Negrón-Piñeiro Lenny J, Wu Yushi, Mehta Ravij, Maguire Julie E, Chou Cindy, Lee Joyce, Dahia Chitra L, Di Gregorio Anna
Department of Molecular Pathobiology, New York University College of Dentistry, 345 E 24th Street, New York, NY 10010, USA.
Orthopedic Soft Tissue Research Program, Hospital for Special Surgery, New York, NY 10021, USA.
Int J Mol Sci. 2024 Dec 20;25(24):13631. doi: 10.3390/ijms252413631.
The notochord is an axial structure required for the development of all chordate embryos, from sea squirts to humans. Over the course of more than half a billion years of chordate evolution, in addition to its structural function, the notochord has acquired increasingly relevant patterning roles for its surrounding tissues. This process has involved the co-option of signaling pathways and the acquisition of novel molecular mechanisms responsible for the precise timing and modalities of their deployment. To reconstruct this evolutionary route, we surveyed the expression of signaling molecules in the notochord of the tunicate , an experimentally amenable and informative chordate. We found that several genes encoding for candidate components of diverse signaling pathways are expressed during notochord development, and in some instances, display distinctive regionalized and/or lineage-specific patterns. We identified and deconstructed notochord enhancers associated with and , two evolutionarily conserved signaling genes that are expressed dishomogeneously in the notochord, and shed light on the -regulatory origins of their peculiar expression patterns.
脊索是所有脊索动物胚胎发育所必需的一种轴向结构,从海鞘到人类皆是如此。在超过五亿年的脊索动物进化过程中,除了其结构功能外,脊索对其周围组织的模式形成作用也越来越重要。这个过程涉及信号通路的共同选择以及负责其精确时间和方式的新分子机制的获得。为了重建这条进化途径,我们研究了被囊动物脊索中信号分子的表达,被囊动物是一种易于实验操作且信息丰富的脊索动物。我们发现,在脊索发育过程中,几个编码不同信号通路候选成分的基因会表达,并且在某些情况下,呈现出独特的区域化和/或谱系特异性模式。我们鉴定并解构了与[具体基因1]和[具体基因2]相关的脊索增强子,这两个在进化上保守的信号基因在[被囊动物名称]的脊索中表达不均一,从而揭示了它们独特表达模式的[具体基因]调控起源。