Eshkar-Oren Idit, Krief Sharon, Ferrara Napoleone, Elliott Alison M, Zelzer Elazar
Department of Molecular Genetics, Weizmann Institute of Science, Rehovot 76100, Israel.
Genentech, Inc., 1 DNA Way, S. San Francisco, CA 94080, USA.
Development. 2015 Feb 15;142(4):672-80. doi: 10.1242/dev.120279. Epub 2015 Jan 23.
Blood vessels serve as key regulators of organogenesis by providing oxygen, nutrients and molecular signals. During limb development, programmed cell death (PCD) contributes to separation of the digits. Interestingly, prior to the onset of PCD, the autopod vasculature undergoes extensive patterning that results in high interdigital vascularity. Here, we show that in mice, the limb vasculature positively regulates interdigital PCD. In vivo, reduction in interdigital vessel number inhibited PCD, resulting in syndactyly, whereas an increment in vessel number and distribution resulted in elevation and expansion of PCD. Production of reactive oxygen species (ROS), toxic compounds that have been implicated in PCD, also depended on interdigital vascular patterning. Finally, ex vivo incubation of limbs in gradually decreasing oxygen levels led to a correlated reduction in both ROS production and interdigital PCD. The results support a role for oxygen in these processes and provide a mechanistic explanation for the counterintuitive positive role of the vasculature in PCD. In conclusion, we suggest a new role for vascular patterning during limb development in regulating interdigital PCD by ROS production. More broadly, we propose a double safety mechanism that restricts PCD to interdigital areas, as the genetic program of PCD provides the first layer and vascular patterning serves as the second.
血管通过提供氧气、营养物质和分子信号,成为器官发生的关键调节因子。在肢体发育过程中,程序性细胞死亡(PCD)有助于指(趾)的分离。有趣的是,在PCD开始之前,肢体自端部血管系统会经历广泛的模式形成,导致指(趾)间血管丰富。在此,我们表明在小鼠中,肢体血管系统对指(趾)间PCD起正向调节作用。在体内,指(趾)间血管数量减少会抑制PCD,导致并指(趾)畸形,而血管数量和分布增加则会导致PCD加剧和扩展。活性氧(ROS)是与PCD相关的有毒化合物,其产生也依赖于指(趾)间血管模式形成。最后,将肢体在逐渐降低的氧气水平下进行离体培养,会导致ROS产生和指(趾)间PCD都相应减少。这些结果支持了氧气在这些过程中的作用,并为血管系统在PCD中违反直觉的正向作用提供了机制解释。总之,我们提出了肢体发育过程中血管模式形成在通过ROS产生调节指(趾)间PCD方面的新作用。更广泛地说,我们提出了一种双重安全机制,将PCD限制在指(趾)间区域,因为PCD的遗传程序提供了第一层,而血管模式形成则作为第二层。