Weissmann Carina, Brandt Roland
Department of Neurobiology, University of Osnabrück, Osnabrück, Germany.
J Neurosci Res. 2008 Feb 15;86(3):504-11. doi: 10.1002/jnr.21448.
Pathologic alterations in protein dynamics such as changes in protein degradation, accumulation of misfolded proteins, and deficits in cellular transport mechanisms are a common feature of most if not all neurodegenerative diseases. Live cell imaging studies promise to contribute to a better understanding of the molecular mechanisms underlying these diseases by visualizing the turnover, accumulation, and transport of proteins in a living cellular context in real time. In this review, we discuss recent work in which different live cell imaging approaches are applied in cellular models of amyotrophic lateral sclerosis, polyQ diseases, and tauopathies as paradigmatic examples of diseases with different types of alterations in protein dynamics. It becomes evident that live cell imaging studies provide new insights into different aspects of protein dynamics, such as the understanding that aggregates are not as static as concluded from previous studies but exhibit a remarkable molecular exchange and that the dynamicity state of the neuronal cytoskeleton might have a critical role in neuronal degeneration. It can be anticipated that live cell imaging studies will lead to a more dynamic view of protein turnover and aggregation, which may aid in identifying drugs that specifically interfere with disease-related changes.
蛋白质动力学的病理改变,如蛋白质降解变化、错误折叠蛋白的积累以及细胞转运机制缺陷,是大多数(即便不是全部)神经退行性疾病的共同特征。活细胞成像研究有望通过实时可视化蛋白质在活细胞环境中的周转、积累和转运,有助于更好地理解这些疾病的分子机制。在本综述中,我们讨论了最近的一些研究工作,其中不同的活细胞成像方法被应用于肌萎缩侧索硬化症、多聚谷氨酰胺疾病和tau蛋白病的细胞模型,作为蛋白质动力学具有不同类型改变的疾病的典型例子。显而易见的是,活细胞成像研究为蛋白质动力学的不同方面提供了新的见解,比如认识到聚集体并不像先前研究所认为的那样静止不动,而是呈现出显著的分子交换,并且神经元细胞骨架的动态状态可能在神经元变性中起关键作用。可以预期,活细胞成像研究将带来对蛋白质周转和聚集的更动态的认识,这可能有助于识别特异性干扰疾病相关变化的药物。