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生物分子凝聚物解读细胞命运的分子密码:从生物物理基础到治疗实践。

Biomolecular Condensates Decipher Molecular Codes of Cell Fate: From Biophysical Fundamentals to Therapeutic Practices.

机构信息

Molecular Science and Biomedicine Laboratory, State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Biology, College of Chemistry and Chemical Engineering, Aptamer Engineering Center of Hunan Province, Hunan University, Changsha 410082, China.

Molecular Biology Research Center and Center for Medical Genetics, School of Life Sciences, Central South University, Changsha 410000, China.

出版信息

Int J Mol Sci. 2024 Apr 8;25(7):4127. doi: 10.3390/ijms25074127.

Abstract

Cell fate is precisely modulated by complex but well-tuned molecular signaling networks, whose spatial and temporal dysregulation commonly leads to hazardous diseases. Biomolecular condensates (BCs), as a newly emerging type of biophysical assemblies, decipher the molecular codes bridging molecular behaviors, signaling axes, and clinical prognosis. Particularly, physical traits of BCs play an important role; however, a panoramic view from this perspective toward clinical practices remains lacking. In this review, we describe the most typical five physical traits of BCs, and comprehensively summarize their roles in molecular signaling axes and corresponding major determinants. Moreover, establishing the recent observed contribution of condensate physics on clinical therapeutics, we illustrate next-generation medical strategies by targeting condensate physics. Finally, the challenges and opportunities for future medical development along with the rapid scientific and technological advances are highlighted.

摘要

细胞命运是由复杂但精心调控的分子信号网络精确调节的,其时空失调通常会导致危险的疾病。生物分子凝聚物 (BCs) 作为一种新兴的生物物理组装体,揭示了连接分子行为、信号轴和临床预后的分子密码。特别是,BCs 的物理特性起着重要作用;然而,从这个角度来看待临床实践的全景图仍然缺乏。在这篇综述中,我们描述了 BCs 最典型的五个物理特性,并全面总结了它们在分子信号轴和相应主要决定因素中的作用。此外,通过针对凝聚物物理特性,我们说明了在临床治疗中最近观察到的凝聚物物理特性的贡献,从而建立了下一代医学策略。最后,强调了未来医学发展的挑战和机遇,以及快速的科学和技术进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ccd2/11012904/8051df4ca606/ijms-25-04127-g001.jpg

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