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核联网。

Networking the nucleus.

机构信息

Division of Basic Sciences, Fred Hutchinson Cancer Research Center, Seattle, WA 98109, USA.

出版信息

Mol Syst Biol. 2010 Jul;6:395. doi: 10.1038/msb.2010.48.

Abstract

The nuclei of differentiating cells exhibit several fundamental principles of self-organization. They are composed of many dynamical units connected physically and functionally to each other--a complex network--and the different parts of the system are mutually adapted and produce a characteristic end state. A unique cell-specific signature emerges over time from complex interactions among constituent elements that delineate coordinate gene expression and chromosome topology. Each element itself consists of many interacting components, all dynamical in nature. Self-organizing systems can be simplified while retaining complex information using approaches that examine the relationship between elements, such as spatial relationships and transcriptional information. These relationships can be represented using well-defined networks. We hypothesize that during the process of differentiation, networks within the cell nucleus rewire according to simple rules, from which a higher level of order emerges. Studying the interaction within and among networks provides a useful framework for investigating the complex organization and dynamic function of the nucleus.

摘要

分化细胞的核体现出几种自我组织的基本原则。它们由许多物理和功能上相互连接的动力单元组成——一个复杂的网络——系统的不同部分相互适应,并产生一个特征性的最终状态。随着时间的推移,组成元素之间的复杂相互作用会产生一个独特的细胞特异性特征,从而划定协调的基因表达和染色体拓扑结构。每个元素本身都由许多相互作用的组件组成,本质上都是动态的。使用检查元素之间关系(例如空间关系和转录信息)的方法,可以在保留复杂信息的同时简化自组织系统。这些关系可以使用定义明确的网络来表示。我们假设,在分化过程中,细胞核内的网络根据简单的规则进行重新布线,从而产生更高层次的秩序。研究网络内部和网络之间的相互作用为研究细胞核的复杂组织和动态功能提供了一个有用的框架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f17c/2925527/7316f5bd97b8/msb201048-f1.jpg

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