Sperber Steven M, Dawid Igor B
Laboratory of Molecular Genetics, Eunice Kennedy Shriver National Institute of Child Health and Human Development, 9000 Rockville Pike, Bethesda, MD 20892, USA.
Dev Biol. 2008 Sep 1;321(1):101-10. doi: 10.1016/j.ydbio.2008.06.004. Epub 2008 Jun 13.
Barx1 modulates cellular adhesion molecule expression and participates in specification of tooth-types, but little is understood of its role in patterning the pharyngeal arches. We examined barx1 expression during zebrafish craniofacial development and performed a functional analysis using antisense morpholino oligonucleotides. Barx1 is expressed in the rhombencephalic neural crest, the pharyngeal arches, the pectoral fin buds and the gut in contrast to its paralogue barx2, which is most prominently expressed in the arch epithelium. Additionally, barx1 transient expression was observed in the posterior lateral line ganglia and developing trunk/tail. We show that Barx1 is necessary for proliferation of the arch osteochondrogenic progenitors, and that morphants exhibit diminished and dysmorphic arch cartilage elements due to reductions in chondrocyte differentiation and condensation. Attenuation of Barx1 results in lost arch expression of osteochondrogenic markers col2a1, runx2a and chondromodulin, as well as odontogenic marker dlx2b. Further, loss of barx1 positively influenced gdf5 and chordin, markers of jaw joint patterning. FGF signaling is required for maintaining barx1 expression, and that ectopic BMP4 induces expression of barx1 in the intermediate region of the second pharyngeal arch. Together, these results indicate an essential role for barx1 at early stages of chondrogenesis within the developing zebrafish viscerocranium.
Barx1调节细胞粘附分子的表达,并参与牙型的特化,但对其在咽弓模式形成中的作用了解甚少。我们研究了斑马鱼颅面发育过程中barx1的表达,并使用反义吗啉代寡核苷酸进行了功能分析。与它的旁系同源基因barx2相反,Barx1在菱脑神经嵴、咽弓、胸鳍芽和肠道中表达,而barx2最显著地在弓上皮中表达。此外,在后部侧线神经节和发育中的躯干/尾部观察到barx1的瞬时表达。我们发现Barx1对于弓骨软骨生成祖细胞的增殖是必需的,并且由于软骨细胞分化和凝聚的减少,形态突变体的弓软骨元件减少且形态异常。Barx1的减弱导致骨软骨生成标记物col2a1、runx2a和软骨调节素以及牙源性标记物dlx2b在弓中的表达丧失。此外,barx1的缺失对gdf5和脊索蛋白(颌关节模式形成的标记物)有正向影响。FGF信号传导是维持barx1表达所必需的,并且异位BMP4诱导barx1在第二咽弓的中间区域表达。总之,这些结果表明barx1在发育中的斑马鱼面颅骨软骨形成的早期阶段起着至关重要的作用。