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Alkaline Phosphatase Controls Lineage Switching of Mesenchymal Stem Cells by Regulating the LRP6/GSK3β Complex in Hypophosphatasia

机译:碱性磷酸酶通过调节低磷酸血症的LRP6 /GSK3β复合物来控制间充质干细胞的谱系转换。

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摘要

Lineage differentiation of bone marrow mesenchymal stem cells (BMMSCs) is the key to bone-fat reciprocity in bone marrow. To date, the regulators of BMMSC lineage switching have all been identified to be transcription factors, and researchers have not determined whether other genes control this process. This study aims to reveal a previously unknown role of tissue-nonspecific alkaline phosphatase (TNSALP) in controlling BMMSC lineage selection.>Methods: We compared the characteristics of cultured BMMSCs from patients with hypophosphatasia (HPP), which is caused by mutations in the liver/bone/kidney alkaline phosphatase (ALPL) gene, and an ALPL knockout (ko) mouse model. We performed ALPL downregulation and overexpression experiments to investigate the regulatory role of ALPL in BMMSC lineage switching. Using the PathScan array, coimmunoprecipitation experiments and pathway-guided small molecule treatments, we explored the possible mechanism underlying the regulatory effects of ALPL on cell differentiation and evaluated its therapeutic effect on ALPL ko mice.>Results: BMMSCs from both patients with HPP and ALPL ko mice exhibited defective lineage differentiation, including a decrease in osteogenic differentiation and a parallel increase in adipogenic differentiation. Mechanistically, TNSALP directly interacted with LRP6 and regulated the phosphorylation of GSK3β, subsequently resulting in lineage switching of BMMSCs. Re-phosphorylation of GSK3β induced by LiCl treatment restored differentiation of BMMSCs and attenuated skeletal deformities in Alpl+/- mice.>Conclusion: Based on our findings, TNSALP acts as a signal regulator to control lineage switching of BMMSCs by regulating the LRP6/GSK3β cascade.
机译:骨髓间充质干细胞(BMMSCs)的谱系分化是骨髓中骨脂互惠的关键。迄今为止,已经将BMMSC谱系转换的调控因子全部确定为转录因子,研究人员尚未确定其他基因是否能控制这一过程。这项研究的目的是揭示组织非特异性碱性磷酸酶(TNSALP)在控制BMMSC谱系选择方面的未知作用。>方法:我们比较了低磷血症(HPP)患者培养的BMMSC的特征,归因于肝/骨/肾碱性磷酸酶(ALPL)基因的突变,以及ALPL基因敲除(ko)小鼠模型。我们进行了ALPL下调和过表达实验,以研究ALPL在BMMSC谱系转换中的调节作用。我们使用PathScan阵列,免疫共沉淀实验和通路指导的小分子治疗方法,探讨了ALPL对细胞分化的调控作用的潜在机制,并评估了其对ALPL ko小鼠的治疗作用。>结果: HPP和ALPL ko小鼠均表现出有缺陷的谱系分化,包括成骨分化减少和成脂分化平行增加。从机理上讲,TNSALP直接与LRP6相互作用并调节GSK3β的磷酸化,随后导致BMMSC的谱系转换。 LiCl处理诱导的GSK3β的重新磷酸化恢复了Alpl +/- 小鼠中BMMSC的分化并减轻了骨骼畸形。>结论:根据我们的发现,TNSALP充当信号调节剂,通过调节LRP6 /GSK3β级联来控制BMMSC的谱系转换。

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