Department of Biochemistry, University of Washington, Seattle, WA, USA.
Dev Biol. 2011 Jun 1;354(1):102-10. doi: 10.1016/j.ydbio.2011.03.025. Epub 2011 Apr 2.
The process of gastrulation is highly conserved across vertebrates on both the genetic and morphological levels, despite great variety in embryonic shape and speed of development. This mechanism spatially separates the germ layers and establishes the organizational foundation for future development. Mesodermal identity is specified in a superficial layer of cells, the epiblast, where cells maintain an epithelioid morphology. These cells involute to join the deeper hypoblast layer where they adopt a migratory, mesenchymal morphology. Expression of a cascade of related transcription factors orchestrates the parallel genetic transition from primitive to mature mesoderm. Although the early and late stages of this process are increasingly well understood, the transition between them has remained largely mysterious. We present here the first high resolution in vivo observations of the blebby transitional morphology of involuting mesodermal cells in a vertebrate embryo. We further demonstrate that the zebrafish spadetail mutation creates a reversible block in the maturation program, stalling cells in the transition state. This mutation creates an ideal system for dissecting the specific properties of cells undergoing the morphological transition of maturing mesoderm, as we demonstrate with a direct measurement of cell-cell adhesion.
尽管在胚胎形状和发育速度上存在巨大差异,但在遗传和形态水平上,脊椎动物的原肠胚形成过程高度保守。这个机制在胚胎的外胚层中空间上分离了胚层,并为未来的发育建立了组织基础。中胚层的身份在细胞的浅层,即外胚层中被指定,这些细胞保持上皮样形态。这些细胞内卷以加入更深的下胚层,在那里它们采用迁移的间质形态。一系列相关转录因子的表达协调了从原始到成熟中胚层的平行遗传转变。尽管这个过程的早期和晚期阶段越来越被理解,但它们之间的过渡仍然很大程度上是神秘的。我们在这里首次展示了在脊椎动物胚胎中内卷的中胚层细胞的泡状过渡形态的高分辨率体内观察结果。我们进一步证明,斑马鱼 spadetail 突变在成熟程序中产生了一个可逆的阻断,使细胞停滞在过渡状态。这个突变创造了一个理想的系统,可以分离正在经历成熟中胚层形态转变的细胞的特定特性,我们通过对细胞-细胞粘附的直接测量证明了这一点。