首页> 外文期刊>Marine biotechnology >PfSMAD1/5 Can Interact with PfSMAD4 to Inhibit PfMSX to Regulate Shell Biomineralization in Pinctada fucata martensii
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PfSMAD1/5 Can Interact with PfSMAD4 to Inhibit PfMSX to Regulate Shell Biomineralization in Pinctada fucata martensii

机译:Pfsmad1 / 5可以与pfsmad4相互作用以抑制Pfmsx在Pinctada Fucata Martensii中调节壳生物铝化

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The BMP2 signal transduced by SMAD1/5 plays an important role in osteoblast differentiation and bone formation. Shell formation of Pinctada fucata martensii is a typical biomineralization process that is similar to that of teeth/bone formation. However, whether the Pinctada fucata BMP2 (PfBMP2) signal transduced by PfSMAD1/5 occurs in P. f. martensii, how the PfBMP2 signal is transduced by PfSMAD1/5, and how PfSMAD1/5 regulates the biomineralization process in this species and other shellfish are poorly understood. Therefore, injection experiments of recombinant PfBMP2 and inhibitor dorsomorphin revealed that PfSMAD1/5 can transduce PfBMP2 signals. Subcellular localization and bimolecular fluorescence complementation assays indicated that PfSMAD1/5 phosphorylated by PfBMPR1b interacts with PfSMAD4 in the cytoplasm to form a complex, which translocates to the nucleus to transduce PfBMP2 signals. Co-immunoprecipitation and luciferase assays revealed that PfSMAD1/5 may interact with PfMSX to dislodge it from its binding element, resulting in initiation of mantle gene transcription. The in vivo functional assay showed that knockdown of PfMSAD1/5 decreased expression of shell matrix genes and disordered the nacreous layer, and the correlation assay of shell regeneration showed the concomitant expression pattern of PfSMAD1/5 and shell matrix genes. Together, these data showed that PfSMAD1/5 can transduce PfBMP2 signals to regulate shell biomineralization in P. f. martensii, which illustrated conservation of the BMP2-SMAD signal pathway among invertebrates. Particularly, the results suggest that there is only one PfMSX gene, which functions like the Hox gene in vertebrates, that interacts with PfSMAD1/5 in a protein-protein action form and plays the role of transcription repressor.
机译:Smad1 / 5转导的BMP2信号在成骨细胞分化和骨形成中起重要作用。 Pinctada Fucata Martensii的壳体形成是一种典型的生物矿化过程,类似于牙齿/骨形成。但是,PFSMAD1 / 5转导的Pinctada Fucata BMP2(PFBMP2)信号是否在P. F中发生。 Martensii,PFSMAD1 / 5如何转导PFBMP2信号,以及PFSMAD1 / 5如何调节该物种中的生物碳化过程,并理解其他贝类。因此,重组PFBMP2和抑制剂背体的注射实验显示,PFSMAD1 / 5可以转化PFBMP2信号。亚细胞定位和双分子荧光互补测定结果表明,PFBMPR1b磷酸化与细胞质中的pfsmad4相互作用以形成复合物,其转向细胞核以转化PFBMP2信号。共免疫沉淀和荧光素酶测定显示Pfsmad1 / 5可以与pfmsx相互作用以使其与其结合元素的脱位,导致搭腔基因转录引发。体内功能测定表明,PFMSAD1 / 5的敲低降低了壳基因基因的表达和无序珠酮层,并且壳再生的相关测定显示PFSMAD1 / 5和壳基因基因的伴随表达模式。这些数据在一起表明,PFSMAD1 / 5可以转化PFBMP2信号以调节P.F中的壳生物铝化。 Martensii,说明了无脊椎动物中BMP2-Smad信号通路的保护。特别是,结果表明,只有一种PFMSX基因,其类似于脊椎动物中的HOX基因,其在蛋白质 - 蛋白质作用形式中与PFSMAD1 / 5相互作用并起作用转录阻遏物的作用。

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