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XB-ART-10363
Dev Dyn 2000 Sep 01;2191:96-101. doi: 10.1002/1097-0177(200009)219:1<96::AID-DVDY1034>3.0.CO;2-0.
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Expression of connexin 30 in Xenopus embryos and its involvement in hatching gland function.



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Connexins are a family of proteins that assemble to form gap junction channels. Cell-cell communication through gap junctions mediates many important events in embryogenesis, including limb patterning, lens physiology, neuronal function, left-right asymmetry, and secretion from gland tissue. We studied the expression of connexin 30 (Cx30) in the Xenopus embryo and find that it is expressed in the developing hatching gland and pronephros. To determine whether its expression plays a functional role in the activity of the hatching gland, we exposed pre-hatching embryos to drugs that block gap junctional communication. This resulted in a continuation of normal growth and development but specifically abolished hatching. The treatment did not affect Cx30 or Xenopus hatching enzyme transcription, suggesting a post-transcriptional effect on Cx30 gap junctions. We conclude that junctional communication, possibly mediated by Cx30, is involved in secretion of hatching enzyme in Xenopus.

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Species referenced: Xenopus
Genes referenced: ag1 astl2c astl3a.1 gjb1 wnt4


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