Nephrology Division.
Endocrine Unit.
Curr Opin Nephrol Hypertens. 2021 Jul 1;30(4):397-403. doi: 10.1097/MNH.0000000000000715.
Both classical and nonclassical factors regulate fibroblast growth factor 23 (FGF23), with impacts on gene expression and proteolytic cleavage. Here, we review recent publications that extend current knowledge on these factors.
Emerging nonclassical FGF23 regulators such as erythropoietin cause a balanced increase in FGF23 expression and cleavage, with minimal or no increase in biologically active intact FGF23 (iFGF23) in blood. However, circulating FGF23 profiles may not reflect the bone marrow microenvironment. For example, granulocyte colony-stimulating factor increases local marrow iFGF23 levels without impacting circulating iFGF23 levels. The view that phosphate does not increase bone FGF23 production also warrants reconsideration, as phosphate can reduce iFGF23 cleavage and phosphate-containing calciprotein particles increase FGF23 expression. Finally, a screen of renal venous plasma identifies glycerol-3-phosphate as a kidney-derived molecule that circulates to bone and bone marrow, where it is converted to lysophosphatidic acid and signals through a G-protein coupled receptor to increase FGF23 synthesis.
FGF23 regulation is complex, requiring consideration of known and emerging stimuli, expression and cleavage, and circulating and local levels. Recent work identifies glycerol-3-phosphate as an FGF23 regulator derived from the injured kidney; whether it participates in FGF23 production downstream of classical or nonclassical factors requires further study.
经典和非经典因素均可调节成纤维细胞生长因子 23(FGF23),影响其基因表达和蛋白水解。本文就这些因素的最新研究进展进行综述。
新兴的非经典 FGF23 调节因子,如促红细胞生成素,可平衡地增加 FGF23 的表达和裂解,使血液中生物活性完整的 FGF23(iFGF23)的增加最小或没有增加。然而,循环 FGF23 谱可能不能反映骨髓微环境。例如,粒细胞集落刺激因子增加局部骨髓 iFGF23 水平而不影响循环 iFGF23 水平。磷酸盐不会增加骨 FGF23 产生的观点也值得重新考虑,因为磷酸盐可以减少 iFGF23 的裂解,而含磷酸盐的钙磷蛋白颗粒会增加 FGF23 的表达。最后,对肾静脉血浆的筛选发现甘油-3-磷酸是一种肾脏来源的分子,可循环到骨骼和骨髓,在那里转化为溶血磷脂酸,并通过 G 蛋白偶联受体信号转导增加 FGF23 的合成。
FGF23 的调节机制复杂,需要考虑已知和新兴的刺激物、表达和裂解、循环和局部水平。最近的研究确定甘油-3-磷酸是一种源自受损肾脏的 FGF23 调节因子;它是否参与经典或非经典因素下游的 FGF23 产生,还需要进一步研究。