首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Cotranslocational processing of the protein substrate calmodulin by an AAA+ unfoldase occurs via unfolding and refolding intermediates
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PNAS Plus: Cotranslocational processing of the protein substrate calmodulin by an AAA+ unfoldase occurs via unfolding and refolding intermediates

机译:PNAS Plus:AAA +解折叠酶对蛋白质底物钙调蛋白的共移位处理是通过解折叠和再折叠中间体进行的

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摘要

Protein remodeling by AAA+ enzymes is central for maintaining proteostasis in a living cell. However, a detailed structural description of how this is accomplished at the level of the substrate molecules that are acted upon is lacking. Here, we combine chemical cross-linking and methyl transverse relaxation-optimized NMR spectroscopy to study, at atomic resolution, the stepwise unfolding and subsequent refolding of the two-domain substrate calmodulin by the VAT AAA+ unfoldase from Thermoplasma acidophilum. By engineering intermolecular disulphide bridges between the substrate and VAT we trap the substrate at different stages of translocation, allowing structural studies throughout the translocation process. Our results show that VAT initiates substrate translocation by pulling on intrinsically unstructured N or C termini of substrate molecules without showing specificity for a particular amino acid sequence. Although the B1 domain of protein G is shown to unfold cooperatively, translocation of calmodulin leads to the formation of intermediates, and these differ on an individual domain level in a manner that depends on whether pulling is from the N or C terminus. The approach presented generates an atomic resolution picture of substrate unfolding and subsequent refolding by unfoldases that can be quite different from results obtained via in vitro denaturation experiments.
机译:AAA +酶对蛋白质的重塑对于维持活细胞中的蛋白稳态至关重要。但是,缺乏关于如何在被作用的底物分子水平上实现这一点的详细结构描述。在这里,我们结合化学交联和甲基横向弛豫优化的NMR光谱,以原子分辨率研究嗜酸嗜热菌的VAT AAA +解折叠酶对两个域底物钙调蛋白的逐步展开和随后的重新折叠。通过工程化底物和增值税之间的分子间二硫键,我们将底物捕获在易位的不同阶段,从而在整个易位过程中进行结构研究。我们的结果表明,VAT通过拉动底物分子的固有非结构化N或C末端来启动底物易位,而不显示对特定氨基酸序列的特异性。尽管显示了蛋白G的B1结构域协同展开,但钙调蛋白的移位导致形成中间体,并且这些中间体在单个结构域水平上的不同方式取决于是否从N或C末端拉出。提出的方法可生成底物展开和随后通过展开酶重新折叠的原子分辨率图,该图可能与通过体外变性实验获得的结果完全不同。

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