Rogers M J, Xiong X, Brown R J, Watts D J, Russell R G, Bayless A V, Ebetino F H
Krebs Institute, Department of Molecular Biology and Biotechnology, University of Sheffield, UK.
Mol Pharmacol. 1995 Feb;47(2):398-402.
The mechanisms by which bisphosphonate drugs inhibit osteoclast-mediated bone resorption are unclear. Effects of bisphosphonates on cellular enzymes, metabolic pathways, and osteoclast morphology have previously been described and could culminate in a generalized cytotoxic effect or a decreased capacity of osteoclasts to resorb bone. Recent studies of the structure-activity relationship for the bisphosphonate side chain indicate, however, that at least the newer generations of nitrogen-containing bisphosphonates probably act by binding to a specific target at a site that is complementary in structure to the bisphosphonate side chain. We have previously proposed that such a target for bisphosphonates is also present in amoebae of the cellular slime mold Dictyostelium discoideum, because growth of this microorganism is inhibited by a wide range of bisphosphonates in a manner that closely reflects the antiresorptive potencies of the bisphosphonates in vivo. We have added support for this view by examining the potency towards Dictyostelium of bisphosphonates in which slight changes in the structure of the side chain or conformational restrictions to the side chain have marked effects on antiresorptive potency. The changes in the side chain that affected the in vivo antiresorptive potency of the bisphosphonates consistently affected in a similar manner the potency of the bisphosphonates as inhibitors of the growth of Dictyostelium amoebae. These observations confirm that bisphosphonate drugs have a molecular target that is common to both Dictyostelium amoebae and osteoclasts.
双膦酸盐药物抑制破骨细胞介导的骨吸收的机制尚不清楚。此前已描述了双膦酸盐对细胞酶、代谢途径和破骨细胞形态的影响,这些影响可能最终导致普遍的细胞毒性作用或破骨细胞吸收骨的能力下降。然而,最近关于双膦酸盐侧链构效关系的研究表明,至少新一代含氮双膦酸盐可能是通过与一个特定靶点结合来发挥作用的,该靶点的结构与双膦酸盐侧链互补。我们之前曾提出,双膦酸盐的这种靶点也存在于细胞黏菌盘基网柄菌的变形虫中,因为这种微生物的生长受到多种双膦酸盐的抑制,其抑制方式与双膦酸盐在体内的抗吸收效力密切相关。我们通过研究侧链结构稍有变化或侧链存在构象限制的双膦酸盐对盘基网柄菌的效力,为这一观点提供了支持。影响双膦酸盐体内抗吸收效力的侧链变化,同样也以类似方式影响双膦酸盐作为盘基网柄菌变形虫生长抑制剂的效力。这些观察结果证实,双膦酸盐药物具有一个盘基网柄菌变形虫和破骨细胞共有的分子靶点。