Gibrat Gabriel, Hoa Gaston Hui Bon, Craescu Constantin T, Assairi Liliane, Blouquit Yves, Annighöfer Burkhard, May Roland P, Bellissent-Funel Marie-Claire
Laboratoire Léon Brillouin, CEA/CNRS, Saclay, France.
Inserm U779, Le Kremlin-Bicêtre, France.
Biochim Biophys Acta. 2014 Sep;1844(9):1560-8. doi: 10.1016/j.bbapap.2014.05.007. Epub 2014 May 24.
Apo-calmodulin, a small soluble mainly α protein, is a calcium-dependent protein activator. Calcium binding affects the calmodulin conformation but also its stability. Calcium free form unfolds between 40 and 80°C, whereas the calcium-saturated form is stable up to temperatures as high as 100°C, forbidding comparison of the thermal unfolding pathways of the two forms. Thus, this paper focuses especially on the conformation of pressure-induced unfolding states of both forms of calmodulin, by combining small-angle neutron scattering (SANS) with biophysical techniques such as tyrosines and ANS fluorescence. In contrast to heat denaturation (Gibrat et al., BBA, 2012), the pressure denaturation of calmodulin is reversible up to pressures of 3000bar (300MPa). A pressure-induced compact intermediate state has been found for the two calmodulin forms, but their unfolding pathways are different. A domain compaction and an increase of the ANS fluorescence of holo form have been evidenced. On the contrary, a domain dilatation and an ANS fluorescence decrease have been found for the apo form. The pressure induced an increase of the interdomain distance for both calmodulin forms, suggesting that the central linker of calmodulin is flexible in solution.
脱辅基钙调蛋白是一种主要为α结构的小可溶性蛋白,是一种钙依赖性蛋白激活剂。钙结合不仅会影响钙调蛋白的构象,还会影响其稳定性。无钙形式在40至80°C之间展开,而钙饱和形式在高达100°C的温度下仍保持稳定,这使得无法比较两种形式的热展开途径。因此,本文通过将小角中子散射(SANS)与酪氨酸和ANS荧光等生物物理技术相结合,特别关注两种形式钙调蛋白压力诱导展开状态的构象。与热变性(吉布拉特等人,《生物化学与生物物理学报》,2012年)不同,钙调蛋白在高达3000巴(300兆帕)的压力下的压力变性是可逆的。已发现两种钙调蛋白形式都存在压力诱导的紧密中间状态,但它们的展开途径不同。已证明全蛋白形式存在结构域压缩和ANS荧光增加。相反,脱辅基形式则出现结构域扩张和ANS荧光降低。压力导致两种钙调蛋白形式的结构域间距离增加,这表明钙调蛋白的中央连接子在溶液中是灵活的。