Department of Chemistry, University of Kansas, Lawrence, Kansas 66045, United States.
Biochemistry. 2011 Oct 11;50(40):8722-32. doi: 10.1021/bi200875p. Epub 2011 Sep 19.
Mapping the structured and disordered regions and identifying disorder-to-order transitions are essential to understanding intrinsically disordered proteins (IDPs). One technique that can provide such information is H/D exchange coupled with mass spectrometry (H/D-MS). To explore the feasibility of H/D-MS for mapping disordered and ordered regions in IDPs, we undertook a systematic evaluation of an unstructured protein, a molten globular protein, and the well-folded complex of the two proteins. Most segments of the unstructured protein, ACTR (activator of thyroid and retinoid receptors, NCOA3_HUMAN, residues 1018-1088), exchange at rates consistent with its assignment as an unstructured protein, but there is slight protection in regions that become helical in the ACTR-CBP complex. The molten globular protein, CBP (the nuclear coactivator binding domain of the CREB binding protein, CBP_MOUSE, residues 2059-2117), is moderately protected from exchange, and the protection is nearly uniform across the length of the protein. The uniformity arises because of rapid interconversion between an ensemble of folded conformers and an ensemble of unstructured conformers. Rapid interconversion causes the H/D exchange kinetics to be dominated by exchange by molecules in unstructured conformations. For the folded ACTR-CBP complex, the exchange data provide a qualitatively accurate description of the complex. Our results provide a useful framework to use in the interpretation of H/D-MS data of intrinsically disordered proteins.
绘制结构域和无规卷曲区域,并鉴定无规卷曲到有序结构的转变,对于理解无规卷曲蛋白质(IDP)至关重要。一种能够提供此类信息的技术是氢氘交换结合质谱(H/D-MS)。为了探索 H/D-MS 用于绘制 IDP 中无规卷曲和有序区域的可行性,我们对一种无规卷曲蛋白质、一种熔融球蛋白以及这两种蛋白质的折叠复合物进行了系统评估。无规卷曲蛋白质 ACTR(甲状腺和视黄酸受体激活蛋白,NCOA3_HUMAN,残基 1018-1088)的大多数片段的交换速率与其无规卷曲蛋白质的归属一致,但在 ACTR-CBP 复合物中形成螺旋的区域有轻微的保护。熔融球蛋白 CBP(CREB 结合蛋白的核共激活剂结合域,CBP_MOUSE,残基 2059-2117)的交换受到适度保护,并且保护几乎在整个蛋白质长度上均匀分布。这种均匀性是由于折叠构象和无规卷曲构象之间的快速互变引起的。快速互变导致 H/D 交换动力学主要由无规卷曲构象中的分子交换决定。对于折叠的 ACTR-CBP 复合物,交换数据提供了对复合物的定性准确描述。我们的结果为解释无规卷曲蛋白质的 H/D-MS 数据提供了有用的框架。