为位置精度塑造形态发生梯度。
Shaping a morphogen gradient for positional precision.
机构信息
Division of Biomedical Informatics, Cincinnati Children's Hospital Research Foundation, Cincinnati, Ohio, USA.
出版信息
Biophys J. 2010 Aug 4;99(3):697-707. doi: 10.1016/j.bpj.2010.04.073.
Morphogen gradients, which provide positional information to cells in a developing tissue, could in principle adopt any nonuniform profile. To our knowledge, how the profile of a morphogen gradient affects positional precision has not been well studied experimentally. Here, we compare the positional precision provided by the Drosophila morphogenetic protein Bicoid (Bcd) in wild-type (wt) embryos with embryos lacking an interacting cofactor. The Bcd gradient in the latter case exhibits decreased positional precision around mid-embryo compared with its wt counterpart. The domain boundary of Hunchback (Hb), a target activated by Bcd, becomes more variable in mutant embryos. By considering embryo-to-embryo, internal, and measurement fluctuations, we dissect mathematically the relevant sources of fluctuations that contribute to the error in positional information. Using this approach, we show that the defect in Hb boundary positioning in mutant embryos is directly reflective of an altered Bcd gradient profile with increasing flatness toward mid-embryo. Furthermore, we find that noise in the Bcd input signal is dominated by internal fluctuations but, due to time and spatial averaging, the spatial precision of the Hb boundary is primarily affected by embryo-to-embryo variations. Our results demonstrate that the positional information provided by the wt Bcd gradient profile is highly precise and necessary for patterning precision.
形态发生素梯度为发育组织中的细胞提供位置信息,原则上可以采用任何非均匀分布的形态。据我们所知,形态发生素梯度的形态如何影响位置精度尚未得到很好的实验研究。在这里,我们比较了野生型(wt)胚胎和缺乏相互作用辅助因子的胚胎中果蝇形态发生蛋白 Bicoid(Bcd)提供的位置精度。在后一种情况下,Bcd 梯度在胚胎中部的位置精度与 wt 相比降低了。Bcd 激活的靶基因 Hunchback(Hb)的域边界在突变体胚胎中变得更加多变。通过考虑胚胎间、内部和测量波动,我们从数学上剖析了导致位置信息误差的相关波动源。通过这种方法,我们表明突变体胚胎中 Hb 边界定位的缺陷直接反映了 Bcd 梯度形态的改变,向胚胎中部变得更加平坦。此外,我们发现 Bcd 输入信号中的噪声主要由内部波动主导,但由于时间和空间平均,Hb 边界的空间精度主要受胚胎间变化的影响。我们的结果表明,wt Bcd 梯度形态提供的位置信息高度精确,是图案精确性所必需的。
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