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The Ligand for Osteoprotegerin (OPGL) Directly Activates Mature Osteoclasts

机译:骨保护素(OPGL)的配体直接激活成熟的破骨细胞

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摘要

Osteoprotegerin (OPG) and OPG-ligand (OPGL) potently inhibit and stimulate, respectively, osteoclast differentiation (Simonet, W.S., D.L. Lacey, C.R. Dunstan, M. Kelley, M.-S. Chang, R. Luethy, H.Q. Nguyen, S. Wooden, L. Bennett, T. Boone, et al. 1997. Cell. 89:309–319; Lacey, D.L., E. Timms, H.-L. Tan, M.J. Kelley, C.R. Dunstan, T. Burgess, R. Elliott, A. Colombero, G. Elliott, S. Scully, et al. 1998. Cell. 93: 165–176), but their effects on mature osteoclasts are not well understood. Using primary cultures of rat osteoclasts on bone slices, we find that OPGL causes approximately sevenfold increase in total bone surface erosion. By scanning electron microscopy, OPGL-treated osteoclasts generate more clusters of lacunae on bone suggesting that multiple, spatially associated cycles of resorption have occurred. However, the size of individual resorption events are unchanged by OPGL treatment. Mechanistically, OPGL binds specifically to mature OCs and rapidly (within 30 min) induces actin ring formation; a marked cytoskeletal rearrangement that necessarily precedes bone resorption. Furthermore, we show that antibodies raised against the OPGL receptor, RANK, also induce actin ring formation. OPGL-treated mice exhibit increases in blood ionized Ca++ within 1 h after injections, consistent with immediate OC activation in vivo. Finally, we find that OPG blocks OPGL's effects on both actin ring formation and bone resorption. Together, these findings indicate that, in addition to their effects on OC precursors, OPGL and OPG have profound and direct effects on mature OCs and indicate that the OC receptor, RANK, mediates OPGL's effects.
机译:骨保护素(OPG)和OPG-配体(OPGL)分别有效地抑制和刺激破骨细胞的分化(Simonet,WS,DL Lacey,CR Dunstan,M.Kelley,M.-S。Chang,R.Luethy,HQ Nguyen,S 。Wooden,L。Bennett,T。Boone等,1997。Cell。89:309-319; Lacey,DL,E。Timms,H.-L。Tan,MJ Kelley,CR Dunstan,T。Burgess,R (Elliott,A.Colombero,G.Elliott,S.Scully等人,1998.Cell。93:165-176),但是它们对成熟破骨细胞的作用尚不十分清楚。使用大鼠破骨细胞在骨切片上的原代培养,我们发现OPGL导致总骨表面侵蚀增加约7倍。通过扫描电子显微镜,OPGL处理的破骨细胞在骨骼上产生更多的腔隙簇,表明已经发生了多个与空间相关的吸收循环。但是,通过OPGL处理,单个吸收事件的大小没有变化。从机理上讲,OPGL与成熟的OC特异性结合,并迅速(在30分钟内)诱导肌动蛋白环形成。在骨骼吸收之前必须进行明显的细胞骨架重排。此外,我们显示针对OPGL受体RANK产生的抗体也诱导肌动蛋白环形成。 OPGL处理的小鼠在注射后1 h内血液中离子化的Ca ++ 增加,这与体内立即OC活化相一致。最后,我们发现OPG阻断了OPGL对肌动蛋白环形成和骨吸收的影响。总之,这些发现表明,除对OC前体的影响外,OPGL和OPG对成熟OC也具有深远而直接的影响,并表明OC受体RANK介导了OPGL的作用。

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