{"id":{"repo_id":"uthsc","oai_identifier":"oai:digitalcommons.library.tmc.edu:utgsbs_dissertations-1240"},"canonical_url":"https://search.dev.ndltd.org/etd/uthsc/oai:digitalcommons.library.tmc.edu:utgsbs_dissertations-1240","repository":{"repo_id":"uthsc","name":"University of Texas Health Science Center at Houston","base_url":"https://digitalcommons.library.tmc.edu/do/oai/"},"display":{"title":"Bmp-Signaling Regulates A Common Transcriptional Program to Control Facial Form and Skeletal Morphogenesis","abstract":"<p>Much of the craniofacial skeleton, such as the skull vault, mandible and midface, develops through direct, intramembranous ossification of the cranial neural crest (CNC) derived progenitor cells. Bmp-signaling plays critical roles in normal craniofacial development, and Bmp4 deficiency results in craniofacial abnormalities, such as cleft lip and palate. We performed an in depth analysis of <em>Bmp4</em>, a critical regulator of development, disease, and evolution, in the CNC. Conditional <em>Bmp4</em> overexpression, using a tetracycline regulated <em>Bmp4</em> gain of function allele, resulted in facial form changes that were most dramatic after an E10.5 <em>Bmp4 </em>induction. Expression profiling uncovered a signature of Bmp4 induced genes (BIG) composed predominantly of transcriptional regulators controlling self-renewal, osteoblast differentiation, and negative Bmp autoregulation. The complimentary experiment, CNC inactivation of <em>Bmp2</em>, <em>Bmp4</em>, and <em>Bmp7</em>, resulted in complete or partial loss of multiple CNC derived skeletal elements revealing a critical requirement for Bmp-signaling in membranous bone and cartilage development. Importantly, the BIG signature was reduced in Bmp loss of function mutants indicating similar Bmp-regulated target genes underlying facial form modulation and normal skeletal morphogenesis. Chromatin immunoprecipitation (ChIP) revealed a subset of the BIG signature, including <em>Satb2, Smad6</em>, <em>Hand1, Gadd45</em><em>g</em> and <em>Gata3</em> that was bound by Smad1/5 in the developing mandible revealing direct, Smad-mediated regulation. These data indicate that Bmp-signaling regulates craniofacial skeletal development and facial form by balancing self-renewal and differentiation pathways in CNC progenitors.</p>","abstract_html":"&lt;p&gt;Much of the craniofacial skeleton, such as the skull vault, mandible and midface, develops through direct, intramembranous ossification of the cranial neural crest (CNC) derived progenitor cells. Bmp-signaling plays critical roles in normal craniofacial development, and Bmp4 deficiency results in craniofacial abnormalities, such as cleft lip and palate. We performed an in depth analysis of &lt;em&gt;Bmp4&lt;/em&gt;, a critical regulator of development, disease, and evolution, in the CNC. Conditional &lt;em&gt;Bmp4&lt;/em&gt; overexpression, using a tetracycline regulated &lt;em&gt;Bmp4&lt;/em&gt; gain of function allele, resulted in facial form changes that were most dramatic after an E10.5 &lt;em&gt;Bmp4 &lt;/em&gt;induction. Expression profiling uncovered a signature of Bmp4 induced genes (BIG) composed predominantly of transcriptional regulators controlling self-renewal, osteoblast differentiation, and negative Bmp autoregulation. The complimentary experiment, CNC inactivation of &lt;em&gt;Bmp2&lt;/em&gt;, &lt;em&gt;Bmp4&lt;/em&gt;, and &lt;em&gt;Bmp7&lt;/em&gt;, resulted in complete or partial loss of multiple CNC derived skeletal elements revealing a critical requirement for Bmp-signaling in membranous bone and cartilage development. Importantly, the BIG signature was reduced in Bmp loss of function mutants indicating similar Bmp-regulated target genes underlying facial form modulation and normal skeletal morphogenesis. Chromatin immunoprecipitation (ChIP) revealed a subset of the BIG signature, including &lt;em&gt;Satb2, Smad6&lt;/em&gt;, &lt;em&gt;Hand1, Gadd45&lt;/em&gt;&lt;em&gt;g&lt;/em&gt; and &lt;em&gt;Gata3&lt;/em&gt; that was bound by Smad1/5 in the developing mandible revealing direct, Smad-mediated regulation. These data indicate that Bmp-signaling regulates craniofacial skeletal development and facial form by balancing self-renewal and differentiation pathways in CNC progenitors.&lt;/p&gt;","abstract_has_math":false,"creators":["Bonilla-Claudio, Margarita"],"institution":null,"degree_name":"Doctor of Philosophy (PhD)","degree_level":"Dissertation (PhD)","degree_discipline":null,"degree_department":null,"school":null,"contributors":["James F. Martin, M.D., Ph.D.","Yasuhide Furuta, Ph.D.","Mingyao Lui, Ph.D."],"advisors":[],"committee_chairs":[],"committee_members":[],"year":2011,"date_issued":"2011-12-01T08:00:00Z","date_published":"2011-12-01T08:00:00Z","updated_at":"2026-07-24T05:49:16Z","subjects":["Bone morphogenetic protein","morphogenesis","neural crest","Medicine and Health Sciences"],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":"https://digitalcommons.library.tmc.edu/utgsbs_dissertations/210","outbound_label":"Repository record","outbound_source":"dc:identifier"},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor","label":"Contributor","values":["James F. 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Bmp-signaling plays critical roles in normal craniofacial development, and Bmp4 deficiency results in craniofacial abnormalities, such as cleft lip and palate. We performed an in depth analysis of <em>Bmp4</em>, a critical regulator of development, disease, and evolution, in the CNC. Conditional <em>Bmp4</em> overexpression, using a tetracycline regulated <em>Bmp4</em> gain of function allele, resulted in facial form changes that were most dramatic after an E10.5 <em>Bmp4 </em>induction. Expression profiling uncovered a signature of Bmp4 induced genes (BIG) composed predominantly of transcriptional regulators controlling self-renewal, osteoblast differentiation, and negative Bmp autoregulation. The complimentary experiment, CNC inactivation of <em>Bmp2</em>, <em>Bmp4</em>, and <em>Bmp7</em>, resulted in complete or partial loss of multiple CNC derived skeletal elements revealing a critical requirement for Bmp-signaling in membranous bone and cartilage development. Importantly, the BIG signature was reduced in Bmp loss of function mutants indicating similar Bmp-regulated target genes underlying facial form modulation and normal skeletal morphogenesis. Chromatin immunoprecipitation (ChIP) revealed a subset of the BIG signature, including <em>Satb2, Smad6</em>, <em>Hand1, Gadd45</em><em>g</em> and <em>Gata3</em> that was bound by Smad1/5 in the developing mandible revealing direct, Smad-mediated regulation. These data indicate that Bmp-signaling regulates craniofacial skeletal development and facial form by balancing self-renewal and differentiation pathways in CNC progenitors.</p>"]},{"key":"dc:title","label":"Title","values":["Bmp-Signaling Regulates A Common Transcriptional Program to Control Facial Form and Skeletal Morphogenesis"]}]}],"canonical_facts":{"dc:contributor":["James F. Martin, M.D., Ph.D.","Yasuhide Furuta, Ph.D.","Mingyao Lui, Ph.D."],"dc:creator":["Bonilla-Claudio, Margarita"],"dc:date.available":["2011-12-16T08:00:00Z"],"dc:description.abstract":["<p>Much of the craniofacial skeleton, such as the skull vault, mandible and midface, develops through direct, intramembranous ossification of the cranial neural crest (CNC) derived progenitor cells. Bmp-signaling plays critical roles in normal craniofacial development, and Bmp4 deficiency results in craniofacial abnormalities, such as cleft lip and palate. We performed an in depth analysis of <em>Bmp4</em>, a critical regulator of development, disease, and evolution, in the CNC. Conditional <em>Bmp4</em> overexpression, using a tetracycline regulated <em>Bmp4</em> gain of function allele, resulted in facial form changes that were most dramatic after an E10.5 <em>Bmp4 </em>induction. Expression profiling uncovered a signature of Bmp4 induced genes (BIG) composed predominantly of transcriptional regulators controlling self-renewal, osteoblast differentiation, and negative Bmp autoregulation. The complimentary experiment, CNC inactivation of <em>Bmp2</em>, <em>Bmp4</em>, and <em>Bmp7</em>, resulted in complete or partial loss of multiple CNC derived skeletal elements revealing a critical requirement for Bmp-signaling in membranous bone and cartilage development. Importantly, the BIG signature was reduced in Bmp loss of function mutants indicating similar Bmp-regulated target genes underlying facial form modulation and normal skeletal morphogenesis. Chromatin immunoprecipitation (ChIP) revealed a subset of the BIG signature, including <em>Satb2, Smad6</em>, <em>Hand1, Gadd45</em><em>g</em> and <em>Gata3</em> that was bound by Smad1/5 in the developing mandible revealing direct, Smad-mediated regulation. These data indicate that Bmp-signaling regulates craniofacial skeletal development and facial form by balancing self-renewal and differentiation pathways in CNC progenitors.</p>"],"dc:identifier":["https://digitalcommons.library.tmc.edu/utgsbs_dissertations/210"],"dc:subject":["Bone morphogenetic protein","morphogenesis","neural crest","Medicine and Health Sciences"],"dc:title":["Bmp-Signaling Regulates A Common Transcriptional Program to Control Facial Form and Skeletal Morphogenesis"],"thesis:degree_level":["Dissertation (PhD)"],"thesis:degree_name":["Doctor of Philosophy (PhD)"]},"updated_at":"2026-07-24T05:49:16Z"}