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Differential effects of homocysteine and beta aminopropionitrile on preosteoblastic MC3T3-E1 cells.

机译:同型半胱氨酸和β氨基丙腈对成骨细胞前MC3T3-E1细胞的差异作用。

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Compounds, like beta-aminopropionitrile (bAPN) and homocysteine (hcys), are known to inhibit a stable matrix formation. Osteoblast-synthesized collagen matrix regulates the differentiation of precursor cells into mature osteoblasts. They express lysyl oxidase, an enzyme involved in the collagen cross-linking process. Lately, plasma hcys levels have recently been strongly correlated with fracture in humans. We have previously shown that bAPN not only disturbs collagen cross-links but also affects osteoblastic differentiation in a cell culture system. The aim of the present study was to investigate the effects of bAPN and hcys on collagen cross-links and gene expression at the mRNA level by FTIR and quantitative RT-PCR, respectively. We found that bAPN and hcys down-regulated cell multiplication. While bAPN also down-regulated the metabolic activity of MC3T3-E1 cells, hcys down-regulated it by lower concentrations but up-regulated it by higher; both substances up-regulated alkaline phosphatase activity. The substances increased the ratio of pyr/divalent cross-links of collagen, and down-regulated mRNA expression of lysyl hydroxylase (Plod2) and lysyl oxidase (Lox), genes which play an important role in the formation of a stable matrix. Furthermore, we demonstrate that both substances stimulated the expression of Runx2, an indispensable regulator of osteoblastic differentiation. However, analysis of genome wide mRNA expression suggests that hcys and bAPN have differential effects on genes involved in osteoblastic differentiation and phenotype regulation. The results indicate that although both bAPN and hcys affect collagen cross-link post-translational modifications in a similar manner as far as pyr and divalent cross-links are concerned, they have differential effects on the monitored genes expression at the mRNA level, with hcys exerting a broader effect on the genome wide mRNA expression.
机译:已知像β-氨基丙腈(bAPN)和高半胱氨酸(hcys)这样的化合物会抑制稳定的基质形成。成骨细胞合成的胶原蛋白基质调节前体细胞向成熟成骨细胞的分化。它们表达赖氨酰氧化酶,一种参与胶原蛋白交联过程的酶。最近,血浆半胱氨酸水平最近与人类的骨折密切相关。先前我们已经表明,bAPN不仅会干扰胶原蛋白的交联,而且还会影响细胞培养系统中的成骨细胞分化。本研究的目的是通过FTIR和定量RT-PCR分别研究bAPN和hcys对mRNA水平的胶原蛋白交联和基因表达的影响。我们发现,bAPN和hcys下调细胞增殖。虽然bAPN也下调了MC3T3-E1细胞的代谢活性,但hcys却通过较低的浓度下调了它,但又以更高的浓度上调了它。两种物质均上调了碱性磷酸酶的活性。该物质增加了胶原蛋白的pyr /二价交联比例,并下调了赖氨酰羟化酶(Plod2)和赖氨酰氧化酶(Lox)的mRNA表达,这些基因在形成稳定基质中起着重要作用。此外,我们证明这两种物质均能刺激Runx2的表达,Runx2是成骨细胞分化必不可少的调节剂。但是,对全基因组mRNA表达的分析表明,hcys和bAPN对参与成骨细胞分化和表型调节的基因具有不同的影响。结果表明,尽管涉及到pyr和二价交联,但bAPN和hcys均以类似的方式影响胶原交联后翻译修饰,但它们对在hcys的mRNA水平上受监测的基因表达具有不同的影响。对全基因组mRNA表达产生更广泛的影响。

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