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Articles 1 - 8 of 8

Full-Text Articles in Developmental Biology

Cyclin-Dependent Kinase 1 And Aurora Kinase Choreograph Mitotic Storage And Redistribution Of A Growth Factor Receptor, C. D. Cota, M. S. Dreier , '20, W. Colgan, A. Cha, Twan Sia , '21, Bradley Justin Davidson , '91 Jan 2021

Cyclin-Dependent Kinase 1 And Aurora Kinase Choreograph Mitotic Storage And Redistribution Of A Growth Factor Receptor, C. D. Cota, M. S. Dreier , '20, W. Colgan, A. Cha, Twan Sia , '21, Bradley Justin Davidson , '91

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Endosomal trafficking of receptors and associated proteins plays a critical role in signal processing. Until recently, it was thought that trafficking was shut down during cell division. Thus, remarkably, the regulation of trafficking during division remains poorly characterized. Here we delineate the role of mitotic kinases in receptor trafficking during asymmetric division. Targeted perturbations reveal that Cyclin-dependent Kinase 1 (CDK1) and Aurora Kinase promote storage of Fibroblast Growth Factor Receptors (FGFRs) by suppressing endosomal degradation and recycling pathways. As cells progress through metaphase, loss of CDK1 activity permits differential degradation and targeted recycling of stored receptors, leading to asymmetric induction. …


Deploying Big Data To Crack The Genotype To Phenotype Code, E. L. Westerman, S. E. J. Bowman, Bradley Justin Davidson , '91, M. C. Davis, E. R. Larson, C. Sanford Jun 2020

Deploying Big Data To Crack The Genotype To Phenotype Code, E. L. Westerman, S. E. J. Bowman, Bradley Justin Davidson , '91, M. C. Davis, E. R. Larson, C. Sanford

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Mechanistically connecting genotypes to phenotypes is a longstanding and central mission of biology. Deciphering these connections will unite questions and datasets across all scales from molecules to ecosystems. Although high-throughput sequencing has provided a rich platform on which to launch this effort, tools for deciphering mechanisms further along the genome to phenome pipeline remain limited. Machine learning approaches and other emerging computational tools hold the promise of augmenting human efforts to overcome these obstacles. This vision paper is the result of a Reintegrating Biology Workshop, bringing together the perspectives of integrative and comparative biologists to survey challenges and opportunities in …


Inferring Tunicate Relationships And The Evolution Of The Tunicate Hox Cluster With The Genome Of Corella Inflata, M. B. Debiasse, William N. Colgan , '19, Lincoln J. Harris , '17, Bradley Justin Davidson , '91, J. F. Ryan Mar 2020

Inferring Tunicate Relationships And The Evolution Of The Tunicate Hox Cluster With The Genome Of Corella Inflata, M. B. Debiasse, William N. Colgan , '19, Lincoln J. Harris , '17, Bradley Justin Davidson , '91, J. F. Ryan

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Tunicates, the closest living relatives of vertebrates, have served as a foundational model of early embryonic development for decades. Comparative studies of tunicate phylogeny and genome evolution provide a critical framework for analyzing chordate diversification and the emergence of vertebrates. Towards this goal, we sequenced the genome of Corella inflata (Ascidiacea, Phlebobranchia), so named for the capacity to brood self-fertilized embryos in a modified, “inflated” atrial chamber. Combining the new genome sequence for Co. inflata with publicly available tunicate data, we estimated a tunicate species phylogeny, reconstructed the ancestral Hox gene cluster at important nodes in the tunicate tree, and …


Aniseed 2019: 4d Exploration Of Genetic Data For An Extended Range Of Tunicates, J. Dardaillon, D. Dauga, P. Simion, E. Faure, T. A. Onuma, M. B. Debiasse, A. Louis, K. R. Nitta, M. Naville, L. Besnardeau, W. Reeves, K. Wang, M. Fagotto, M. Guéroult-Bellone, S. Fujiwara, R. Dumollard, M. Veeman, J.-N. Volff, H. Roest Crollius, E. Douzery, J. F. Ryan, Bradley Justin Davidson , '91, H. Nishida, C. Dantec, P. Lemaire Nov 2019

Aniseed 2019: 4d Exploration Of Genetic Data For An Extended Range Of Tunicates, J. Dardaillon, D. Dauga, P. Simion, E. Faure, T. A. Onuma, M. B. Debiasse, A. Louis, K. R. Nitta, M. Naville, L. Besnardeau, W. Reeves, K. Wang, M. Fagotto, M. Guéroult-Bellone, S. Fujiwara, R. Dumollard, M. Veeman, J.-N. Volff, H. Roest Crollius, E. Douzery, J. F. Ryan, Bradley Justin Davidson , '91, H. Nishida, C. Dantec, P. Lemaire

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ANISEED (https://www.aniseed.cnrs.fr) is the main model organism database for the worldwide community of scientists working on tunicates, the vertebrate sister-group. Information provided for each species includes functionally-annotated gene and transcript models with orthology relationships within tunicates, and with echinoderms, cephalochordates and vertebrates. Beyond genes the system describes other genetic elements, including repeated elements and cis-regulatory modules. Gene expression profiles for several thousand genes are formalized in both wild-type and experimentally-manipulated conditions, using formal anatomical ontologies. These data can be explored through three complementary types of browsers, each offering a different view-point. A developmental browser summarizes the information in a gene- …


Variable Levels Of Drift In Tunicate Cardiopharyngeal Gene Regulatory Elements, W. Colgan, A. Leanza, A. Hwang, M. B. Debiasse, Isabel Llosa , '20, Daniel Rodrigues , '21, Hriju Adhikari , '20, Guillermo Barreto Corona , '19, Saskia Bock , '20, Amanda T. Carillo-Perez , '19, Meagan Currie , '20, S. Darkoa-Larbi, D. Dellal, Hanna Gutow , '20, P. Hokama, E. Kibby, N. Linhart, S. Moody, Allison Naganuma , '20, D. Nguyen, Ryan Stanton , '20, S. Stark, Cameron Tumey , '21, A. Velleca, J. F. Ryan, Bradley Justin Davidson , '91 Oct 2019

Variable Levels Of Drift In Tunicate Cardiopharyngeal Gene Regulatory Elements, W. Colgan, A. Leanza, A. Hwang, M. B. Debiasse, Isabel Llosa , '20, Daniel Rodrigues , '21, Hriju Adhikari , '20, Guillermo Barreto Corona , '19, Saskia Bock , '20, Amanda T. Carillo-Perez , '19, Meagan Currie , '20, S. Darkoa-Larbi, D. Dellal, Hanna Gutow , '20, P. Hokama, E. Kibby, N. Linhart, S. Moody, Allison Naganuma , '20, D. Nguyen, Ryan Stanton , '20, S. Stark, Cameron Tumey , '21, A. Velleca, J. F. Ryan, Bradley Justin Davidson , '91

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Background: Mutations in gene regulatory networks often lead to genetic divergence without impacting gene expression or developmental patterning. The rules governing this process of developmental systems drift, including the variable impact of selective constraints on different nodes in a gene regulatory network, remain poorly delineated. Results: Here we examine developmental systems drift within the cardiopharyngeal gene regulatory networks of two tunicate species, Corella inflata and Ciona robusta. Cross-species analysis of regulatory elements suggests that trans-regulatory architecture is largely conserved between these highly divergent species. In contrast, cis-regulatory elements within this network exhibit distinct levels of conservation. In particular, while most …


Establishment Of Lateral Organ Asymmetries In The Invertebrate Chordate, Ciona Intestinalis, Karl Palmquist , '17, Bradley Justin Davidson , '91 Dec 2017

Establishment Of Lateral Organ Asymmetries In The Invertebrate Chordate, Ciona Intestinalis, Karl Palmquist , '17, Bradley Justin Davidson , '91

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Background: The evolutionary emergence and diversification of the chordates appear to involve dramatic changes in organ morphogenesis along the left/right axis. However, the ancestral chordate mechanism for establishing lateral asymmetry remains ambiguous. Additionally, links between the initial establishment of lateral asymmetry and subsequent asymmetries in organ morphogenesis are poorly characterized. Results: To explore asymmetric organ morphogenesis during chordate evolution, we have begun to characterize left/right patterning of the heart and endodermal organs in an invertebrate chordate, Ciona intestinalis. Here, we show that Ciona has a laterally asymmetric, right-sided heart. Our data indicate that cardiac lateral asymmetry requires H+/K+ ion flux, …


Fibronectin Contributes To Notochord Intercalation In The Invertebrate Chordate, Ciona Intestinalis, F. Segade, C. Cota, A. Famiglietti, A. Cha, Bradley Justin Davidson , '91 Jan 2016

Fibronectin Contributes To Notochord Intercalation In The Invertebrate Chordate, Ciona Intestinalis, F. Segade, C. Cota, A. Famiglietti, A. Cha, Bradley Justin Davidson , '91

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Background: Genomic analysis has upended chordate phylogeny, placing the tunicates as the sister group to the vertebrates. This taxonomic rearrangement raises questions about the emergence of a tunicate/vertebrate ancestor. Results: Characterization of developmental genes uniquely shared by tunicates and vertebrates is one promising approach for deciphering developmental shifts underlying acquisition of novel, ancestral traits. The matrix glycoprotein Fibronectin (FN) has long been considered a vertebrate-specific gene, playing a major instructive role in vertebrate embryonic development. However, the recent computational prediction of an orthologous “vertebrate-like” Fn gene in the genome of a tunicate, Ciona savignyi, challenges this viewpoint suggesting that Fn …


Matrix Adhesion Polarizes Heart Progenitor Induction In The Invertebrate Chordate Ciona Intestinalis, J. Norton, J. Cooley, A. Islam, C. D. Cota, Bradley Justin Davidson , '91 Mar 2013

Matrix Adhesion Polarizes Heart Progenitor Induction In The Invertebrate Chordate Ciona Intestinalis, J. Norton, J. Cooley, A. Islam, C. D. Cota, Bradley Justin Davidson , '91

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Cell-matrix adhesion strongly influences developmental signaling. Resulting impacts on cell migration and tissue morphogenesis are well characterized. However, the in vivo impact of adhesion on fate induction remains ambiguous. Here, we employ the invertebrate chordate Ciona intestinalis to delineate an essential in vivo role for matrix adhesion in heart progenitor induction. In Ciona pre-cardiac founder cells, invasion of the underlying epidermis promotes localized induction of the heart progenitor lineage. We found that these epidermal invasions are associated with matrix adhesion along the pre-cardiac cell/epidermal boundary. Through targeted manipulations of RAP GTPase activity, we were able to manipulate pre-cardiac cell-matrix adhesion. …