Department of Veterinary Basic Science, Royal Veterinary College, London, NW1 0TU, UK.
Osteoporos Int. 2012 Nov;23(11):2635-47. doi: 10.1007/s00198-012-1957-2. Epub 2012 Mar 9.
Regulation of nitric oxide (NO) production is considered essential in mechanical load-related osteogenesis. We examined whether osteoblast endothelial NO synthase (eNOS)-derived NO production was regulated by HSP90. We found that HSP90 is essential for strain-related NO release but appears to be independent of eNOS in cultured osteoblasts.
NO is a key regulator of bone mass, and its production by bone cells is regarded as essential in mechanical strain-related osteogenesis. We sought to identify whether bone cell NO production relied upon eNOS, considered to be the predominant NOS isoform in bone, and whether this was regulated by an HSP90-dependent mechanism.
Using primary rat long bone-derived osteoblasts, the ROS 17/2.8 cell line and primary mouse osteoblasts, derived from wild-type and eNOS-deficient (eNOS(-/-)) mice, we examined by immunoblotting the expression of eNOS using a range of well-characterised antibodies and extraction methods, measured NOS activity by monitoring the conversion of radiolabelled L-arginine to citrulline and examined the production of NO by bone cells subjected to mechanical strain application under various conditions.
Our studies have revealed that eNOS protein and activity were both undetectable in osteoblast-like cells, that mechanical strain-induced NO production was retained in bone cells from eNOS-deficient mice, but that this strain-related induction of NO production was, however, dependent upon HSP90.
Together, our studies indicate that HSP90 activity is essential for strain-related NO release by cultured osteoblasts and that this is highly likely to be achieved by an eNOS-independent mechanism.
一氧化氮(NO)的产生调节被认为是机械负荷相关成骨的关键。我们研究了成骨细胞内皮型一氧化氮合酶(eNOS)衍生的 NO 产生是否受 HSP90 调节。我们发现 HSP90 对应变相关的 NO 释放是必需的,但在培养的成骨细胞中似乎独立于 eNOS。
NO 是骨量的关键调节剂,其在骨细胞中的产生被认为是机械应变相关成骨的关键。我们试图确定骨细胞 NO 的产生是否依赖于 eNOS,eNOS 被认为是骨中主要的 NOS 同工酶,以及这种产生是否受 HSP90 依赖性机制调节。
使用原代大鼠长骨来源的成骨细胞、ROS 17/2.8 细胞系和原代小鼠成骨细胞,我们使用一系列经过充分表征的抗体和提取方法通过免疫印迹检查 eNOS 的表达,通过监测放射性标记的 L-精氨酸转化为瓜氨酸来测量 NOS 活性,并检查在各种条件下机械应变应用下骨细胞产生的 NO。
我们的研究表明,eNOS 蛋白和活性在成骨样细胞中均无法检测到,机械应变诱导的 NO 产生在 eNOS 缺陷型小鼠的成骨细胞中保留,但这种应变相关的 NO 产生诱导依赖于 HSP90。
总之,我们的研究表明,HSP90 活性对于培养的成骨细胞中应变相关的 NO 释放是必需的,这很可能是通过一种独立于 eNOS 的机制实现的。