Isotope Science Center, The University of Tokyo, Japan.
Division of Gastroenterology and Hematology/Oncology, Department of Medicine, Asahikawa Medical University, Japan.
FEBS J. 2022 Jan;289(1):17-39. doi: 10.1111/febs.15765. Epub 2021 Mar 3.
Eukaryotic cells are intracellularly divided into numerous compartments or organelles, which coordinate specific molecules and biological reactions. Membrane-bound organelles are physically separated by lipid bilayers from the surrounding environment. Biomolecular condensates, also referred to membraneless organelles, are micron-scale cellular compartments that lack membranous enclosures but function to concentrate proteins and RNA molecules, and these are involved in diverse processes. Liquid-liquid phase separation (LLPS) driven by multivalent weak macromolecular interactions is a critical principle for the formation of biomolecular condensates, and a multitude of combinations among multivalent interactions may drive liquid-liquid phase transition (LLPT). Dysregulation of LLPS and LLPT leads to aberrant condensate and amyloid formation, which causes many human diseases, including neurodegeneration and cancer. Here, we describe recent findings regarding abnormal forms of biomolecular condensates and aggregation via aberrant LLPS and LLPT of cancer-related proteins in cancer development driven by mutation and fusion of genes. Moreover, we discuss the regulatory mechanisms by which aberrant LLPS and LLPT occur in cancer and the drug candidates targeting these mechanisms. Further understanding of the molecular events regulating how biomolecular condensates and aggregation form in cancer tissue is critical for the development of therapeutic strategies against tumorigenesis.
真核细胞在细胞内被分成许多区室或细胞器,这些区室或细胞器协调特定的分子和生物反应。膜结合细胞器通过脂质双层与周围环境物理分离。生物分子凝聚物,也称为无膜细胞器,是微米尺度的细胞区室,缺乏膜包被,但功能是浓缩蛋白质和 RNA 分子,这些参与多种过程。多价弱大分子相互作用驱动的液-液相分离(LLPS)是生物分子凝聚物形成的关键原则,并且多价相互作用的多种组合可能驱动液-液相转变(LLPT)。LLPS 和 LLPT 的失调导致异常凝聚物和淀粉样蛋白的形成,这导致许多人类疾病,包括神经退行性疾病和癌症。在这里,我们描述了最近关于癌症相关蛋白的突变和融合驱动的癌症发展中通过异常的 LLPS 和 LLPT 导致的生物分子凝聚物和聚集的异常形式的发现。此外,我们讨论了在癌症中发生异常 LLPS 和 LLPT 的调节机制以及针对这些机制的药物候选物。进一步了解调节生物分子凝聚物和聚集在癌组织中形成的分子事件对于开发针对肿瘤发生的治疗策略至关重要。