Bobst Cedric E, Zhang Mingxuan, Kaltashov Igor A
Department of Chemistry, Lederle Graduate Research Tower, University of Massachusetts Amherst, Amherst, MA 01003, USA.
J Mol Biol. 2009 May 22;388(5):954-67. doi: 10.1016/j.jmb.2009.03.044. Epub 2009 Mar 24.
Transferrin (Tf) is an enigmatic metalloprotein that exhibits a profound conformational change upon binding of ferric ion and a synergistic anion (oxalate or carbonate). While the apo and holo forms of the protein have well-defined and stable conformations termed "open" and "closed," certain aspects of Tf behavior imply the existence of alternative protein states. In this work, hydrogen/deuterium exchange was used in combination with mass spectrometry to map solvent-accessible surfaces of the iron-bound and iron-free forms of the N-terminal lobe of human serum Tf at both neutral and endosomal pH levels. While the deuterium uptake is significantly decelerated in the iron-bound state of the protein (compared with the apo form) at neutral pH, the changes are distributed very unevenly across the protein sequence. Protein segments exhibiting most noticeable gain in protection map onto the interdomain cleft region housing the iron-binding site. At the same time, protection levels of segments located in the bulk of the protein are largely unaffected by the presence of the metal. These observations are fully consistent with the notion of a metal-induced switch from the open to the closed conformation with solvent-inaccessible interdomain cleft. However, differences in the exchange behavior between the apo and holo forms of Tf become much less noticeable at endosomal pH, including the segments located in the interdomain cleft region. Intriguingly, a significant patch in the cleft region becomes slightly less protected in the presence of the metal, suggesting that the holoprotein exists in the open conformation under these slightly acidic conditions. The existence of a noncanonical state of holoTf was postulated several years ago; however, this work provides, for the first time, conclusive evidence that such alternative states are indeed populated in solution.
转铁蛋白(Tf)是一种神秘的金属蛋白,在与铁离子和协同阴离子(草酸盐或碳酸盐)结合时会发生深刻的构象变化。虽然该蛋白的脱辅基和全蛋白形式具有明确且稳定的构象,分别称为“开放”和“封闭”,但Tf行为的某些方面暗示存在其他蛋白状态。在这项工作中,氢/氘交换与质谱联用,以绘制人血清Tf N端叶在中性和内体pH水平下铁结合和无铁形式的溶剂可及表面。在中性pH下,与脱辅基形式相比,蛋白的铁结合状态下氘摄取显著减速,但变化在整个蛋白序列中分布非常不均匀。在容纳铁结合位点的结构域间裂隙区域,表现出最显著保护增加的蛋白片段。同时,位于蛋白主体部分的片段的保护水平在很大程度上不受金属存在的影响。这些观察结果与金属诱导从开放构象转变为封闭构象且结构域间裂隙不可接近溶剂的概念完全一致。然而,在酸性内体pH下,Tf脱辅基和全蛋白形式之间的交换行为差异变得不那么明显,包括位于结构域间裂隙区域的片段。有趣的是,在金属存在下,裂隙区域的一个显著区域的保护略有降低,表明在这些微酸性条件下全蛋白以开放构象存在。几年前就推测存在全铁转铁蛋白的非经典状态;然而,这项工作首次提供了确凿证据,证明这种替代状态确实在溶液中存在。