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Divergent transcriptional activities determine limb identity

机译:不同的转录活动决定肢体身份

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摘要

Limbs develop using a common genetic programme despite widely differing morphologies. This programme is modulated by limb-restricted regulators such as hindlimb (HL) transcription factors Pitx1 and Tbx4 and the forelimb (FL) Tbx5. Both Tbx factors have been implicated in limb patterning and growth, but their relative activities and underlying mechanisms remain unclear. In this paper, we show that Tbx4 and Tbx5 harbour conserved and divergent transcriptional regulatory domains that account for their roles in limb development. In particular, both factors share an activator domain and the ability to stimulate limb growth. However, we find that Tbx4 is the primary effector of HL identity for both skeletal and muscle development; this activity relies on a repressor domain that is inactivated by a human TBX4 small-patella syndrome mutation. We propose that limb identity is largely achieved by default in FL, whereas a specific repressor activity unique to Tbx4 determines HL identity.
机译:尽管形态差异很大,但仍使用通用的遗传程序发育肢体。该程序由肢体受限的调节器(例如后肢(HL)转录因子Pitx1和Tbx4和前肢(FL)Tbx5)调节。这两种Tbx因子都与肢体的形成和生长有关,但它们的相对活动和潜在机制仍不清楚。在本文中,我们表明Tbx4和Tbx5包含保守和不同的转录调节域,这说明它们在肢体发育中的作用。特别地,这两个因素共享一个激活域和刺激肢体生长的能力。但是,我们发现Tbx4是HL身份对于骨骼和肌肉发育的主要影响因子;该活性依赖于被人TBX4小-骨综合征突变灭活的阻遏物结构域。我们提议在FL中默认情况下很大程度上实现肢体身份,而Tbx4特有的特定阻遏物活性决定了HL身份。

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