Macakova Eva, Kopecka Miroslava, Kukacka Zdenek, Veisova Dana, Novak Petr, Man Petr, Obsil Tomas, Obsilova Veronika
Academy of Sciences of the Czech Republic, Prague, Czech Republic.
Biochim Biophys Acta. 2013 Oct;1830(10):4491-9. doi: 10.1016/j.bbagen.2013.05.025. Epub 2013 May 29.
Trehalases are highly conserved enzymes catalyzing the hydrolysis of trehalose in a wide range of organisms. The activity of yeast neutral trehalase Nth1 is regulated in a 14-3-3- and a calcium-dependent manner. The Bmh proteins (the yeast 14-3-3 isoforms) recognize phosphorylated Nth1 and enhance its enzymatic activity through an unknown mechanism.
To investigate the structural basis of interaction between Nth1 and Bmh1, we used hydrogen/deuterium exchange coupled to mass spectrometry, circular dichroism spectroscopy and homology modeling to identify structural changes occurring upon the complex formation.
Our results show that the Bmh1 protein binding affects structural properties of several regions of phosphorylated Nth1: the N-terminal segment containing phosphorylation sites responsible for Nth1 binding to Bmh, the region containing the calcium binding domain, and segments surrounding the active site of the catalytic trehalase domain. The complex formation between Bmh1 and phosphorylated Nth1, however, is not accompanied by the change in the secondary structure composition but rather the change in the tertiary structure.
The 14-3-3 protein-dependent activation of Nth1 is based on the structural change of both the calcium binding domain and the catalytic trehalase domain. These changes likely increase the accessibility of the active site, thus resulting in Nth1 activation.
The results presented here provide a structural view of the 14-3-3 protein-dependent activation of yeast neutral trehalase Nth1, which might be relevant to understand the process of Nth1 activity regulation as well as the role of the 14-3-3 proteins in the regulation of other enzymes.
海藻糖酶是一类高度保守的酶,可催化多种生物体中海藻糖的水解。酵母中性海藻糖酶Nth1的活性受14-3-3蛋白和钙的依赖性调节。Bmh蛋白(酵母14-3-3亚型)识别磷酸化的Nth1,并通过未知机制增强其酶活性。
为了研究Nth1与Bmh1之间相互作用的结构基础,我们使用氢/氘交换结合质谱、圆二色光谱和同源建模来确定复合物形成时发生的结构变化。
我们的结果表明,Bmh1蛋白结合会影响磷酸化Nth1几个区域的结构特性:包含负责Nth1与Bmh结合的磷酸化位点的N端片段、包含钙结合结构域的区域以及催化海藻糖酶结构域活性位点周围的片段。然而,Bmh1与磷酸化Nth1之间的复合物形成并未伴随着二级结构组成的变化,而是三级结构的变化。
Nth1的14-3-3蛋白依赖性激活基于钙结合结构域和催化海藻糖酶结构域的结构变化。这些变化可能增加活性位点的可及性,从而导致Nth1激活。
本文给出的结果提供了酵母中性海藻糖酶Nth1的14-3-3蛋白依赖性激活的结构观点,这可能有助于理解Nth1活性调节过程以及14-3-3蛋白在其他酶调节中的作用。