ALKALs are in vivo ligands for ALK family receptor tyrosine kinases in the neural crest and derived cells.

Fadeev, Andrey; Mendoza-Garcia, Patricia; Irion, Uwe; Guan, Jikui; Pfeifer, Kathrin; Wiessner, Stephanie; Serluca, Fabrizio; Singh, Ajeet Pratap et al. · Proc Natl Acad Sci U S A · 2018

basic_science · Level V

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Abstract

Mutations in anaplastic lymphoma kinase (ALK) are implicated in somatic and familial neuroblastoma, a pediatric tumor of neural crest-derived tissues. Recently, biochemical analyses have identified secreted small ALKAL proteins (FAM150, AUG) as potential ligands for human ALK and the related leukocyte tyrosine kinase (LTK). In the zebrafish <i>Danio rerio</i>, DrLtk, which is similar to human ALK in sequence and domain structure, controls the development of iridophores, neural crest-derived pigment cells. Hence, the zebrafish system allows studying Alk/Ltk and Alkals involvement in neural crest regulation in vivo. Using zebrafish pigment pattern formation, <i>Drosophila</i> eye patterning, and cell culture-based assays, we show that zebrafish Alkals potently activate zebrafish Ltk and human ALK driving downstream signaling events. Overexpression of the three DrAlkals cause ectopic iridophore development, whereas loss-of-function alleles lead to spatially distinct patterns of iridophore loss in zebrafish larvae and adults. <i>alkal</i> loss-of-function triple mutants completely lack iridophores and are larval lethal as is the case for <i>ltk</i> null mutants. Our results provide in vivo evidence of (<i>i</i>) activation of ALK/LTK family receptors by ALKALs and (<i>ii</i>) an involvement of these ligand-receptor complexes in neural crest development.

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