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Zebrafish scarb2a insertional mutant reveals a novel function for the Scarb2/Limp2 receptor in notochord development
Authors:Abigail Diaz‐Tellez  Cecilia Zampedri  Jose L. Ramos‐Balderas  Fernando García‐Hernández  Ernesto Maldonado
Affiliation:1. EvoDevo Lab, Unidad de Sistemas Arrecifales, Instituto de Ciencias del Mar y Limnología, Universidad Nacional Autónoma de México, Puerto Morelos, Quintana Roo, México;2. Instituto de Fisiología Celular, Universidad Nacional Autónoma de México, D.F. México
Abstract:Background: Scarb2 or Limp2 belong to a subfamily of Scavenger receptors described as lysosomal transmembrane glycosylated receptors, that are mutated in the human syndrome AMRF (action myoclonus‐renal failure). The zebrafish insertional mutant scarb2ahi1463Tg has notochord defects, the notochord is a defining feature of chordates running along the center of the longitudinal axis and it is essential for forming the spinal column in all vertebrates. Results: There are three paralogous scarb2 genes in zebrafish; scarb2a, scarb2b, and scarb2c. Both Scarb2a and Scarb2b proteins lack the classical di‐leucine motif. We found that scarb2ahi1463Tg homozygous zebrafish embryos have a null mutation impairing vacuole formation in the notochord and simultaneously disrupting proper formation of the basement membrane resulting in its thickening at the ventral side of the notochord, which may be the cause for the anomalous upward bending observed in the trunk. Through whole‐mount in situ hybridization, we detected scarb2a mRNA expression in the notochord and in the brain early in development. However, it is puzzling that scarb2a notochord mRNA expression is short‐lived in the presumptive notochord and precedes the complete differentiation of the notochord. Conclusions: This work describes a novel function for the Scarb2 receptor as an essential glycoprotein for notochord development. Developmental Dynamics 245:508–519, 2016. © 2015 Wiley Periodicals, Inc.
Keywords:scarb2a  notochord  vacuole  basement membrane  zebrafish
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