Wang Zhijun, Feng Yanlong, Song Tiantian, Su Jie, Fu Mengjie, Lei Haiying
Department of Chemistry, Changzhi University Changzhi 046011 China
Department of Life Sciences, Changzhi University Changzhi 046011 China
RSC Adv. 2021 Nov 9;11(57):36098-36104. doi: 10.1039/d1ra06627g. eCollection 2021 Nov 4.
L. centrin (Zmcen) is a 20 kDa calcium binding protein also known as caltractin. We used melittin as a simulated target peptide and examined its interaction with Zmcen to understand the structure of Zmcen and the mechanism of interaction with downstream target peptides. The circular dichroism spectrum was used to characterize the typical α-helix structure of Zmcen, and after combining with melittin, the α-helix content of Zmcen changed. Trp residues in melittin were used as fluorescent probes to monitor changes in the conformation of Zmcen upon melittin binding. The Trp residues in melittin gradually shifted from polar environments to nonpolar environments, fluorescence peaks were significantly blueshifted, and the intensity of the fluorescence peak increased. These results showed that Zmcen and melittin combined in a 1 : 1 ratio to form a new complex. The influence of metal ions on binding was also investigated. The combination of Ca and Zmcen helped expose more hydrophobic regions of Zmcen and promoted the binding of Zmcen and melittin. In addition, 2--toluidinylnaphthalene-6-sulfonate (TNS) was used as a hydrophobic probe to bind to Zmcen and Zmcen occupied the hydrophobic area on the surface of Zmcen, thereby weakening the binding of Zmcen and melittin. The Biacore experiment was used to calculate the equilibrium constant ( ) for the dissociation of Zmcen and melittin. Melittin mainly binds to C-Zmcen but not to N-Zmcen, indicating that the binding site of melittin on Zmcen was mainly at the C-terminus of Zmcen.
中心蛋白L(Zmcen)是一种20 kDa的钙结合蛋白,也被称为钙牵蛋白。我们使用蜂毒素作为模拟靶肽,并研究其与Zmcen的相互作用,以了解Zmcen的结构及其与下游靶肽的相互作用机制。利用圆二色光谱表征Zmcen的典型α-螺旋结构,与蜂毒素结合后,Zmcen的α-螺旋含量发生变化。以蜂毒素中的色氨酸残基作为荧光探针,监测蜂毒素结合后Zmcen构象的变化。蜂毒素中的色氨酸残基逐渐从极性环境转移到非极性环境,荧光峰显著蓝移,荧光峰强度增加。这些结果表明,Zmcen与蜂毒素以1∶1的比例结合形成新的复合物。还研究了金属离子对结合的影响。Ca与Zmcen的结合有助于暴露Zmcen更多的疏水区域,促进Zmcen与蜂毒素的结合。此外,使用2-甲苯胺基萘-6-磺酸盐(TNS)作为疏水探针与Zmcen结合,Zmcen占据了Zmcen表面的疏水区域,从而削弱了Zmcen与蜂毒素的结合。利用Biacore实验计算Zmcen与蜂毒素解离的平衡常数( )。蜂毒素主要与C-Zmcen结合,而不与N-Zmcen结合,这表明蜂毒素在Zmcen上的结合位点主要在Zmcen的C末端。