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迂回的遗传调控控制着简单的细胞迁移。

Circuitous Genetic Regulation Governs a Straightforward Cell Migration.

机构信息

Department of Biological Sciences, University of Maryland Baltimore County, Baltimore, MD 21250, USA.

Department of Biological Sciences, University of Maryland Baltimore County, Baltimore, MD 21250, USA.

出版信息

Trends Genet. 2016 Oct;32(10):660-673. doi: 10.1016/j.tig.2016.08.001. Epub 2016 Sep 3.

Abstract

Drosophila border cells undergo a straightforward and stereotypical collective migration during egg development. However, a complex genetic program underlies this process. A variety of approaches, including biochemical, genetic, and imaging strategies have identified many regulatory components, revealing layers of control. This complexity suggests that the active processes of evaluating the environment, remodeling the cytoskeleton, and coordinating movements among cells, demand rapid systems for modulating cell behaviors. Multiple signaling inputs, nodes of integration, and feedback loops act as molecular rheostats to fine-tune gene expression levels and physical responses. Since key genetic regulators of border cell migration have been shown to be required in other types of cell migration, this model system continues to provide an important avenue for genetic discovery.

摘要

果蝇缘细胞在卵发育过程中经历一个简单而典型的集体迁移。然而,这个过程的基础是一个复杂的遗传程序。多种方法,包括生化、遗传和成像策略,已经确定了许多调节成分,揭示了多层次的控制。这种复杂性表明,评估环境、重塑细胞骨架和协调细胞间运动的主动过程需要快速的系统来调节细胞行为。多个信号输入、整合节点和反馈回路充当分子变阻器,以微调基因表达水平和物理反应。由于已经表明,边缘细胞迁移的关键遗传调节剂在其他类型的细胞迁移中也是必需的,因此这个模型系统继续为遗传发现提供了一个重要途径。

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