Zhang Zhiling, Jin Jian-Ping, Root Douglas D
Department of Biological Sciences, Division of Biochemistry, University of North Texas, Denton, Texas 76203-5220, USA.
Biochemistry. 2004 Mar 9;43(9):2645-55. doi: 10.1021/bi035067o.
Numerous troponin T (TnT) isoforms are generated by alternative RNA splicing primarily in its N-terminal hypervariable region, but the functions of these isoforms are not completely understood. Here for the first time, we discovered that a chicken fast TnT isoform with a unique Tx motif (HEEAH)(n) binds calcium. The metal binding behavior of this TnT isoform was first investigated using terbium as a calcium analogue due to its more readily detectable fluorescence variation upon TnT binding. Both intact TnT and TnT N-terminal fragment (TnT N47) bound terbium with high affinity indicating that the N-terminal sequence was the site of binding. Since terbium often substitutes at calcium-binding sites, radioactive calcium was tested and found to bind both intact TnT and TnT N47. Fluorescence measurements using the calcium-sensitive fluorescent dye, calcium green 5N, confirmed that calcium bound to the tertiary complex of TnT and the tropomyosin dimer with a fast on-rate (10(6)-10(7) M(-1) s(-1)) as detected in stopped-flow analysis. Consistent with these observations, computational predictions suggest that TnT N47 might fold into an elongated structure with at least one high-affinity metal ion binding pocket comprised primarily of the Tx motif sequence and several lower affinity binding sites. These results suggest that TnT may play a role in modulating the calcium-mediated regulatory process of striated muscle contraction.
多种肌钙蛋白T(TnT)同工型主要通过其N端高变区的可变RNA剪接产生,但其功能尚未完全明确。在此,我们首次发现一种具有独特Tx基序(HEEAH)(n)的鸡快肌TnT同工型能结合钙离子。由于在TnT结合时其荧光变化更容易检测,因此首先使用铽作为钙类似物研究了这种TnT同工型的金属结合行为。完整的TnT和TnT N端片段(TnT N47)均以高亲和力结合铽,表明N端序列是结合位点。由于铽常取代钙结合位点,因此对放射性钙进行了测试,发现其能结合完整的TnT和TnT N47。使用钙敏感荧光染料钙绿5N进行的荧光测量证实,在停流分析中检测到钙以快速的结合速率(10(6)-10(7)M(-1)s(-1))结合到TnT和原肌球蛋白二聚体的三级复合物上。与这些观察结果一致,计算预测表明,TnT N47可能折叠成一种细长结构,具有至少一个主要由Tx基序序列组成的高亲和力金属离子结合口袋和几个低亲和力结合位点。这些结果表明,TnT可能在调节钙介导的横纹肌收缩调节过程中发挥作用。