Lindström Ida, Dogan Jakob
Department of Biochemistry and Biophysics, Stockholm University , 10691 Stockholm, Sweden.
Biochemistry. 2017 Aug 15;56(32):4145-4153. doi: 10.1021/acs.biochem.7b00428. Epub 2017 Aug 3.
A significant fraction of the eukaryotic proteome consists of proteins that are either partially or completely disordered under native-like conditions. Intrinsically disordered proteins (IDPs) are common in protein-protein interactions and are involved in numerous cellular processes. Although many proteins have been identified as disordered, much less is known about the binding mechanisms of the coupled binding and folding reactions involving IDPs. Here we have analyzed the rate-limiting transition state for binding between the TAZ1 domain of CREB binding protein and the intrinsically disordered transactivation domain of STAT2 (TAD-STAT2) by site-directed mutagenesis and kinetic experiments (Φ-value analysis) and found that the native protein-protein binding interface is not formed at the transition state for binding. Instead, native hydrophobic binding interactions form late, after the rate-limiting barrier has been crossed. The association rate constant in the absence of electrostatic enhancement was determined to be rather high. This is consistent with the Φ-value analysis, which showed that there are few or no obligatory native contacts. Also, linear free energy relationships clearly demonstrate that native interactions are cooperatively formed, a scenario that has usually been observed for proteins that fold according to the so-called nucleation-condensation mechanism. Thus, native hydrophobic binding interactions at the rate-limiting transition state for association between TAD-STAT2 and TAZ1 are not a requirement, which is generally in agreement with previous findings on other IDP systems and might be a common mechanism for IDPs.
相当一部分真核生物蛋白质组由在类天然条件下部分或完全无序的蛋白质组成。内在无序蛋白质(IDP)在蛋白质 - 蛋白质相互作用中很常见,并参与众多细胞过程。尽管许多蛋白质已被鉴定为无序,但对于涉及IDP的耦合结合和折叠反应的结合机制了解得要少得多。在这里,我们通过定点诱变和动力学实验(Φ值分析)分析了CREB结合蛋白的TAZ1结构域与STAT2的内在无序反式激活结构域(TAD - STAT2)之间结合的限速过渡态,发现天然蛋白质 - 蛋白质结合界面在结合的过渡态时并未形成。相反,天然疏水结合相互作用在越过限速屏障后较晚形成。在没有静电增强的情况下,缔合速率常数被确定为相当高。这与Φ值分析一致,该分析表明几乎没有或不存在必需的天然接触。此外,线性自由能关系清楚地表明天然相互作用是协同形成的,这种情况通常在根据所谓的成核 - 凝聚机制折叠的蛋白质中观察到。因此,TAD - STAT2与TAZ1缔合的限速过渡态处的天然疏水结合相互作用并非必需,这总体上与之前关于其他IDP系统的发现一致,并且可能是IDP的一种常见机制。