SEIKO Life Science Laboratory, SEIKO Research Institute for Education, Osaka, Japan.
Environment and Health Department, Istituto Superiore di Sanitá, Rome, Italy.
Results Probl Cell Differ. 2022;70:35-69. doi: 10.1007/978-3-031-06573-6_2.
The purpose of our studies is to elucidate the nature of massive control of the whole genome expression with a particular emphasis on cell-fate change. The whole genome expression is coordinated by the emergence of a critical point (CP: a peculiar set of biphasic genes) with the genome acting as an integrated dynamical system. In response to stimuli, the genome expression self-organizes into local sub-, near-, and super-critical states, each exhibiting distinct collective behaviors with its center of mass acting as a local attractor, coexisting with the whole genome attractor (GA). The CP serves as the organizing center of cell-fate change, and its activation makes local perturbation to spread over the genome affecting GA. The activation of CP is in turn elicited by genes with elevated temporal variance (oscillating-mode genes), normally in charge to keep genome expression at pace with microenvironment fluctuations. When oscillation exceeds a given threshold, the CP synchronizes with the GA driving genome expression state transition. The expression synchronization wave invading the entire genome is fostered by the fusion-splitting dynamics of silencing pericentromere-associated heterochromatin domains and the consequent folding-unfolding transitions of transcribing euchromatin domains. The proposed mechanism is a unified step toward a time-evolutional transition theory of biological regulation.
我们研究的目的是阐明整个基因组表达的大规模控制的本质,特别强调细胞命运变化。整个基因组的表达是通过临界点(CP:一组特殊的双相基因)的出现来协调的,基因组作为一个集成的动力系统。基因组表达在受到刺激时,会自组织成局部、近局域和超局域状态,每个状态都表现出独特的集体行为,其质心作为一个局部吸引子,与整个基因组吸引子(GA)共存。CP 作为细胞命运变化的组织中心,其激活使局部扰动扩展到基因组上,影响 GA。CP 的激活反过来又被具有高时间方差的基因(振荡模式基因)激发,这些基因通常负责使基因组表达与微环境波动保持同步。当振荡超过给定的阈值时,CP 与 GA 同步,驱动基因组表达状态的转变。沉默着丝粒相关异染色质域的融合-分裂动力学以及随后转录常染色质域的折叠-展开转变促进了表达同步波侵入整个基因组。所提出的机制是朝着生物调控的时间演化跃迁理论迈出的统一的一步。