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成骨前体细胞中 Dicer 的失活会损害胎儿的存活和骨形成,而在分化的成骨细胞中切除 Dicer 会增加成年小鼠的骨量。

Dicer inactivation in osteoprogenitor cells compromises fetal survival and bone formation, while excision in differentiated osteoblasts increases bone mass in the adult mouse.

机构信息

Department of Cell Biology and Cancer Center, University of Massachusetts Medical School, Worcester, MA 01655, USA.

出版信息

Dev Biol. 2010 Apr 1;340(1):10-21. doi: 10.1016/j.ydbio.2010.01.008. Epub 2010 Jan 15.

Abstract

MicroRNA attenuation of protein translation has emerged as an important regulator of mesenchymal cell differentiation into the osteoblast lineage. A compelling question is the extent to which miR biogenesis is obligatory for bone formation. Here we show conditional deletion of the Dicer enzyme in osteoprogenitors by Col1a1-Cre compromised fetal survival after E14.5. A mechanism was associated with the post-commitment stage of osteoblastogenesis, demonstrated by impaired ECM mineralization and reduced expression of mature osteoblast markers during differentiation of mesenchymal cells of ex vivo deleted Dicer(c/c). In contrast, in vivo excision of Dicer by Osteocalcin-Cre in mature osteoblasts generated a viable mouse with a perinatal phenotype of delayed bone mineralization which was resolved by 1 month. However, a second phenotype of significantly increased bone mass developed by 2 months, which continued up to 8 months in long bones and vertebrae, but not calvariae. Cortical bone width and trabecular thickness in Dicer(Deltaoc/Deltaoc) was twice that of Dicer(c/c) controls. Normal cell and tissue organization was observed. Expression of osteoblast and osteoclast markers demonstrated increased coupled activity of both cell types. We propose that Dicer generated miRs are essential for two periods of bone formation, to promote osteoblast differentiation before birth, and control bone accrual in the adult.

摘要

miRNA 衰减蛋白翻译已成为间充质细胞向成骨细胞谱系分化的重要调节因子。一个引人关注的问题是 miRNA 生物发生在多大程度上是骨形成所必需的。本文作者通过 Col1a1-Cre 条件性删除成骨前体细胞中的 Dicer 酶,导致 E14.5 后胎鼠的存活率降低。研究结果表明,该机制与成骨细胞的后承诺阶段有关,通过体外删除 Dicer(c/c) 的间充质细胞分化过程中细胞外基质矿化受损和成熟成骨细胞标志物表达减少来证明。相比之下,Osteocalcin-Cre 在成熟成骨细胞中体内删除 Dicer 会产生一种具有围产期骨矿化延迟表型的存活小鼠,这种表型在 1 个月时得到解决。然而,在 2 个月时出现了第二种显著增加骨量的表型,在长骨和椎骨中持续到 8 个月,但在颅骨中没有。Dicer(Deltaoc/Deltaoc)的皮质骨宽度和小梁厚度是 Dicer(c/c)对照的两倍。观察到正常的细胞和组织排列。成骨细胞和破骨细胞标志物的表达表明两种细胞类型的偶联活性增加。作者提出,Dicer 产生的 miRNAs 对于两个时期的骨形成是必需的,以促进出生前成骨细胞的分化,并控制成骨细胞的骨量积累。

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