Institute of Medical Biochemistry Leopoldo de Meis, National Institute of Science and Technology for Structural Biology and Bioimaging, National Center of Nuclear Magnetic Resonance Jiri Jonas, Federal University of Rio de Janeiro, Rio de Janeiro, RJ, Brazil.
Essays Biochem. 2022 Dec 16;66(7):1023-1033. doi: 10.1042/EBC20220064.
In 1972, the Weber statement, "The multiplicity of interactions and the variety of effects that follow from them show that multimer proteins are unlikely to be limited to a minimal number of allowed conformations," first addressed the dynamic nature of proteins. This idea serves as a foundation for understanding why several macromolecules, such as p53, exhibit the properties of a molecular chameleon. Functionally competent states comprise a myriad of p53 three-dimensional arrangements depending on the stimuli. For instance, the interaction of p53 with nuclear components could induce liquid-liquid phase separation (LLPS) and the formation of membraneless organelles. The functional or deleterious role of p53 in liquid droplets is still unclear. Functional aspects display p53 interconverting between droplets and tetramer with its functional abilities maintained. In contrast, the aberrant phase separation is likely to fuel the aggregation path, usually associated with the onset and progression of age-related neurodegenerative diseases and cancer. Here, we gathered the most relevant aspects that lead p53 to phase separation and the resulting structural effects, attempting to understand p53's functional and disease-relevant processes. Aberrant phase separation and aggregation of mutant p53 have become important therapeutic targets against cancer.
1972 年,Weber 指出:“多种相互作用及其随之而来的各种效应表明,多聚体蛋白不太可能仅限于允许的构象的最小数量”,首次提出了蛋白质的动态性质。这个想法为理解为什么像 p53 这样的几种大分子表现出分子变色龙的特性提供了基础。功能上有能力的状态包含了无数的 p53 三维排列,具体取决于刺激。例如,p53 与核成分的相互作用可能会诱导液-液相分离 (LLPS) 和无膜细胞器的形成。p53 在液滴中的功能或有害作用尚不清楚。功能方面显示 p53 在液滴和四聚体之间相互转换,同时保持其功能能力。相比之下,异常的相分离可能会促进聚集途径,通常与与年龄相关的神经退行性疾病和癌症的发生和进展有关。在这里,我们收集了导致 p53 发生相分离和由此产生的结构效应的最相关方面,试图了解 p53 的功能和与疾病相关的过程。突变型 p53 的异常相分离和聚集已成为针对癌症的重要治疗靶点。