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Newt regeneration genes regulate Wingless signaling to restore patterning in Drosophila eye


ABSTRACT: Summary Newts utilize their unique genes to restore missing parts by strategic regulation of conserved signaling pathways. Lack of genetic tools poses challenges to determine the function of such genes. Therefore, we used the Drosophila eye model to demonstrate the potential of 5 unique newt (Notophthalmus viridescens) gene(s), viropana1-viropana5 (vna1-vna5), which were ectopically expressed in L2 mutant and GMR-hid, GMR-GAL4 eye. L2 exhibits the loss of ventral half of early eye and head involution defective (hid) triggers cell-death during later eye development. Surprisingly, newt genes significantly restore missing photoreceptor cells both in L2 and GMR>hid background by upregulating cell-proliferation and blocking cell-death, regulating evolutionarily conserved Wingless (Wg)/Wnt signaling pathway and exhibit non-cell-autonomous rescues. Further, Wg/Wnt signaling acts downstream of newt genes. Our data highlights that unique newt proteins can regulate conserved pathways to trigger a robust restoration of missing photoreceptor cells in Drosophila eye model with weak restoration capability. Graphical abstract Highlights • Newt proteins regulate wingless/Wnt pathway to rescue eye mutant(s) in Drosophila• These proteins non-cell-autonomously rescue missing tissue in Drosophila eye• Promotes cell proliferation and downregulates cell death in Drosophila eye mutant(s)• These newt genes may have significant bearing on our understanding of regeneration Biological sciences; Cell biology; Developmental biology

SUBMITTER: Mehta A 

PROVIDER: S-EPMC8551474 | biostudies-literature |

REPOSITORIES: biostudies-literature

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