Fifth Department of Medicine (Nephrology/Endocrinology/Rheumatology/Pneumology), University Medical Centre Mannheim, University of Heidelberg, Heidelberg, Germany.
Institute of Pharmacy, Freie Universität Berlin, Berlin, Germany.
Pflugers Arch. 2024 Jun;476(6):889-899. doi: 10.1007/s00424-024-02928-x. Epub 2024 Feb 23.
Sclerostin (SOST) is produced by osteocytes and is known as a negative regulator of bone homeostasis. Parathyroid hormone (PTH) regulates calcium, phosphate as well as vitamin D metabolism, and is a strong inhibitor of SOST synthesis in vitro and in vivo. PTH has two methionine amino acids (positions 8 and 18) which can be oxidized. PTH oxidized at Met18 (Met18(ox)-PTH) continues to be bioactive, whereas PTH oxidized at Met8 (Met8(ox)-PTH) or PTH oxidized at Met8 and Met18 (Met8, Met18(di-ox)-PTH) has minor bioactivity. How non-oxidized PTH (n-oxPTH) and oxidized forms of PTH act on sclerostin synthesis is unknown. The effects of n-oxPTH and oxidized forms of PTH on SOST gene expression were evaluated in UMR106 osteoblast-like cells. Moreover, we analyzed the relationship of SOST with n-oxPTH and all forms of oxPTH in 516 stable kidney transplant recipients using an assay system that can distinguish in clinical samples between n-oxPTH and the sum of all oxidized PTH forms (Met8(ox)-PTH, Met18(ox)-PTH, and Met8, Met18(di-ox)-PTH). We found that both n-oxPTH and Met18(ox)-PTH at doses of 1, 3, 20, and 30 nmol/L significantly inhibit SOST gene expression in vitro, whereas Met8(ox)-PTH and Met8, Met18(di-ox)-PTH only have a weak inhibitory effect on SOST gene expression. In the clinical cohort, multivariate linear regression showed that only n-oxPTH, but not intact PTH (iPTH) nor oxPTH, is independently associated with circulating SOST after adjusting for known confounding factors. In conclusion, only bioactive PTH forms such as n-oxPTH and Met18(ox)-PTH, inhibit SOST synthesis.
骨硬化蛋白(SOST)由骨细胞产生,是骨稳态的负调节剂。甲状旁腺激素(PTH)调节钙、磷酸盐和维生素 D 代谢,是体外和体内 SOST 合成的强抑制剂。PTH 有两个蛋氨酸氨基酸(位置 8 和 18)可以被氧化。PTH 在 Met18 处氧化(Met18(ox)-PTH)仍然具有生物活性,而 PTH 在 Met8 处氧化(Met8(ox)-PTH)或 PTH 在 Met8 和 Met18 处氧化(Met8, Met18(di-ox)-PTH)则具有较小的生物活性。未氧化的 PTH(n-oxPTH)和 PTH 的氧化形式如何作用于 SOST 合成尚不清楚。在 UMR106 成骨样细胞中评估了 n-oxPTH 和 PTH 的氧化形式对 SOST 基因表达的影响。此外,我们使用一种能够在临床样本中区分 n-oxPTH 和所有氧化 PTH 形式(Met8(ox)-PTH、Met18(ox)-PTH 和 Met8, Met18(di-ox)-PTH)的检测系统,分析了 516 例稳定肾移植受者中 SOST 与 n-oxPTH 和所有氧化 PTH 形式之间的关系。我们发现,n-oxPTH 和 Met18(ox)-PTH 在 1、3、20 和 30 nmol/L 剂量下均可显著抑制体外 SOST 基因表达,而 Met8(ox)-PTH 和 Met8, Met18(di-ox)-PTH 对 SOST 基因表达仅有微弱的抑制作用。在临床队列中,多元线性回归显示,仅 n-oxPTH,而不是完整的 PTH(iPTH)或氧化 PTH,在调整了已知混杂因素后与循环 SOST 独立相关。总之,只有生物活性的 PTH 形式,如 n-oxPTH 和 Met18(ox)-PTH,才能抑制 SOST 的合成。