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mRNA 扩散解释了果蝇早期发育中的蛋白质梯度。

mRNA diffusion explains protein gradients in Drosophila early development.

机构信息

Nonlinear Dynamics Group, Instituto Superior Técnico Av. Rovisco Pais, 1049-001 Lisbon, Portugal.

出版信息

J Theor Biol. 2010 Jun 7;264(3):847-53. doi: 10.1016/j.jtbi.2010.03.012. Epub 2010 Mar 15.

Abstract

We propose a new model describing the production and the establishment of the stable gradient of the Bicoid protein along the antero-posterior axis of the embryo of Drosophila. In this model, we consider that bicoid mRNA diffuses along the antero-posterior axis of the embryo and the protein is produced in the ribosomes localized near the syncytial nuclei. Bicoid protein stays localized near the syncytial nuclei as observed in experiments. We calibrate the parameters of the mathematical model with experimental data taken during the cleavage stages 11-14 of the developing embryo of Drosophila. We obtain good agreement between the experimental and the model gradients, with relative errors in the range 5-8%. The inferred diffusion coefficient of bicoid mRNA is in the range 4.6 x 10(-12)-1.5 x 10(-11)m(2)s(-1), in agreement with the theoretical predictions and experimental measurements for the diffusion of macromolecules in the cytoplasm. We show that the model based on the mRNA diffusion hypothesis is consistent with the known observational data, supporting the recent experimental findings of the gradient of bicoid mRNA in Drosophila [Spirov et al. (2009). Development 136, 605-614].

摘要

我们提出了一个新的模型来描述果蝇胚胎前-后轴上 Bicoid 蛋白的产生和稳定梯度的建立。在这个模型中,我们认为 bicoid mRNA 沿着胚胎的前-后轴扩散,而蛋白质是在靠近合胞体核的核糖体上产生的。正如实验中观察到的那样,Bicoid 蛋白保持在靠近合胞体核的位置。我们用取自果蝇胚胎发育的分裂阶段 11-14 的实验数据来校准数学模型的参数。我们得到了实验和模型梯度之间的良好一致性,相对误差在 5-8%范围内。推断出的 Bicoid mRNA 的扩散系数在 4.6 x 10(-12)-1.5 x 10(-11)m(2)s(-1)范围内,与大分子在细胞质中扩散的理论预测和实验测量结果一致。我们表明,基于 mRNA 扩散假设的模型与已知的观测数据一致,支持了最近关于果蝇 Bicoid mRNA 梯度的实验发现[Spirov 等人(2009 年)。发育 136, 605-614]。

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