Dipartimento di Scienze e Tecnologie Molecolari e Biomolecolari STEMBIO, Università di Palermo, Viale delle Scienze Edificio 16, 90128 Palermo, Italy.
Development. 2011 Oct;138(19):4279-90. doi: 10.1242/dev.066480.
In the indirect developing sea urchin embryo, the primary mesenchyme cells (PMCs) acquire most of the positional and temporal information from the overlying ectoderm for skeletal initiation and growth. In this study, we characterize the function of the novel gene strim1, which encodes a tripartite motif-containing (TRIM) protein, that adds to the list of genes constituting the epithelial-mesenchymal signaling network. We report that strim1 is expressed in ectoderm regions adjacent to the bilateral clusters of PMCs and that its misexpression leads to severe skeletal abnormalities. Reciprocally, knock down of strim1 function abrogates PMC positioning and blocks skeletogenesis. Blastomere transplantation experiments establish that the defects in PMC patterning, number and skeletal growth depend upon strim1 misexpression in ectoderm cells. Furthermore, clonal expression of strim1 into knocked down embryos locally restores skeletogenesis. We also provide evidence that the Otp and Pax2/5/8 regulators, as well as FGFA, but not VEGF, ligand act downstream to strim1 in ectoderm cells, and that strim1 triggers the expression of the PMC marker sm30, an ectoderm-signaling dependent gene. We conclude that the strim1 function elicits specific gene expression both in ectoderm cells and PMCs to guide the skeletal biomineralization during morphogenesis.
在间接发育的海胆胚胎中,初级间质细胞 (PMCs) 从上方的外胚层获得了大部分的位置和时间信息,以启动和生长骨骼。在这项研究中,我们描述了一个新基因 strim1 的功能,该基因编码一种含有三部分结构域的 (TRIM) 蛋白,它增加了构成上皮-间质信号网络的基因列表。我们报告说 strim1 在与双侧 PMC 簇相邻的外胚层区域表达,其异常表达导致严重的骨骼异常。相反,strim1 功能的敲低会破坏 PMC 的定位并阻止骨骼发生。胚胎裂球移植实验表明,PMC 模式、数量和骨骼生长的缺陷取决于外胚层细胞中 strim1 的异常表达。此外,strim1 在敲低的胚胎中进行克隆表达可局部恢复骨骼发生。我们还提供了证据表明,Otp 和 Pax2/5/8 调节剂以及 FGFA,但不是 VEGF 配体,在 ectoderm 细胞中作为 strim1 的下游因子起作用,并且 strim1 触发了 PMC 标记物 sm30 的表达,这是一个依赖于 ectoderm 信号的基因。我们得出结论,strim1 的功能在外胚层细胞和 PMCs 中引发了特定的基因表达,以指导形态发生过程中的骨骼生物矿化。