Adams J S, Ren S Y, Arbelle J E, Clemens T L, Shany S
Division of Endocrinology, Cedars-Sinai Medical Center, UCLA School of Medicine 90048.
Endocrinology. 1994 Jan;134(1):499-502. doi: 10.1210/endo.134.1.8275965.
We have recently described the existence of a cytochrome P450-associated, mitochondrial-based 25-hydroxyvitamin D (25-OHD)-1-hydroxylation reaction in the chick macrophage-like cell line HD-11. Considering that this reaction is regulated by the same set of factors (ie. interferon-gamma, lipopolysaccharide, and glucocorticoids) that modulate expression of the macrophage nitric oxide synthase (mac NOS), we investigated the possibility that endogenous nitric oxide (NO) production may be linked to 1,25-dihydroxyvitamin D3 (1,25-(OH)2D) synthesis by HD-11 cells in vitro. To test this hypothesis we investigated the effects excluding from the extracellular medium the essential amino acid L-arginine, substrate for endogenous NO production, on the basal and stimulated expression of the HD-11 cell 25-OHD-1-hydroxylation reaction. Depletion of L-arginine from the extracellular medium for as little as 6 h resulted in a significant decrease (p < 0.02) in basal 1,25-(OH)2D synthesis; after 15 h in an L-arginine-free environment hormone production was reduced to < 10% of basal levels without any adverse affect on cell viability. Reintroduction of L-arginine, but not D-arginine, into the extracellular medium restored 1,25-(OH)2D3 synthetic capacity fully if done after < or = 6 h of incubation in the absence of L-arginine. Competitive inhibition of NOS with Nw-nitro-L-arginine methyl ester (p < 0.002) and Nw-nitro-L-arginine (p < 0.02) significantly inhibited 1,25-(OH)2D synthesis, indicating that macrophage NO generating capacity is functionally linked to endogenous synthesis of the active vitamin D metabolite.
我们最近描述了在鸡巨噬细胞样细胞系HD - 11中存在一种与细胞色素P450相关的、基于线粒体的25 - 羟基维生素D(25 - OHD)- 1 - 羟化反应。鉴于该反应受调节巨噬细胞一氧化氮合酶(mac NOS)表达的同一组因子(即干扰素 - γ、脂多糖和糖皮质激素)调控,我们研究了内源性一氧化氮(NO)生成可能与HD - 11细胞体外合成1,25 - 二羟基维生素D3(1,25 - (OH)2D)相关的可能性。为验证这一假设,我们研究了从细胞外培养基中去除内源性NO生成底物必需氨基酸L - 精氨酸,对HD - 11细胞25 - OHD - 1 - 羟化反应基础及刺激表达的影响。从细胞外培养基中去除L - 精氨酸仅6小时,基础1,25 - (OH)2D合成即显著降低(p < 0.02);在无L - 精氨酸环境中培养15小时后,激素生成降至基础水平的< 10%,且对细胞活力无任何不利影响。若在无L - 精氨酸培养<或 = 6小时后将L - 精氨酸(而非D - 精氨酸)重新引入细胞外培养基,可完全恢复1,25 - (OH)2D3合成能力。用Nw - 硝基 - L - 精氨酸甲酯(p < 0.002)和Nw - 硝基 - L - 精氨酸(p < 0.02)竞争性抑制NOS可显著抑制1,25 - (OH)2D合成,表明巨噬细胞NO生成能力与活性维生素D代谢产物的内源性合成在功能上相关。