Analysis of the molecular cascade responsible for mesodermal limb chondrogenesis: sox genes and BMP signaling
Here, we have studied how Sox genes and BMP signaling are functionally coupled during limb chondrogenesis. Using the experimental model of TGFβ1-induced interdigital digits, we dissect the sequence of morphological and molecular events during in vivo chondrogenesis. Our results show that Sox8 and So...
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Veröffentlicht in: | Developmental biology 2003-05, Vol.257 (2), p.292-301 |
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Sprache: | eng |
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Zusammenfassung: | Here, we have studied how
Sox genes and BMP signaling are functionally coupled during limb chondrogenesis. Using the experimental model of TGFβ1-induced interdigital digits, we dissect the sequence of morphological and molecular events during in vivo chondrogenesis. Our results show that
Sox8 and
Sox9 are the most precocious markers of limb cartilage, and their induction is independent and precedes the activation of BMP signaling.
Sox10 appears also to cooperate with
Sox9 and
Sox8 in the establishment of the digit cartilages. In addition, we show that experimental induction of
Sox gene expression in the interdigital mesoderm is accompanied by loss of the apoptotic response to exogenous BMPs.
L-Sox5 and
Sox6 are respectively induced coincident and after the expression of
Bmpr1b in the prechondrogenic aggregate, and their activation correlates with the induction of
Type II Collagen and
Aggrecan genes in the differentiating cartilages. The expression of
Bmpr1b precedes the appearance of morphological changes in the prechondrogenic aggregate and establishes a landmark from which the maintenance of the expression of all
Sox genes and the progress of cartilage differentiation becomes dependent on BMPs. Moreover, we show that
Ventroptin precedes
Noggin in the modulation of BMP activity in the developing cartilages. In summary, our findings suggest that
Sox8, Sox9, and Sox10 have a cooperative function conferring chondrogenic competence to limb mesoderm in response to BMP signals. In turn, BMPs in concert with
Sox9, Sox6, and
L-Sox5 would be responsible for the execution and maintenance of the cartilage differentiation program. |
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ISSN: | 0012-1606 1095-564X |
DOI: | 10.1016/S0012-1606(03)00066-6 |