MS方法绘制HDAC1 / 2蛋白相互作用网络图时,我们注意到HDAC1和HDAC2的N末端标记版本没有按预期组装成HDAC corepressor复合物,而是似乎被prefoldin- CCT伴侣蛋白途径。这些N末端标记的HDAC也具有催化活性。与N末端标记的HDAC相比,C末端标记的HDAC1和HDAC2捕获了完整的组蛋白脱乙酰基酶复合物,纯化的蛋白质具有脱乙酰基活性,可以被I / II类HDAC抑制剂SAHA(Vorinostat)抑制。 HDAC1 / 2蛋白相互作用网络的这种标签介导的重编程提示了一种机制,其中HDAC1首先通过prefoldin加载到CCT复合物中以完成折叠,然后组装成有功能的功能性HDAC复合物。成像显示前折叠蛋白亚基VBP1与核HDAC1共定位,表明将HDAC1递送至CCT复合物发生在细胞核中。

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