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Id2在发育中的肢体中的表达与活跃的骨形态发生蛋白(BMP)信号传导区域相关,并标记了发育中手指的生长和分化区域。

Expression of Id2 in the developing limb is associated with zones of active BMP signaling and marks the regions of growth and differentiation of the developing digits.

作者信息

Lorda-Diez Carlos I, Torre-Pérez Nuria, García-Porrero Juan A, Hurle Juan M, Montero Juan A

机构信息

Departamento de Anatomía y Biología Celular, Universidad de Cantabria, Santander 39011, Spain.

出版信息

Int J Dev Biol. 2009;53(8-10):1495-502. doi: 10.1387/ijdb.072415cl.

Abstract

Here we report the pattern of expression of inhibitor of DNA binding/differentiation factor 2 (Id2) in the developing chicken limb. We show that prior to stage 25, Id2 is expressed in the anterior and posterior mesoderm, the AER, and in the early skeletal chondrogenic aggregates. At more advanced stages of limb development Id2 is expressed in the undifferentiated subectodermal and interdigital mesenchyme and exhibits specific domains of expression in the growing digits. These expression domains were closely coincident with zones of activation of BMP-signaling as deduced from the distribution of phosphorylated SMADs 1/5/8. In micromass cultures transcripts of Id2 are associated with the nodules of chondrogenic differentiation. Expression of Id2 both in vivo and in vitro was up-regulated in experiments of BMP-gain-of-function and down-regulated after treatments with BMP-antagonists. Interestingly, interdigital application of TGFbeta2 transiently upregulates Id2 in coincidence with the inhibition of interdigital cell death and the commitment of the interdigital mesenchyme to form an ectopic digit. These data suggest that Id2 is a molecular mediator of BMP signaling acting in concert with the TGFbeta pathway during the formation of the digits.

摘要

在此,我们报告了DNA结合/分化抑制因子2(Id2)在鸡胚肢体发育过程中的表达模式。我们发现,在第25阶段之前,Id2在前侧和后侧中胚层、顶外胚层嵴(AER)以及早期骨骼软骨生成聚集体中表达。在肢体发育的更高级阶段,Id2在未分化的皮下和指间间充质中表达,并在生长的指中呈现特定的表达区域。这些表达区域与根据磷酸化SMAD 1/5/8的分布推断出的BMP信号激活区域紧密重合。在微团培养中,Id2的转录本与软骨生成分化结节相关。在BMP功能获得实验中,Id2在体内和体外的表达均上调,而在用BMP拮抗剂处理后则下调。有趣的是,在指间应用TGFβ2会短暂上调Id2,同时抑制指间细胞死亡,并使指间间充质定向形成异位指。这些数据表明,Id2是BMP信号的分子介质,在指形成过程中与TGFβ途径协同作用。

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