1. Academic Validation
  2. A small molecule screen identifies a novel compound that induces a homeotic transformation in Hydra

A small molecule screen identifies a novel compound that induces a homeotic transformation in Hydra

  • Development. 2013 Dec;140(23):4788-96. doi: 10.1242/dev.094490.
Kristine M Glauber 1 Catherine E Dana Steve S Park David A Colby Yukihiko Noro Toshitaka Fujisawa A Richard Chamberlin Robert E Steele
Affiliations

Affiliation

  • 1 Department of Biological Chemistry, University of California, Irvine, CA 92697, USA.
Abstract

Developmental processes such as morphogenesis, patterning and differentiation are continuously active in the adult Hydra polyp. We carried out a small molecule screen to identify compounds that affect patterning in Hydra. We identified a novel molecule, DAC-2-25, that causes a homeotic transformation of body column into tentacle zone. This transformation occurs in a progressive and polar fashion, beginning at the oral end of the animal. We have identified several strains that respond to DAC-2-25 and one that does not, and we used chimeras from these strains to identify the ectoderm as the target tissue for DAC-2-25. Using transgenic Hydra that express green fluorescent protein under the control of relevant promoters, we examined how DAC-2-25 affects tentacle patterning. Genes whose expression is associated with the tentacle zone are ectopically expressed upon exposure to DAC-2-25, whereas those associated with body column tissue are turned off as the tentacle zone expands. The expression patterns of the organizer-associated gene HyWnt3 and the hypostome-specific gene HyBra2 are unchanged. Structure-activity relationship studies have identified features of DAC-2-25 that are required for activity and potency. This study shows that small molecule screens in Hydra can be used to dissect patterning processes.

Keywords

Cnidaria; Hydra; Pattern formation; Pyridone; Regeneration; Small molecule.

Figures
Products
  • Cat. No.
    Product Name
    Description
    Target
    Research Area
  • HY-116131
    Tentacle Inducer