Randles Lucy G, Batey Sarah, Steward Annette, Clarke Jane
Cambridge University Chemical Laboratory, MRC Centre for Protein Engineering, Cambridge, United Kingdom.
Biophys J. 2008 Jan 15;94(2):622-8. doi: 10.1529/biophysj.107.119123. Epub 2007 Sep 21.
Multidomain proteins account for over two-thirds of the eukaryotic genome. Although there have been extensive studies into the biophysical properties of isolated domains, few have investigated how the domains interact. Spectrin is a well-characterized multidomain protein with domains linked in tandem array by contiguous helices. Several of these domains have been shown to be stabilized by their neighbors. Until now, this stabilization has been attributed to specific interactions between the natural neighbors, however we have recently observed that nonnatural neighboring domains can also induce a significant amount of stabilization. Here we investigate this nonnative stabilizing effect. We created spectrin-titin domain pairs of both spectrin R16 and R17 with a single titin I27 domain at either the N- or the C-terminus and found that spectrin domains are significantly stabilized, through slowed unfolding, by nonnative interactions at the C-terminus only. Of particular importance, we show that specific interactions between natural folded neighbors at either terminus confer even greater stability by additionally increasing the folding rate constants. We demonstrate that it is possible to distinguish between natural stabilizing interactions and nonspecific stabilizing effects through examination of the kinetics of well chosen mutant proteins. This work adds to the complexity of studying multidomain proteins.
多结构域蛋白占真核生物基因组的三分之二以上。尽管对分离结构域的生物物理特性进行了广泛研究,但很少有人研究这些结构域之间是如何相互作用的。血影蛋白是一种特征明确的多结构域蛋白,其结构域通过连续的螺旋以串联阵列的形式相连。其中一些结构域已被证明会被其相邻结构域稳定。到目前为止,这种稳定作用一直被归因于天然相邻结构域之间的特异性相互作用,然而我们最近观察到非天然相邻结构域也能诱导大量的稳定作用。在此我们研究这种非天然稳定作用。我们构建了血影蛋白R16和R17与单个肌联蛋白I27结构域的结构域对,肌联蛋白I27结构域位于N端或C端,结果发现血影蛋白结构域仅通过C端的非天然相互作用,通过减缓解折叠而显著稳定。特别重要的是,我们表明,两端天然折叠的相邻结构域之间的特异性相互作用通过额外增加折叠速率常数赋予了更大的稳定性。我们证明,通过检查精心选择的突变蛋白的动力学,可以区分天然稳定相互作用和非特异性稳定作用。这项工作增加了研究多结构域蛋白的复杂性。