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Dpp 信号转导和增殖控制的动力学。

Dynamics of Dpp signaling and proliferation control.

机构信息

Department of Biochemistry, Faculty of Sciences, Geneva University, 30 Quai Ernest-Ansermet, 1211 Geneva, Switzerland.

出版信息

Science. 2011 Mar 4;331(6021):1154-9. doi: 10.1126/science.1200037.

Abstract

Morphogens, such as Decapentaplegic (Dpp) in the fly imaginal discs, form graded concentration profiles that control patterning and growth of developing organs. In the imaginal discs, proliferative growth is homogeneous in space, posing the conundrum of how morphogen concentration gradients could control position-independent growth. To understand the mechanism of proliferation control by the Dpp gradient, we quantified Dpp concentration and signaling levels during wing disc growth. Both Dpp concentration and signaling gradients scale with tissue size during development. On average, cells divide when Dpp signaling levels have increased by 50%. Our observations are consistent with a growth control mechanism based on temporal changes of cellular morphogen signaling levels. For a scaling gradient, this mechanism generates position-independent growth rates.

摘要

形态发生素,如果蝇的成虫盘上的 Decapentaplegic(Dpp),形成了控制发育器官的模式和生长的浓度梯度。在成虫盘中,增殖生长在空间上是均匀的,这就提出了一个难题,即形态发生素浓度梯度如何控制与位置无关的生长。为了理解 Dpp 梯度对增殖的控制机制,我们在翅膀盘生长过程中定量了 Dpp 浓度和信号水平。在发育过程中,Dpp 浓度和信号梯度都与组织大小成比例。平均而言,当 Dpp 信号水平增加 50%时,细胞就会分裂。我们的观察结果与基于细胞形态发生素信号水平的时间变化的生长控制机制一致。对于比例梯度,这种机制产生了与位置无关的生长速率。

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