Murray S S, Glackin C A, Winters K A, Gazit D, Kahn A J, Murray E J
Geriatric Research, Education and Clinical Center, Department of Veterans Affairs Medical Center, Sepulveda.
J Bone Miner Res. 1992 Oct;7(10):1131-8. doi: 10.1002/jbmr.5650071004.
Although much is known about the hormonal regulation of osteoblastic cell differentiation, much less is known about the nuclear regulatory molecules that affect this process. We analyzed the expression of several regulatory molecules of the helix-loop-helix (H-L-H) group in primary mouse calvarial cells and in MC3T3-E1 mouse osteoblastic cells in situations representing different degrees of cellular differentiation. H-L-H class regulators are known to participate directly in directing cell fate and differentiation decisions in other mesodermal lineages. Two of the molecules that we studied, Id and E12, have well-established roles in this process. The other, mTwi, the murine homolog of the Drosophila twist gene, is a newly cloned mammalian H-L-H gene. Levels of E12 RNA remained unchanged during differentiation. On the other hand, in both primary osteoblastic cells and MC3T3-E1 cells, the abundance of Id and mTwi declined with cell maturation; mTwi less dramatically than Id. That Id expression is causally related to differentiation is suggested by the finding that MC3T3-E1 cells transfected with an Id-expression plasmid fail to undergo differentiation. We conclude that helix-loop-helix regulatory genes are expressed in mouse osteoblastic cells, where they are likely to participate in differentiation. The E12 gene product is likely to function as a positive modulating factor. In contrast, Id inhibits differentiation, probably by sequestering other H-L-H gene regulators, including E12, in inactive complexes. The precise role of mTwi is more speculative at this time, but the observed pattern of expression is consistent with a role in early and midmesodermal specification that is terminated as cells differentiate.
尽管人们对成骨细胞分化的激素调节了解很多,但对于影响这一过程的核调节分子却知之甚少。我们分析了几种螺旋-环-螺旋(H-L-H)家族调节分子在原代小鼠颅骨细胞和处于不同细胞分化程度的MC3T3-E1小鼠成骨细胞中的表达情况。已知H-L-H家族调节因子直接参与指导其他中胚层谱系的细胞命运和分化决定。我们研究的两种分子,即Id和E12,在这一过程中具有明确的作用。另一种分子mTwi是果蝇twist基因的小鼠同源物,是一个新克隆的哺乳动物H-L-H基因。E12 RNA水平在分化过程中保持不变。另一方面,在原代成骨细胞和MC3T3-E1细胞中,Id和mTwi的丰度都随着细胞成熟而下降;mTwi的下降幅度小于Id。用Id表达质粒转染的MC3T3-E1细胞不能发生分化,这一发现表明Id表达与分化存在因果关系。我们得出结论,螺旋-环-螺旋调节基因在小鼠成骨细胞中表达,它们可能参与了分化过程。E12基因产物可能作为一种正向调节因子发挥作用。相反,Id可能通过将包括E12在内的其他H-L-H基因调节因子隔离在无活性复合物中而抑制分化。目前mTwi的确切作用更具推测性,但观察到的表达模式与它在中胚层早期和中期特化中起作用且随着细胞分化而终止的作用一致。