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Biology subjects

Ruiz, O. E.

Publications and source records attributed to Ruiz, O. E..

2 recordsLinked to original sources

Multisite Assembly of Gateway Induced Clones (MAGIC): a flexible cloning toolbox withdiverse applications in vertebrate model systems.

Here we present the Multisite Assembly of Gateway Induced Clones (MAGIC) system, which harnesses site-specific recombination-based cloning via Gateway technology for rapid, modular assembly of between 1 and 3 "Entry" vector components, all into a fourth, standard high copy "Destination" plasmid backbone. The MAGIC toolkit spans a range of in vitro and in vivo uses, from directing tunable gene expression, to driving simultaneous expression of microRNAs and fluorescent reporters, to enabling site-specific recombinase-dependent gene expression. All MAGIC system components are directly compatible with existing multisite gateway Tol2 systems currently used in zebrafish, as well as existing eukaryotic cell culture expression Destination plasmids, and available mammalian lentiviral and adenoviral Destination vectors, allowing rapid cross-species experimentation. Moreover, herein we describe novel vectors with flanking piggyBac transposon elements for stable genomic integration in vitro or in vivo when used with piggyBac transposase. Collectively, the MAGIC system facilitates transgenesis in cultured mammalian cells, electroporated mouse and chick embryos, as well as in injected zebrafish embryos, enabling the rapid generation of innovative DNA constructs for biological research due to a shared, common plasmid platform.

molecular biology↗

zFACE: Facial Analytics from a Coordinate Extrapolation System for Developing Zebrafish

Facial development requires a complex and coordinated series of cellular events, that when perturbed, can lead to structural birth defects. A standardized quantitative approach to quickly assess morphological changes could address how genetic or environmental inputs lead to differences in facial development. Here we report on a method to rapidly analyze craniofacial development in zebrafish embryos that combines a simple staining and mounting paradigm with Facial Analytics based on a Coordinate Extrapolation system, termed zFACE. Confocal imaging of frontal/rostral mounted embryos generates high-resolution images to capture facial structures and morphometric data is quantified based on a coordinate system that assesses 26 anatomical landmarks present at defined times in development. The semi-automated analysis can be applied to embryos at different stages of development and quantitative morphometric data can detect subtle phenotypic variation. Shape analysis can also be performed with the coordinate data to inform on global changes in facial morphology. We applied this new approach to show that loss of smarca4a in developing zebrafish leads to craniofacial anomalies, microcephaly and alterations in brain morphology. These changes are characteristic of humans with Coffin-Siris syndrome (CSS), a rare genetic disorder associated with mutations in SMARCA4 that is defined by anomalies in head size, intellectual disabilities and craniofacial abnormalities. We observed that smarca4a is expressed in craniofacial tissues and our multivariate analysis facilitated the classification of smarca4a mutants based on changes in specific phenotypic characteristics. Together, our approach provides a way to rapidly and quantitatively assess the impact of genetic alterations on craniofacial development in zebrafish.

developmental biology↗