Ogut O, Jin J P
Department of Medical Biochemistry, University of Calgary Faculty of Medicine, Alberta, Canada.
Biochemistry. 1996 Dec 24;35(51):16581-90. doi: 10.1021/bi961712y.
A repeating metal-binding (Cu2+ > Ni2+ > Zn2+ approximately Co2+) sequence [HE/AEAH]4 (Tx) has been recently identified in the NH2-terminal variable region of troponin T (TnT) isoforms specifically expressed in the breast but not leg muscles of the avian orders of Galliformes and Craciformes [Jin, J.-P., & Smillie, L. B. (1994) FEBS Lett. 341, 135-140]. In the present study, two expression plasmids were constructed to produce chicken TnT1 NH2-terminal fragments of 47 (N47) or 165 (N165) amino acids containing the Tx metal-binding cluster. The recombinant protein/peptide was expressed in Escherichia coli BL21(DE3)pLysS and purified by a highly effective Zn(2+)-affinity chromatography method. Amino acid analyses, NH2-terminal peptide sequencing, mass spectrometry and immunological identification confirmed the authenticity of the genetically engineered TnT fragments. In the presence of 2,2,2-trifluoroethanol, transition metals had significant effects on the secondary structure of TnT fragment N47, as shown by circular dichroism. N165 in non-denaturing buffer demonstrated alpha-helical content comparable to previous data from rabbit fast skeletal TnT fragment T1. Zn(2+)-binding avidity of the metal-binding TnT and its fragments demonstrated tertiary relationships between the NH2-terminal variable region and the COOH-terminal segment of the intact TnT protein. Solid-phase protein-binding assays established that Zn(2+)-binding to the Tx cluster induces epitopic structure changes in this NH2-terminal segment, further affecting other epitopic structures of intact TnT as well as the function of TnT's tropomyosin binding-sites. The results demonstrate that metal ion-binding to the Tx cluster reconfigures the overall conformation of TnT through structural relationships between the NH2-terminal variable region and other domains of the intact TnT molecule. Accordingly, the developmental and/or muscle type specific NH2-terminal structure of TnT isoforms may modulate the Ca(2+)-activation of muscle contraction.
最近在肌钙蛋白T(TnT)亚型的NH2末端可变区中鉴定出一个重复的金属结合序列[HE/AEAH]4(Tx)(Cu2+>Ni2+>Zn2+,Co2+大致相同),该序列在鸡形目和秧鸡形目鸟类的胸肌而非腿肌中特异性表达[Jin,J.-P.,&Smillie,L.B.(1994)FEBS Lett. 341,135-140]。在本研究中,构建了两个表达质粒以产生含有Tx金属结合簇的47个(N47)或165个(N165)氨基酸的鸡TnT1 NH2末端片段。重组蛋白/肽在大肠杆菌BL21(DE3)pLysS中表达,并通过高效的Zn(2+)亲和色谱法纯化。氨基酸分析、NH2末端肽测序、质谱和免疫鉴定证实了基因工程TnT片段的真实性。如圆二色性所示,在2,2,2-三氟乙醇存在下,过渡金属对TnT片段N47的二级结构有显著影响。在非变性缓冲液中的N165显示出与先前来自兔快速骨骼肌TnT片段T1的数据相当的α-螺旋含量。金属结合TnT及其片段的Zn(2+)结合亲和力证明了完整TnT蛋白的NH2末端可变区与COOH末端片段之间的三级关系。固相蛋白结合试验表明,Zn(2+)与Tx簇的结合会诱导该NH2末端片段的表位结构变化,进而影响完整TnT的其他表位结构以及TnT原肌球蛋白结合位点的功能。结果表明,金属离子与Tx簇的结合通过完整TnT分子的NH2末端可变区与其他结构域之间的结构关系重新配置了TnT的整体构象。因此,TnT亚型的发育和/或肌肉类型特异性NH2末端结构可能会调节肌肉收缩的Ca(2+)激活。