Yaqin Zhao, Jiuying Feng, Aihua Liang, Binsheng Yang
Key Laboratory of Chemical Biology and Molecular Engineering of Ministry of Education, Institute of Molecular Science, Shanxi University, Taiyuan 030006, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2009 Jan;71(5):1756-61. doi: 10.1016/j.saa.2008.06.029. Epub 2008 Jul 5.
Centrin is a member of the EF-hand superfamily that plays critical role in the centrosome duplication and separation. In the present paper, we characterized properties of metal ions binding to Euplotes octocarinatus centrin (EoCen) by fluorescence spectra and circular dichroism (CD) spectra. Changes of fluorescence spectra and alpha-helix contents of EoCen proved that Tb(3+) and Ca(2+) induced great conformational changes of EoCen resulting in exposing hydrophobic surfaces. At pH 7.4, Ca(2+) (and Tb(3+)) bond with EoCen at the ratio of 4:1. Equilibrium experiment indicated that Ca(2+) and Tb(3+) exhibited different binding capabilities for C- and N-terminal domains of protein. C-terminal domain bond with Ca(2+) or Tb(3+) approximately 100-fold more strongly than N-terminal. Aromatic residue-sensitized Tb(3+) energy transfer suggested that site IV bond to Tb(3+) or Ca(2+) more strongly than site III. Based on fluorescence titration curves, we reckoned the conditional binding constants of EoCen site IV quantitatively to be K(IV)=(1.23+/-0.51)x10(8)M(-1) and K(IV)=(6.82+/-0.33)x10(5)M(-1) with Tb(3+) and Ca(2+), respectively. Metal ions bond to EoCen in the order of IV>III>II, I.
中心蛋白是EF手超家族的成员,在中心体复制和分离中起关键作用。在本文中,我们通过荧光光谱和圆二色性(CD)光谱表征了与八肋游仆虫中心蛋白(EoCen)结合的金属离子的特性。EoCen荧光光谱和α-螺旋含量的变化证明,Tb(3+)和Ca(2+)诱导EoCen发生了巨大的构象变化,导致疏水表面暴露。在pH 7.4时,Ca(2+)(和Tb(3+))与EoCen以4:1的比例结合。平衡实验表明,Ca(2+)和Tb(3+)对蛋白质的C端和N端结构域表现出不同的结合能力。C端结构域与Ca(2+)或Tb(3+)的结合强度比N端大约强100倍。芳香族残基敏化的Tb(3+)能量转移表明,位点IV与Tb(3+)或Ca(2+)的结合比位点III更强。基于荧光滴定曲线,我们定量计算出EoCen位点IV与Tb(3+)和Ca(2+)的条件结合常数分别为K(IV)=(1.23±0.51)x10(8)M(-1)和K(IV)=(6.82±0.33)x10(5)M(-1)。金属离子与EoCen的结合顺序为IV>III>II,I。