Tantos Agnes, Kalmar Lajos, Tompa Peter
Institute of Enzymology, Research Centre for Natural Sciences of the Hungarian Academy of Sciences, Budapest, Hungary.
Expert Rev Proteomics. 2015 Jun;12(3):221-33. doi: 10.1586/14789450.2015.1042866.
Understanding the molecular mechanisms of the regulation of cell cycle is a central issue in molecular cell biology, due to its fundamental role in the existence of cells. The regulatory circuits that make decisions on when a cell should divide are very complex and particularly subtly balanced in eukaryotes, in which the harmony of many different cells in an organism is essential for life. Several hundred proteins are involved in these processes, and a great deal of studies attests that most of them have functionally relevant intrinsic structural disorder. Structural disorder imparts many functional advantages on these proteins, and we discuss it in detail that it is involved in all key steps from signaling through the cell membrane to regulating transcription of proteins that execute timely responses to an ever-changing environment.
由于细胞周期调控在细胞生存中具有基础性作用,了解其分子机制是分子细胞生物学的核心问题。决定细胞何时分裂的调控回路非常复杂,在真核生物中尤其微妙地保持平衡,因为生物体中许多不同细胞的协调对生命至关重要。数百种蛋白质参与这些过程,大量研究证明其中大多数具有功能相关的内在结构无序性。结构无序赋予这些蛋白质许多功能优势,我们将详细讨论它如何参与从细胞膜信号传导到调控对不断变化的环境及时做出反应的蛋白质转录的所有关键步骤。