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BMP 信号梯度在斑马鱼胸鳍中的缩放。

BMP Signaling Gradient Scaling in the Zebrafish Pectoral Fin.

机构信息

Department of Biochemistry, Faculty of Sciences, University of Geneva, Switzerland.

Max Planck Institute for the Physics of Complex Systems, Dresden, Germany.

出版信息

Cell Rep. 2020 Mar 24;30(12):4292-4302.e7. doi: 10.1016/j.celrep.2020.03.024.

Abstract

Secreted growth factors can act as morphogens that form spatial concentration gradients in developing organs, thereby controlling growth and patterning. For some morphogens, adaptation of the gradients to tissue size allows morphological patterns to remain proportioned as the organs grow. In the zebrafish pectoral fin, we found that BMP signaling forms a two-dimensional gradient. The length of the gradient scales with tissue length and its amplitude increases with fin size according to a power-law. Gradient scaling and amplitude power-laws are signatures of growth control by time derivatives of morphogenetic signaling: cell division correlates with the fold change over time of the cellular signaling levels. We show that Smoc1 regulates BMP gradient scaling and growth in the fin. Smoc1 scales the gradient by means of a feedback loop: Smoc1 is a BMP agonist and BMP signaling represses Smoc1 expression. Our work uncovers a layer of morphogen regulation during vertebrate appendage development.

摘要

分泌的生长因子可以作为形态发生素,在发育器官中形成空间浓度梯度,从而控制生长和模式形成。对于一些形态发生素来说,梯度适应组织大小的能力可以使形态模式在器官生长过程中保持比例。在斑马鱼的胸鳍中,我们发现 BMP 信号形成二维梯度。梯度的长度与组织长度成比例,其幅度根据幂律随着鳍的大小而增加。梯度缩放和幅度幂律是形态发生信号时间导数控制生长的特征:细胞分裂与细胞信号水平随时间的折叠变化相关。我们表明 Smoc1 调节鳍中的 BMP 梯度缩放和生长。Smoc1 通过反馈回路来缩放梯度:Smoc1 是 BMP 激动剂,BMP 信号抑制 Smoc1 的表达。我们的工作揭示了脊椎动物附肢发育过程中形态发生素调节的一个层次。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b5c/7109522/249c24d1f989/fx1.jpg

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