RRC ID 64328
著者 Kobayashi K, Maeda K, Tokuoka M, Mochizuki A, Satou Y.
タイトル Using linkage logic theory to control dynamics of a gene regulatory network of a chordate embryo.
ジャーナル Sci Rep
Abstract Linkage logic theory provides a mathematical criterion to control network dynamics by manipulating activities of a subset of network nodes, which are collectively called a feedback vertex set (FVS). Because many biological functions emerge from dynamics of biological networks, this theory provides a promising tool for controlling biological functions. By manipulating the activity of FVS molecules identified in a gene regulatory network (GRN) for fate specification of seven tissues in ascidian embryos, we previously succeeded in reproducing six of the seven cell types. Simultaneously, we discovered that the experimentally reconstituted GRN lacked information sufficient to reproduce muscle cells. Here, we utilized linkage logic theory as a tool to find missing edges in the GRN. Then, we identified a FVS from an updated version of the GRN and confirmed that manipulating the activity of this FVS was sufficient to induce all seven cell types, even in a multi-cellular environment. Thus, linkage logic theory provides tools to find missing edges in experimentally reconstituted networks, to determine whether reconstituted networks contain sufficient information to fulfil expected functions, and to reprogram cell fate.
巻・号 11(1)
ページ 4001
公開日 2021-2-17
DOI 10.1038/s41598-021-83045-y
PII 10.1038/s41598-021-83045-y
PMID 33597570
PMC PMC7889898
MeSH Animals Cell Differentiation Chordata / metabolism* Embryonic Development / genetics* Gene Expression Regulation, Developmental Gene Regulatory Networks / genetics* Humans Models, Biological* Muscle Cells Reproduction Signal Transduction Systems Biology / methods
IF 3.998
リソース情報
カタユウレイボヤ・(ニッポンウミシダ) Wild C. int