Liu Andrew, O'Connell Jessica, Wall Farley, Carthew Richard W
Department of Molecular Biosciences, Northwestern University, Evanston IL.
NSF-Simons Center for Quantitative Biology, Northwestern University, Evanston IL.
bioRxiv. 2024 Apr 12:2023.08.01.551465. doi: 10.1101/2023.08.01.551465.
The atypical cadherins Fat and Dachsous (Ds) signal through the Hippo pathway to regulate growth of numerous organs, including the wing. Here, we find that Ds-Fat signaling tunes a unique feature of cell proliferation found to control the rate of wing growth during the third instar larval phase. The duration of the cell cycle increases in direct proportion to the size of the wing, leading to linear-like growth during the third instar. Ds-Fat signaling enhances the rate at which the cell cycle lengthens with wing size, thus diminishing the rate of wing growth. We show that this results in a complex but stereotyped relative scaling of wing growth with body growth in . Finally, we examine the dynamics of Fat and Ds protein distribution in the wing, observing graded distributions that change during growth. However, the significance of these dynamics is unclear since perturbations in expression have negligible impact on wing growth.
非典型钙黏蛋白Fat和Dachsous(Ds)通过Hippo信号通路发挥作用,调控包括翅膀在内的众多器官的生长。在此,我们发现Ds-Fat信号传导调节细胞增殖的一个独特特征,该特征被发现可控制三龄幼虫期翅膀的生长速率。细胞周期的持续时间与翅膀大小成正比增加,导致三龄期出现类似线性的生长。Ds-Fat信号传导增强了细胞周期随翅膀大小延长的速率,从而降低了翅膀的生长速率。我们表明,这导致了翅膀生长与身体生长之间复杂但刻板的相对比例关系。最后,我们研究了翅膀中Fat和Ds蛋白分布的动态变化,观察到其梯度分布在生长过程中发生变化。然而,这些动态变化的意义尚不清楚,因为表达的扰动对翅膀生长的影响可忽略不计。