Department of Physiology, Wayne State University School of Medicine, Detroit, MI, USA.
Int Rev Cell Mol Biol. 2016;321:1-28. doi: 10.1016/bs.ircmb.2015.09.002. Epub 2015 Nov 4.
Troponin T (TnT) is the tropomyosin-binding and thin filament-anchoring subunit of the troponin complex in skeletal and cardiac muscles. At the center of the sarcomeric thin filament regulatory system of striated muscles, TnT plays an essential role in transducing Ca(2+) signals in the regulation of contraction. Having emerged predating the history of vertebrates, TnT has gone through more than 500 million years of evolution that resulted in three muscle-type-specific isoforms and numerous alternative RNA splicing variants. The N-terminal region of TnT is a hypervariable structure responsible for the differences among the TnT isoforms and splice forms. This focused review summarizes our current knowledge of the molecular evolution of the N-terminal variable region and its role in the structure and function of TnT. In addition to the physiologic and pathophysiologic significances in modifying the contractility of skeletal and cardiac muscles during development and in adaptation to stress and disease conditions, the hyperplasticity of the N-terminal region of TnT demonstrates an informative example for the evolution of protein three-dimensional structure and provides insights into the molecular evolution and functional potential of proteins.
肌钙蛋白 T(TnT)是骨骼肌和心肌肌钙蛋白复合物中肌动蛋白结合和细肌丝锚定亚基。在横纹肌肌节细丝调节系统的中心,TnT 在钙(Ca2+)信号转导中发挥着重要作用,调节收缩。TnT 出现于脊椎动物出现之前,经历了超过 5 亿年的进化,产生了三种肌肉特异性同工型和许多选择性 RNA 剪接变体。TnT 的 N 端区域是一个高度可变的结构,负责 TnT 同工型和剪接形式的差异。这篇重点综述总结了我们目前对 N 端可变区分子进化及其在 TnT 结构和功能中的作用的认识。除了在发育过程中调节骨骼和心肌收缩力以及适应应激和疾病条件方面的生理和病理意义外,TnT N 端区域的增生性还为蛋白质三维结构的进化提供了一个信息丰富的例子,并深入了解了蛋白质的分子进化和功能潜力。