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首页> 外文期刊>The Journal of biological chemistry >Critical Role of AKT Protein in Myeloma-induced Osteoclast Formation and Osteolysis
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Critical Role of AKT Protein in Myeloma-induced Osteoclast Formation and Osteolysis

机译:AKT蛋白在骨髓瘤诱导的破骨细胞形成和骨溶解中的关键作用

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摘要

Abnormal osteoclast formation and osteolysis are the hallmarks of multiple myeloma (MM) bone disease, yet the underlying molecular mechanisms are incompletely understood. Here, we show that the AKT pathway was up-regulated in primary bone marrow monocytes (BMM) from patients with MM, which resulted in sustained high expression of the receptor activator of NF-κB (RANK) in osteoclast precursors. The up-regulation of RANK expression and osteoclast formation in the MM BMM cultures was blocked by AKT inhibition. Conditioned media from MM cell cultures activated AKT and increased RANK expression and osteoclast formation in BMM cultures. Inhibiting AKT in cultured MM cells decreased their growth and ability to promote osteoclast formation. Of clinical significance, systemic administration of the AKT inhibitor LY294002 blocked the formation of tumor tissues in the bone marrow cavity and essentially abolished the MM-induced osteoclast formation and osteolysis in SCID mice. The level of activating transcription factor 4 (ATF4) protein was up-regulated in the BMM cultures from multiple myeloma patients. Adenoviral overexpression of ATF4 activated RANK expression in osteoclast precursors. These results demonstrate a new role of AKT in the MM promotion of osteoclast formation and bone osteolysis through, at least in part, the ATF4-dependent up-regulation of RANK expression in osteoclast precursors.
机译:异常骨质骨形成和骨溶解是多发性骨髓瘤(MM)骨病的标志,但下面的分子机制不完全理解。在这里,我们表明,来自MM患者的原发性骨髓单核细胞(BMM)中的AKT途径上调,导致骨质体前体中NF-κB(等级)受体活化剂的持续高表达。通过Akt抑制阻断MM BMM培养物中碱度表达和骨细胞形成的上调。来自MM细胞培养物的调节培养基活化AKT并增加BMM培养物中的碱度表达和骨质体形成。抑制培养的MM细胞中的AKT降低了它们的生长和促进破骨细胞形成的能力。临床意义,AKT抑制剂LY294002的全身施用阻断了骨髓腔中的肿瘤组织的形成,基本上废除了SCID小鼠中的MM诱导的骨质体形成和骨质解。激活转录因子4(ATF4)蛋白的水平在来自多个骨髓瘤患者的BMM培养物中调节。 ATF4活化含量在破骨细胞前体中的腺病毒过度表达。这些结果表明AKT在骨骨细胞形成和骨骨质溶解的MM促进中的新作用,至少部分地通过骨质体前体中的秩表达的ATF4依赖性上调。

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