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Development of five digits is controlled by a bipartite long-range cis-regulator

机译:二位数远程顺式调节器控制五位数的发展

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Conservation within intergenic DNA often highlights regulatory elements that controlgene expression from along range. How conservation within a single element relates to regulatory information and how internal composition relates to function is unknown. Here, we examine the structural features of the highly conservedZRS (also called MFCS1)cis-regulator responsible for the spatiotemporal control of Shh in the limb bud. By systematically dissecting the ZRS, both in transgenic assays and within in the endogenous locus, we show that the ZRS is, in effect, composed of two distinct domains of activity: one domain directs spatiotemporal activity but functions predominantly from a short range, where as a second domain is required to promote long-range activity. We show further that these two domains encode activities that are highly integrated and that the second domain is crucial in promoting the chromosomal conformational changes correlated with gene activity. During limb bud development, these activities encoded by the ZRS are interpreted differently by the fore limbs and the hindlimbs;in the absence of the second domain there is no Shh activity in the fore limb, and in the hind limb low levels of Shh lead to avariant digit pattern ranging from two to four digits. Hence, in the embryo, the second domain stabilises the developmental programme providing a buffer for SHH morphogen activity and this ensures that five digits form in both sets of limbs.
机译:基因间DNA内的保守性通常突显出从各个方面控制基因表达的调节元件。单个元素内的保护如何与监管信息相关以及内部组成与功能如何相关尚不清楚。在这里,我们检查了高度保守的ZRS(也称为MFCS1)顺式调节子的结构特征,该调节子负责肢芽中Shh的时空控制。通过在转基因试验和内源性位点内系统解剖ZRS,我们显示ZRS实际上是由两个不同的活性域组成:一个域指导时空活动,但主要在短距离内起作用,其中需要第二个域来促进远程活动。我们进一步表明,这两个域编码高度集成的活动,第二个域在促进与基因活性相关的染色体构象变化中至关重要。在肢芽发育过程中,ZRS编码的这些活动对于前肢和后肢的解释不同;在没有第二域的情况下,前肢没有Shh活性,而在后肢中,低Shh导致可变数字模式,范围为2到4位数。因此,在胚胎中,第二个结构域稳定了发育程序,为SHH形态发生子的活性提供了缓冲,并确保了在两组肢体中都形成五个手指。

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