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1.
Development ; 145(6)2018 03 22.
Artículo en Inglés | MEDLINE | ID: mdl-29490982

RESUMEN

In tetrapods, Tbx4, Tbx5 and Hox cluster genes are crucial for forelimb and hindlimb development and mutations in these genes are responsible for congenital limb defects. The molecular basis of their integrated mechanisms of action in the context of limb development remains poorly understood. We studied Tbx4 and Hoxc10 owing to their overlapping loss-of-function phenotypes and colocalized expression in mouse hindlimb buds. We report an extensive overlap between Tbx4 and Hoxc10 genome occupancy and their putative target genes. Tbx4 and Hoxc10 interact directly with each other, have the ability to bind to a previously unrecognized T-box-Hox composite DNA motif and show synergistic activity when acting on reporter genes. Pitx1, the master regulator for hindlimb specification, also shows extensive genomic colocalization with Tbx4 and Hoxc10. Genome occupancy by Tbx4 in hindlimb buds is similar to Tbx5 occupancy in forelimbs. By contrast, another Hox factor, Hoxd13, also interacts with Tbx4/Tbx5 but antagonizes Tbx4/Tbx5-dependent transcriptional activity. Collectively, the modulation of Tbx-dependent activity by Hox factors acting on common DNA targets may integrate different developmental processes for the balanced formation of proportionate limbs.


Asunto(s)
Tipificación del Cuerpo/genética , Genes Homeobox/genética , Esbozos de los Miembros/metabolismo , Proteínas de Dominio T Box/metabolismo , Animales , Ensayo de Cambio de Movilidad Electroforética , Regulación del Desarrollo de la Expresión Génica , Miembro Posterior/metabolismo , Inmunoprecipitación , Ratones , Morfogénesis/genética , Factores de Transcripción Paired Box/metabolismo
2.
Development ; 144(18): 3325-3335, 2017 09 15.
Artículo en Inglés | MEDLINE | ID: mdl-28807899

RESUMEN

Forelimbs (FLs) and hindlimbs (HLs) develop complex musculoskeletal structures that rely on the deployment of a conserved developmental program. Pitx1, a transcription factor gene with expression restricted to HL and absent from FL, plays an important role in generating HL features. The genomic mechanisms by which Pitx1 effects HL identity remain poorly understood. Here, we use expression profiling and analysis of direct Pitx1 targets to characterize the HL- and FL-restricted genetic programs in mouse and situate the Pitx1-dependent gene network within the context of limb-specific gene regulation. We show that Pitx1 is a crucial component of a narrow network of HL-restricted regulators, acting on a developmental program that is shared between FL and HL. Pitx1 targets sites that are in a similar chromatin state in FL and HL and controls expression of patterning genes as well as the chondrogenic program, consistent with impaired chondrogenesis in Pitx1-/- HL. These findings support a model in which multifactorial actions of a limited number of HL regulators redirect the generic limb development program in order to generate the unique structural features of the limb.


Asunto(s)
Miembro Posterior/embriología , Miembro Posterior/metabolismo , Organogénesis , Factores de Transcripción Paired Box/metabolismo , Animales , Secuencia de Bases , Condrogénesis/genética , Embrión de Mamíferos/metabolismo , Elementos de Facilitación Genéticos/genética , Epigénesis Genética , Miembro Anterior/embriología , Miembro Anterior/metabolismo , Regulación del Desarrollo de la Expresión Génica , Redes Reguladoras de Genes , Sitios Genéticos , Genoma , Proteínas de Homeodominio/metabolismo , Ratones , Organogénesis/genética , Factor de Transcripción SOX9/metabolismo
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