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首页> 外文期刊>Journal of Anatomy >Alx4 and Msx2 play phenotypically similar and additive roles in skull vault differentiation.
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Alx4 and Msx2 play phenotypically similar and additive roles in skull vault differentiation.

机译:Alx4和Msx2在头骨穹顶分化中在表型上相似且相加。

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Alx4 and Msx2 encode homeodomain-containing transcription factors that show a clear functional overlap. In both mice and humans, loss of function of either gene is associated with ossification defects of the skull vault, although the major effect is on the frontal bones in mice and the parietal bones in humans. This study was undertaken to discover whether Alx4 and Msx2 show a genetic interaction in skull vault ossification, and to test the hypothesis that they interact with the pathway that includes the Fgfr genes, Twist1 and Runx2. We generated Alx4(+/-)/Msx2(+/-) double heterozygous mutant mice, interbred them to produce compound genotypes and analysed the genotype-phenotype relationships. Loss of an increasing number of alleles correlated with an incremental exacerbation of the skull vault defect; loss of Alx4 function had a marginally greater effect than loss of Msx2 and also affected skull thickness. In situ hybridization showed that Alx4 and Msx2 are expressed in the cranial skeletogenic mesenchyme and in the growing calvarial bones. Studies of the coronal suture region at embryonic day (E)16.5 revealed that Alx4 expression was decreased, but not abolished, in Msx2(-/-) mutants, and vice versa; expression of Fgfr2 and Fgfr1, but not Twist1, was reduced in both mutants at the same stage. Runx2 expression was unaffected in the coronal suture; in contrast, expression of the downstream ossification marker Spp1 was delayed. Double homozygous pups showed substantial reduction of alkaline phosphatase expression throughout the mineralized skull vau they died at birth due to defects of the heart, lungs and diaphragm not previously associated with Alx4 or Msx2. Our observations suggest that Alx4 and Msx2 are partially functionally redundant, acting within a network of transcription factors and signalling events that regulate the rate of osteogenic proliferation and differentiation at a stage after the commitment of mesenchymal stem cells to osteogenesis.
机译:Alx4和Msx2编码包含Homeodomain的转录因子,这些转录因子显示出明显的功能重叠。在小鼠和人类中,这两种基因的功能丧失都与头骨穹ault的骨化缺陷有关,尽管主要影响是对小鼠的额骨和人类的顶骨。进行这项研究是为了发现Alx4和Msx2在头骨穹骨化过程中是否表现出遗传相互作用,并检验它们与包括Fgfr基因,Twist1和Runx2在内的途径相互作用的假说。我们生成了Alx4(+/-)/ Msx2(+/-)双杂合突变小鼠,将它们杂交以产生复合基因型并分析了基因型与表型的关系。等位基因数量的增加与头骨穹顶缺损的加剧加重有关; Alx4功能丧失的影响略大于Msx2丧失的影响,并且还会影响颅骨厚度。原位杂交表明,Alx4和Msx2在颅骨骨骼间充质和生长的颅骨中表达。对胚胎缝合日(E)16.5的冠状缝线区域的研究表明,Msx2(-/-)突变体中Alx4的表达降低但没有消除,反之亦然。 Fgfr2和Fgfr1,但不是Twist1,在两个突变体在同一阶段的表达降低。 Runx2表达在冠状缝线中不受影响;相反,下游骨化标记Spp1的表达被延迟。双重纯合幼崽在整个矿化的头骨穹顶中显示出碱性磷酸酶表达的显着降低。他们在出生时因心脏,肺部和diaphragm肌缺陷而死亡,此前与Alx4或Msx2无关。我们的观察结果表明,Alx4和Msx2具有部分功能冗余,在转录因子和信号事件网络内起作用,这些信号和事件在间充质干细胞向成骨作用的阶段调节成骨细胞增殖和分化的速率。

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