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Regulation of bone mass through pineal-derived melatonin-MT2 receptor pathway

机译:通过松果体褪黑激素-MT2受体途径调节骨量

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摘要

Tryptophan, an essential amino acid through a series of enzymatic reactions gives rise to various metabolites, viz. serotonin and melatonin, that regulate distinct biological functions. We show here that tryptophan metabolism in the pineal gland favors bone mass accrual through production of melatonin, a pineal-derived neurohormone. Pineal gland-specific deletion of , the enzyme that catalyzes the first step in the melatonin biosynthesis lead to a decrease in melatonin levels and a low bone mass due to an isolated decrease in bone formation while bone resorption parameters remained unaffected. Skeletal analysis of the mice deficient in or melatonin receptors showed a low bone mass in mice while mice had a normal bone mass compared to the WT mice. This low bone mass in the mice was due to an isolated decrease in osteoblast numbers and bone formation. In vitro assays of the osteoblast cultures derived from the and mice showed a cell intrinsic defect in the proliferation, differentiation and mineralization abilities of osteoblasts compared to WT counterparts, and the mutant cells did not respond to melatonin addition. Finally, we demonstrate that daily oral administration of melatonin can increase bone accrual during growth and can cure ovariectomy-induced structural and functional degeneration of bone by specifically increasing bone formation. By identifying pineal-derived melatonin as a regulator of bone mass through MT2 receptors, this study expands the role played by tryptophan derivatives in the regulation of bone mass and underscores its therapeutic relevance in postmenopausal osteoporosis.
机译:色氨酸是通过一系列酶促反应所必需的氨基酸,会产生各种代谢物,即。血清素和褪黑激素,调节不同的生物学功能。我们在这里显示,松果体中的色氨酸代谢通过产生褪黑激素(一种源自松果的神经激素)而有利于骨质积聚。松果体特异性缺失,该酶催化褪黑激素生物合成的第一步,导致褪黑激素水平降低和低骨量,这是由于孤立的骨形成减少所致,而骨吸收参数仍然不受影响。对缺乏或褪黑激素受体的小鼠的骨骼分析显示,与WT小鼠相比,小鼠的骨量低,而小鼠的骨量正常。小鼠中的这种低骨量是由于成骨细胞数量和骨形成的单独减少所致。与WT对应物相比,从和小鼠衍生的成骨细胞培养物的体外分析显示,成骨细胞的增殖,分化和矿化能力存在细胞固有缺陷,突变细胞对褪黑激素的添加无反应。最后,我们证明了每天口服褪黑激素可以增加骨骼在生长过程中的累积,并可以通过特异性地增加骨骼形成来治愈卵巢切除术引起的骨骼结构和功能退化。通过鉴定松果体褪黑激素通过MT2受体调节骨量,这项研究扩大了色氨酸衍生物在骨量调节中的作用,并强调了其在绝经后骨质疏松症中的治疗意义。

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