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Analysis of the Zebrafish perplexed Mutation Reveals Tissue-Specific Roles for de Novo Pyrimidine Synthesis During Development

Willer, G. B. and Lee, V. M. and Gregg, R. G. and Link, B. A. (2005) Analysis of the Zebrafish perplexed Mutation Reveals Tissue-Specific Roles for de Novo Pyrimidine Synthesis During Development. Genetics, 170 (4). pp. 1827-1837. ISSN 0016-6731. PMCID PMC1449754. doi:10.1534/genetics.105.041608. https://resolver.caltech.edu/CaltechAUTHORS:20200608-115354152

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Abstract

The zebrafish perplexed mutation disrupts cell proliferation and differentiation during retinal development. In addition, growth and morphogenesis of the tectum, jaw, and pectoral fins are also affected. Positional cloning was used to identify a mutation in the carbamoyl-phosphate synthetase2-aspartate transcarbamylase-dihydroorotase (cad) gene as possibly causative of the perplexed mutation and this was confirmed by gene knockdown and pyrimidine rescue experiments. CAD is required for de novo biosynthesis of pyrimidines that are required for DNA, RNA, and UDP-dependent protein glycosylation. Developmental studies of several vertebrate species showed high levels of cad expression in tissues where mutant phenotypes were observed. Confocal time-lapse analysis of perplexed retinal cells in vivo showed a near doubling of the cell cycle period length. We also compared the perplexed mutation with mutations that affect either DNA synthesis or UDP-dependent protein glycosylation. Cumulatively, our results suggest an essential role for CAD in facilitating proliferation and differentiation events in a tissue-specific manner during vertebrate development. Both de novo DNA synthesis and UDP-dependent protein glycosylation are important for the perplexed phenotypes.


Item Type:Article
Related URLs:
URLURL TypeDescription
https://doi.org/10.1534/genetics.105.041608DOIArticle
http://www.ncbi.nlm.nih.gov/pmc/articles/pmc1449754/PubMed CentralArticle
Additional Information:© 2005 by the Genetics Society of America. Manuscript received February 6, 2005. Accepted for publication April 25, 2005. We thank Adam Amsterdam and Jeff Gross for sharing data and mutant lines prior to publication. We also gratefully acknowledge the technical assistance from Michael Cliff and Melissa Reske. This project was funded by American Heart Association grant 0225071Y (V.L.), National Institutes of Health grant RO1EY01467 (B.L.), and a March of Dimes Basil O'Connor Fellowship (B.L.).
Funders:
Funding AgencyGrant Number
American Heart Association0225071Y
NIHRO1EY01467
March of Dimes FoundationUNSPECIFIED
Issue or Number:4
PubMed Central ID:PMC1449754
DOI:10.1534/genetics.105.041608
Record Number:CaltechAUTHORS:20200608-115354152
Persistent URL:https://resolver.caltech.edu/CaltechAUTHORS:20200608-115354152
Official Citation:Analysis of the Zebrafish perplexed Mutation Reveals Tissue-Specific Roles for de Novo Pyrimidine Synthesis During Development G. B. Willer, V. M. Lee, R. G. Gregg and B. A. Link GENETICS August 1, 2005 vol. 170 no. 4 1827-1837; https://doi.org/10.1534/genetics.105.041608
Usage Policy:No commercial reproduction, distribution, display or performance rights in this work are provided.
ID Code:103764
Collection:CaltechAUTHORS
Deposited By: George Porter
Deposited On:09 Jun 2020 14:01
Last Modified:16 Nov 2021 18:25

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