ECB-ART-50467
Elife
2022 Feb 25;11. doi: 10.7554/eLife.72834.
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Architecture and evolution of the cis-regulatory system of the echinoderm kirrelL gene.
Khor JM
,
Ettensohn CA
.
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The gene regulatory network (GRN) that underlies echinoderm skeletogenesis is a prominent model of GRN architecture and evolution. KirrelL is an essential downstream effector gene in this network and encodes an Ig-superfamily protein required for the fusion of skeletogenic cells and the formation of the skeleton. In this study, we dissected the transcriptional control region of the kirrelL gene of the purple sea urchin, Strongylocentrotus purpuratus. Using plasmid- and bacterial artificial chromosome-based transgenic reporter assays, we identified key cis-regulatory elements (CREs) and transcription factor inputs that regulate Sp-kirrelL, including direct, positive inputs from two key transcription factors in the skeletogenic GRN, Alx1 and Ets1. We next identified kirrelL cis-regulatory regions from seven other echinoderm species that together represent all classes within the phylum. By introducing these heterologous regulatory regions into developing sea urchin embryos we provide evidence of their remarkable conservation across ~500 million years of evolution. We dissected in detail the kirrelL regulatory region of the sea star, Patiria miniata, and demonstrated that it also receives direct inputs from Alx1 and Ets1. Our findings identify kirrelL as a component of the ancestral echinoderm skeletogenic GRN. They support the view that GRN subcircuits, including specific transcription factor-CRE interactions, can remain stable over vast periods of evolutionary history. Lastly, our analysis of kirrelL establishes direct linkages between a developmental GRN and an effector gene that controls a key morphogenetic cell behavior, cell-cell fusion, providing a paradigm for extending the explanatory power of GRNs.
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R24 OD023046 NIH HHS
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References [+] :
Amore,
cis-Regulatory control of cyclophilin, a member of the ETS-DRI skeletogenic gene battery in the sea urchin embryo.
2006, Pubmed,
Echinobase
Amore, cis-Regulatory control of cyclophilin, a member of the ETS-DRI skeletogenic gene battery in the sea urchin embryo. 2006, Pubmed , Echinobase
Arnone, Using reporter genes to study cis-regulatory elements. 2004, Pubmed , Echinobase
Arnone, Echinoderm systems for gene regulatory studies in evolution and development. 2016, Pubmed , Echinobase
Arshinoff, Echinobase: leveraging an extant model organism database to build a knowledgebase supporting research on the genomics and biology of echinoderms. 2022, Pubmed , Echinobase
Baertsch, Retrocopy contributions to the evolution of the human genome. 2008, Pubmed
Buckley, Bacterial artificial chromosomes as recombinant reporter constructs to investigate gene expression and regulation in echinoderms. 2018, Pubmed , Echinobase
Calhoun, Promoter-proximal tethering elements regulate enhancer-promoter specificity in the Drosophila Antennapedia complex. 2002, Pubmed
Cameron, cis-Regulatory activity of randomly chosen genomic fragments from the sea urchin. 2004, Pubmed , Echinobase
Cary, Echinoderm development and evolution in the post-genomic era. 2017, Pubmed , Echinobase
Cheers, Rapid microinjection of fertilized eggs. 2004, Pubmed , Echinobase
Cordaux, The impact of retrotransposons on human genome evolution. 2009, Pubmed
Czarkwiani, Expression of skeletogenic genes during arm regeneration in the brittle star Amphiura filiformis. 2013, Pubmed , Echinobase
Dermody, Immunoglobulin superfamily virus receptors and the evolution of adaptive immunity. 2009, Pubmed
Dylus, Developmental transcriptomics of the brittle star Amphiura filiformis reveals gene regulatory network rewiring in echinoderm larval skeleton evolution. 2018, Pubmed , Echinobase
Erkenbrack, Cell type phylogenetics informs the evolutionary origin of echinoderm larval skeletogenic cell identity. 2019, Pubmed , Echinobase
Ettensohn, Gene regulatory networks and developmental plasticity in the early sea urchin embryo: alternative deployment of the skeletogenic gene regulatory network. 2007, Pubmed , Echinobase
Ettensohn, KirrelL, a member of the Ig-domain superfamily of adhesion proteins, is essential for fusion of primary mesenchyme cells in the sea urchin embryo. 2017, Pubmed , Echinobase
Ettensohn, Alx1, a member of the Cart1/Alx3/Alx4 subfamily of Paired-class homeodomain proteins, is an essential component of the gene network controlling skeletogenic fate specification in the sea urchin embryo. 2003, Pubmed , Echinobase
Ettensohn, Encoding anatomy: developmental gene regulatory networks and morphogenesis. 2013, Pubmed , Echinobase
Farré, Immunoglobulin superfamily members encoded by viruses and their multiple roles in immune evasion. 2017, Pubmed
Gao, Juvenile skeletogenesis in anciently diverged sea urchin clades. 2015, Pubmed , Echinobase
Gao, Transfer of a large gene regulatory apparatus to a new developmental address in echinoid evolution. 2008, Pubmed , Echinobase
Guerrero-Santoro, Analysis of the DNA-binding properties of Alx1, an evolutionarily conserved regulator of skeletogenesis in echinoderms. 2021, Pubmed , Echinobase
Hinman, Caught in the evolutionary act: precise cis-regulatory basis of difference in the organization of gene networks of sea stars and sea urchins. 2007, Pubmed , Echinobase
Jones, The rapid generation of mutation data matrices from protein sequences. 1992, Pubmed
Khor, Genome-wide identification of binding sites and gene targets of Alx1, a pivotal regulator of echinoderm skeletogenesis. 2019, Pubmed , Echinobase
Khor, Global patterns of enhancer activity during sea urchin embryogenesis assessed by eRNA profiling. 2021, Pubmed , Echinobase
Killian, SpSM30 gene family expression patterns in embryonic and adult biomineralized tissues of the sea urchin, Strongylocentrotus purpuratus. 2010, Pubmed , Echinobase
Koga, Functional evolution of Ets in echinoderms with focus on the evolution of echinoderm larval skeletons. 2010, Pubmed , Echinobase
Koga, The echinoderm larval skeleton as a possible model system for experimental evolutionary biology. 2014, Pubmed , Echinobase
Kumar, MEGA X: Molecular Evolutionary Genetics Analysis across Computing Platforms. 2018, Pubmed
Kurokawa, HpEts, an ets-related transcription factor implicated in primary mesenchyme cell differentiation in the sea urchin embryo. 1999, Pubmed , Echinobase
Kvon, Enhancer redundancy in development and disease. 2021, Pubmed
Lagha, Mechanisms of transcriptional precision in animal development. 2012, Pubmed
Logan, Nuclear beta-catenin is required to specify vegetal cell fates in the sea urchin embryo. 1999, Pubmed , Echinobase
Long, Low coverage sequencing of three echinoderm genomes: the brittle star Ophionereis fasciata, the sea star Patiriella regularis, and the sea cucumber Australostichopus mollis. 2016, Pubmed , Echinobase
Lyons, Morphogenesis in sea urchin embryos: linking cellular events to gene regulatory network states. 2012, Pubmed , Echinobase
Makabe, Cis-regulatory control of the SM50 gene, an early marker of skeletogenic lineage specification in the sea urchin embryo. 1995, Pubmed , Echinobase
Mann, Proteomic analysis of sea urchin (Strongylocentrotus purpuratus) spicule matrix. 2010, Pubmed , Echinobase
Mann, The sea urchin (Strongylocentrotus purpuratus) test and spine proteomes. 2008, Pubmed , Echinobase
Mathelier, JASPAR 2016: a major expansion and update of the open-access database of transcription factor binding profiles. 2016, Pubmed
McCauley, A conserved gene regulatory network subcircuit drives different developmental fates in the vegetal pole of highly divergent echinoderm embryos. 2010, Pubmed , Echinobase
Nishimura, Structure, regulation, and function of micro1 in the sea urchin Hemicentrotus pulcherrimus. 2004, Pubmed , Echinobase
Oliveri, A regulatory gene network that directs micromere specification in the sea urchin embryo. 2002, Pubmed , Echinobase
Oliveri, Global regulatory logic for specification of an embryonic cell lineage. 2008, Pubmed , Echinobase
Peng, Differential regulation of disheveled in a novel vegetal cortical domain in sea urchin eggs and embryos: implications for the localized activation of canonical Wnt signaling. 2013, Pubmed , Echinobase
Pisani, Resolving phylogenetic signal from noise when divergence is rapid: a new look at the old problem of echinoderm class relationships. 2012, Pubmed , Echinobase
Rafiq, Genome-wide analysis of the skeletogenic gene regulatory network of sea urchins. 2014, Pubmed , Echinobase
Rebeiz, Unraveling the Tangled Skein: The Evolution of Transcriptional Regulatory Networks in Development. 2015, Pubmed
Rebeiz, Enhancer evolution and the origins of morphological novelty. 2017, Pubmed
Richardson, Expression of an embryonic spicule matrix gene in calcified tissues of adult sea urchins. 1989, Pubmed , Echinobase
Shashikant, From genome to anatomy: The architecture and evolution of the skeletogenic gene regulatory network of sea urchins and other echinoderms. 2018, Pubmed , Echinobase
Shashikant, Global analysis of primary mesenchyme cell cis-regulatory modules by chromatin accessibility profiling. 2018, Pubmed , Echinobase
Smith, Automated tools for comparative sequence analysis of genic regions using the GenePalette application. 2017, Pubmed
Smith, From pattern to process: studies at the interface of gene regulatory networks, morphogenesis, and evolution. 2018, Pubmed
Stecher, Molecular Evolutionary Genetics Analysis (MEGA) for macOS. 2020, Pubmed
Sun, Signal-dependent regulation of the sea urchin skeletogenic gene regulatory network. 2014, Pubmed , Echinobase
Tu, Quantitative developmental transcriptomes of the sea urchin Strongylocentrotus purpuratus. 2014, Pubmed , Echinobase
Walters, Evolutionary analysis of the cis-regulatory region of the spicule matrix gene SM50 in strongylocentrotid sea urchins. 2008, Pubmed , Echinobase
Weitzel, Differential stability of beta-catenin along the animal-vegetal axis of the sea urchin embryo mediated by dishevelled. 2004, Pubmed , Echinobase
Wray, The evolutionary significance of cis-regulatory mutations. 2007, Pubmed