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一氧化氮合酶亚型对破骨细胞功能的双向调节

Bidirectional regulation of osteoclast function by nitric oxide synthase isoforms.

作者信息

Brandi M L, Hukkanen M, Umeda T, Moradi-Bidhendi N, Bianchi S, Gross S S, Polak J M, MacIntyre I

机构信息

Department of Clinical Physiopathology, University of Florence Medical School, Italy.

出版信息

Proc Natl Acad Sci U S A. 1995 Mar 28;92(7):2954-8. doi: 10.1073/pnas.92.7.2954.

Abstract

Nitric oxide (NO) produces rapid osteoclast detachment and contraction in vitro, and this effect is accompanied by a profound inhibition of bone resorption. Work by others has confirmed these findings in vivo: inhibition of NO synthase [NOS; L-arginine, NADPH: oxygen oxidoreductase (NO-forming), EC 1.14.13.39] in normal rats is followed by increased bone resorption reflected by a marked loss in bone mineral density. In our present study, immunocytochemistry and Northern blotting show the presence of the constitutive calcium-sensitive NOS isoform (cNOS) in normal rat osteoclasts and in the human preosteoclast cell line (FLG 29.1). The inducible NOS isoform (iNOS) was also clearly demonstrable in the rat cells especially after treatment with gamma interferon (IFN-gamma) and bacterial wall products [lipopolysaccharide (LPS)], while a basal level of transcript was detected in the untreated human preosteoclast line. However NADPH-diaphorase activity was intense only in neonatal rat osteoclasts attached to bone, perhaps reflecting either enhancement of cNOS activity by calcium or increased amounts of the inducible isoform in activated osteoclasts in situ compared with isolated neonatal rat osteoclasts. These actively resorb devitalized bone but the untreated cells contain relatively low levels of NOS; they are extremely sensitive to inhibition by NO. The iNOS inhibitor aminoguanidine markedly enhances in vitro resorption by activated NOS-rich chick osteoclasts and by normal rat osteoclasts treated with LPS or IFN-gamma. In contrast, the nonselective NOS inhibitor NG-monomethyl-L-arginine inhibits resorption by untreated neonatal rat osteoclasts. Thus, osteoclast function may require intermittent calcium-stimulated increases in NO production by cNOS against a basal inhibitory background activity of the iNOS isoform. However, bone resorption depends on precursor replication and on the activity of the mature cells, and we found that the NO donor 3-morpholinosydnonimine (SIN-1) (50 microM) profoundly depressed replication in the human preosteoclast line. Taken together, these results strongly suggest that NO maintains a central control of bone resorption in both avian and mammalian species by exerting a powerful tonic restraint of osteoclast numbers and activity. The presence of NOS in human cells implies a similar function in man and that conventional views of calcium homoeostasis and skeletal metabolism will need substantial revision. Since NO also influences behavior of the osteoblast, the bone-forming cell, in vitro, a similar effect in vivo might imply a general influence on bone remodeling.

摘要

一氧化氮(NO)在体外可使破骨细胞迅速分离和收缩,且该效应伴随着对骨吸收的显著抑制。其他人的研究已在体内证实了这些发现:正常大鼠体内一氧化氮合酶[NOS;L-精氨酸,NADPH:氧氧化还原酶(生成NO),EC 1.14.13.39]受到抑制后,骨吸收增加,表现为骨矿物质密度显著降低。在我们目前的研究中,免疫细胞化学和Northern印迹显示,正常大鼠破骨细胞和人破骨细胞前体细胞系(FLG 29.1)中存在组成型钙敏感性NOS同工型(cNOS)。诱导型NOS同工型(iNOS)在大鼠细胞中也清晰可辨,尤其是在用γ干扰素(IFN-γ)和细菌细胞壁产物[脂多糖(LPS)]处理后,而在未处理的人破骨细胞前体细胞系中检测到基础水平的转录本。然而,NADPH-黄递酶活性仅在附着于骨的新生大鼠破骨细胞中强烈,这可能反映了钙对cNOS活性的增强作用,或者与分离的新生大鼠破骨细胞相比,原位活化破骨细胞中诱导型同工型的量增加。这些细胞积极吸收失活骨,但未处理的细胞中NOS水平相对较低;它们对NO抑制极为敏感。iNOS抑制剂氨基胍显著增强了富含NOS的活化鸡破骨细胞以及用LPS或IFN-γ处理的正常大鼠破骨细胞的体外吸收。相反,非选择性NOS抑制剂NG-单甲基-L-精氨酸抑制未处理的新生大鼠破骨细胞的吸收。因此,破骨细胞功能可能需要cNOS在iNOS同工型基础抑制背景活性的情况下,通过间歇性钙刺激增加NO生成。然而,骨吸收取决于前体细胞的复制和成熟细胞的活性,并且我们发现NO供体3-吗啉代-sydnonimine(SIN-1)(50 microM)可显著抑制人破骨细胞前体细胞系中的复制。综上所述,这些结果强烈表明,NO通过对破骨细胞数量和活性施加强大的持续性抑制,对鸟类和哺乳动物的骨吸收维持着核心控制。人细胞中存在NOS意味着在人类中也有类似功能,并且钙稳态和骨骼代谢的传统观点将需要大幅修订。由于NO在体外也影响成骨细胞(即形成骨的细胞)的行为,体内类似的效应可能意味着对骨重塑有普遍影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b5f/42337/448c42df2b2a/pnas01485-0548-a.jpg

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