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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Reciprocal temporospatial patterns of Msx2 and Osteocalcin gene expression during murine odontogenesis.
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Reciprocal temporospatial patterns of Msx2 and Osteocalcin gene expression during murine odontogenesis.

机译:Msx2和骨钙素基因表达在鼠牙形成过程中的相互颞颞骨模式。

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摘要

Msx2 is a homeodomain transcription factor that regulates craniofacial development in vivo and osteocalcin (Osc) promoter activity in vitro. Msx2 is expressed in many craniofacial structures prior to embryonic day (E) E14 but is expressed at later stages in a restricted pattern, primarily in developing teeth and the calvarium. We examine Osc expression by in situ hybridization during murine development, detailing temporospatial relationships with Msx2 expression during preappositional and appositional odontogenesis and calvarial osteogenesis. Osc expression at E14-14.5 is very low, limited to a few perichondrial osteoblasts in the dorsal aspect of developing ribs. At E16.5 and E18.5, Osc expression is much higher, widely expressed in skeletal osteoblasts, including calvarial osteoblasts that do not express Msx2. No Osc is detected in early preappositional teeth that express Msx2. In incisors studied at an early appositional phase, Msx2 is widely expressed in the tooth, primarily in ovoid preodontoblasts and subjacent dental papilla cells. Osc is detected only in a small number of maturing odontoblasts that also express alpha1(I) collagen (Colla1) and that are postproliferative (do not express histone H4). Msx2 expression greatly overlaps both histone H4 and Colla1 expression in ovoid preodontoblasts and dental papilla cells. By the late appositional phases of E18.5 and neonatal teeth, Osc mRNA is highly expressed in mature columnar odontoblasts adjacent to accumulating dentin. In appositional bell-stage molars, reciprocal patterns of Msx2 and Osc are observed in adjacent preodontoblasts and odontoblasts within the same tooth. Osc is expressed in mature columnar odontoblasts, while Msx2 is expressed in adjacent immature ovoid preodontoblasts. In less mature teeth populated only by immature ovoid preodontoblasts, only Msx2 is expressed-no Osc is detected. Thus, Msx2 and Osc are expressed in reciprocal patterns during craniofacial development in vivo, and Msx2 expression in preodontoblasts clearly precedes Osc expression in odontoblasts. In functional studies using MC3T3-E1 calvarial osteoblasts, Msx2 suppresses endogenous Osc, but not osteopontin, mRNA accumulation. In toto, these data suggest that Msr2 suppresses Osc expression in the craniofacial skeleton at stages immediately preceding odontoblast and osteoblast terminal differentiation.
机译:Msx2是一个同源域转录因子,可调节体内颅面发育和体外骨钙素(Osc)启动子活性。 Msx2在胚胎日(E)E14之前在许多颅面结构中表达,但在后期以限制性模式表达,主要在牙齿发育和颅骨中表达。我们通过在小鼠发育过程中的原位杂交来检查Osc表达,详细介绍了颞骨与Msx2表达在颞前位和并位牙生成和颅骨成骨过程中的关系。 E14-14.5处的Osc表达非常低,在发育中的肋骨的背侧限于少数软骨膜成骨细胞。在E16.5和E18.5,Osc表达要高得多,在骨骼成骨细胞中广泛表达,包括不表达Msx2的颅盖成骨细胞。在表达Msx2的早期先位性牙齿中未检测到Osc。在早期并置阶段研究的门牙中,Msx2在牙齿中广泛表达,主要在卵球形的成牙本质细胞和下面的牙乳头细胞中表达。仅在少数成熟的成牙本质细胞中检测到Osc,它们也表达alpha1(I)胶原蛋白(Colla1),并且具有增生作用(不表达组蛋白H4)。 Msx2表达在卵形前成牙本质细胞和牙乳头细胞中大大重叠了组蛋白H4和Colla1表达。到E18.5和新生牙齿的并置后期,Osc mRNA在邻近牙本质堆积的成熟柱状成牙本质细胞中高表达。在并置钟形磨牙中,在同一颗牙齿中相邻的成牙本质细胞和成牙本质细胞中观察到Msx2和Osc的倒数模式。 Osc在成熟的柱状成牙本质细胞中表达,而Msx2在相邻的未卵形成牙本质成牙细胞中表达。在仅由未成熟卵形牙前成牙细胞组成的较不成熟的牙齿中,仅表达​​Msx2,未检测到Osc。因此,Msx2和Osc在体内颅面发育过程中以相互的方式表达,并且在成牙本质细胞中Msx2表达明显在成牙本质细胞中Osc表达之前。在使用MC3T3-E1颅骨成骨细胞的功能研究中,Msx2抑制内源性Osc,但不抑制骨桥蛋白mRNA的积累。总的来说,这些数据表明Msr2在成牙本质细胞和成骨细胞终末分化之前的阶段抑制颅面骨骼中的Osc表达。

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