FEBS Letters
Volume 583, Issue 24 , Pages 3948-3958, 17 December 2009

Modularity and design principles in the sea urchin embryo gene regulatory network

Edited by Stefan Hohmann

California Institute of Technology, Division of Biology 156-29, California Institute of Technology, 1200 E. California Blvd., Pasadena, CA 91125, USA

Received 14 November 2009; accepted 16 November 2009. published online 20 November 2009.

Abstract 

The gene regulatory network (GRN) established experimentally for the pre-gastrular sea urchin embryo provides causal explanations of the biological functions required for spatial specification of embryonic regulatory states. Here we focus on the structure of the GRN which controls the progressive increase in complexity of territorial regulatory states during embryogenesis; and on the types of modular subcircuits of which the GRN is composed. Each of these subcircuit topologies executes a particular operation of spatial information processing. The GRN architecture reflects the particular mode of embryogenesis represented by sea urchin development. Network structure not only specifies the linkages constituting the genomic regulatory code for development, but also indicates the various regulatory requirements of regional developmental processes.

Keywords: Subcircuit structure/function, Spatial transcriptional regulation, Embryonic specification

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PII: S0014-5793(09)00973-9

doi:10.1016/j.febslet.2009.11.060

FEBS Letters
Volume 583, Issue 24 , Pages 3948-3958, 17 December 2009