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L-Plastin Phosphorylation Regulates the Early Phase of Sealing Ring Formation by Actin Bundling Process in Mouse Osteoclasts

机译:L-Plastin磷酸化通过小鼠破骨细胞的肌动蛋白捆绑过程调节密封环形成的早期阶段。

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摘要

The process of sealing ring formation requires major actin filament reorganization. We previously demonstrated that an actin-bundling protein L-plastin has a role in the cross-linking of actin filaments into tight bundles and forms actin aggregates (denoted as nascent sealing zones). These nascent sealing zones mature into fully functional sealing rings. We have shown here that TNF-alpha signaling regulates the phosphorylation of serine-5 and −7 in L-plastin which increases the actin bundling capacity of L-plastin and hence the formation of nascent sealing zones in mouse osteoclasts. Using the TAT-mediated transduction method, we confirmed the role of L-plastin in nascent sealing zones formation at the early phase of the sealing ring assembly. Transduction of TAT-fused full-length L-plastin peptide significantly increases the number of nascent sealing zones and therefore sealing rings. But, transduction of amino-terminal L-plastin peptides consisting of the serine-5 and −7 reduces the formation of both nascent sealing zones and sealing rings. Therefore, bone resorption in vitro was reduced considerably. The decrease was associated with the selective inhibition of cellular L-plastin phosphorylation by the transduced peptides. Neither the formation of podosomes nor the migration was affected in these osteoclasts.Phosphorylation of L- plastin on serine 5 and −7 residues increases the F-actin bundling capacity. The significance of our studies stands on laying the groundwork for a better understanding of L-plastin as a potential regulator at the early phase of sealing ring formation and could be a new therapeutic target to treat bone loss
机译:形成密封环的过程需要大量的肌动蛋白丝重组。我们以前证明肌动蛋白捆绑蛋白L-增塑素在肌动蛋白丝交联成紧密束并形成肌动蛋白聚集体(称为新生密封区)中起作用。这些新生的密封区域逐渐成熟为功能齐全的密封环。我们在这里显示,TNF-α信号传导调节L-增塑剂中丝氨酸5和-7的磷酸化,这会增加L-增塑剂的肌动蛋白束缚能力,并因此在小鼠破骨细胞中形成新生的密封区。使用TAT介导的转导方法,我们证实了L-塑蛋白在密封环组件的早期阶段在新生的密封区域形成中的作用。 TAT融合的全长L-增塑肽的转导显着增加了新生的密封区的数量,从而增加了密封环的数量。但是,由丝氨酸5和-7组成的氨基末端L-增塑肽的转导减少了新生的密封区和密封环的形成。因此,体外骨吸收显着降低。减少与被转导的肽选择性抑制细胞L-plastin磷酸化有关。在这些破骨细胞中,足小体的形成和迁移都没有受到影响。丝氨酸5和-7残基上的L- plastin磷酸化增加了F-actin的结合能力。我们研究的意义在于奠定基础,以便更好地了解L-促塑质蛋白在密封环形成的早期阶段作为潜在的调节剂,并且可能成为治疗骨质流失的新治疗靶标

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