[HTML][HTML] Functional characterization and genetic mapping of alk8

TL Payne, JH Postlethwait, PC Yelick - Mechanisms of development, 2001 - Elsevier
Mechanisms of development, 2001Elsevier
The novel type I TGFβ family member receptor alk8 is expressed both maternally and
zygotically. Functional characterization of alk8 was performed using microinjection studies of
constitutively active (CA), kinase modified/dominant negative (DN), and truncated alk8
mRNAs. CA Alk8 expression produces ventralized embryos while DN Alk8 expression
results in dorsalized phenotypes. Truncated alk8 expressing embryos display a subtle
dorsalized phenotype closely resembling that of the identified zebrafish dorsalized mutant …
The novel type I TGFβ family member receptor alk8 is expressed both maternally and zygotically. Functional characterization of alk8 was performed using microinjection studies of constitutively active (CA), kinase modified/dominant negative (DN), and truncated alk8 mRNAs. CA Alk8 expression produces ventralized embryos while DN Alk8 expression results in dorsalized phenotypes. Truncated alk8 expressing embryos display a subtle dorsalized phenotype closely resembling that of the identified zebrafish dorsalized mutant, lost-a-fin (laf). Single-strand conformation polymorphism (SSCP) analysis was used to map alk8 to zebrafish LG02 in a region demonstrating significant conserved synteny to Hsa2, and which contains the human alk2 gene, ACVRI. Altogether, these functional, gene mapping and phylogenetic analyses suggest that alk8 may be the zebrafish orthologue to human ACVRI (alk2), and therefore extend previous studies of Alk2 conducted in Xenopus.
Elsevier