Conditional Deletion of Gremlin-1 in Cathepsin K-expressing Mature Osteoclasts Altered the Skeletal Response to Calcium Depletion in Sex-Dependent Manner.

IF 3.3 3区 医学 Q2 ENDOCRINOLOGY & METABOLISM Calcified Tissue International Pub Date : 2025-01-09 DOI:10.1007/s00223-024-01337-7
Matilda H-C Sheng, Charles H Rundle, David J Baylink, Kin-Hing William Lau
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Abstract

This study assessed the novel concept that osteoclast-derived Grem1 has regulatory functions in the skeletal response to calcium stress using an osteoclastic Grem1 conditional knockout (cKO) mouse model. The calcium stress was initiated by feeding cKO mutants and wildtype (WT) littermates a calcium-deficient diet for 2 weeks. Deletion of Grem1 in mature osteoclasts did not affect developmental bone growth nor basal bone turnover. In response to calcium depletion, male cKO mutants showed greater increases in osteoclastic resorption and trabecular bone loss than male WT littermates, indicating an enhanced skeletal sensitivity to calcium depletion in male mutants. The enhanced sensitivity to calcium depletion was sex-dependent, as female cKO mutants showed lower increases in osteoclastic resorption and bone loss than female WT littermates as well as male cKO mutants. The sex disparity in osteoclastic resorption response to calcium stress was intrinsic to osteoclasts since osteoclasts of male but not female cKO mutants showed greater in vitro bone resorption activity than osteoclasts of WT littermates of respective sex. Male cKO mutants displayed smaller bone formation response to calcium depletion than male WT littermates, while female mutants showed bigger bone formation response than female WT littermates, indicating that cKO mutants also displayed sex disparity in bone formation response. The sex disparity in bone formation response was not caused by intrinsic differences in osteoblasts but might be due to sex-dependent differential osteoclastic release of osteogenic factors. In summary, osteoclast-derived gremlin-1 has complicated and sex-dependent regulatory roles in skeletal response to calcium stress.

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在表达Cathepsin k的成熟破骨细胞中条件缺失Gremlin-1以性别依赖的方式改变了骨骼对钙缺乏的反应。
本研究利用破骨细胞Grem1条件敲除(cKO)小鼠模型,评估了破骨细胞衍生的Grem1在骨骼对钙应激的反应中具有调节功能的新概念。钙胁迫是通过给cKO突变体和野生型(WT)幼崽喂食缺钙食物2周而开始的。成熟破骨细胞中Grem1的缺失不影响发育性骨生长和基础骨转换。在钙缺乏的情况下,雄性cKO突变体在破骨细胞吸收和小梁骨丢失方面比雄性WT突变体表现出更大的增加,这表明雄性突变体对钙缺乏的骨骼敏感性增强。对钙缺乏的敏感性增强是性别依赖的,因为雌性cKO突变体在破骨细胞吸收和骨质流失方面的增幅低于雌性WT和雄性cKO突变体。破骨细胞对钙胁迫的骨吸收反应的性别差异是破骨细胞固有的,因为雄性而非雌性cKO突变体的破骨细胞在体外的骨吸收活性高于各自性别的WT窝群的破骨细胞。雄性cKO突变体对钙缺失的骨形成反应小于雄性WT窝友,而雌性突变体对骨形成的反应大于雌性WT窝友,说明cKO突变体在骨形成反应上也存在性别差异。骨形成反应的性别差异不是由成骨细胞的内在差异引起的,而可能是由于成骨因子的性别依赖性破骨细胞释放差异所致。总之,破骨细胞衍生的gremlin-1在骨骼对钙应激的反应中具有复杂的性别依赖性调节作用。
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来源期刊
Calcified Tissue International
Calcified Tissue International 医学-内分泌学与代谢
CiteScore
8.00
自引率
2.40%
发文量
112
审稿时长
4-8 weeks
期刊介绍: Calcified Tissue International and Musculoskeletal Research publishes original research and reviews concerning the structure and function of bone, and other musculoskeletal tissues in living organisms and clinical studies of musculoskeletal disease. It includes studies of cell biology, molecular biology, intracellular signalling, and physiology, as well as research into the hormones, cytokines and other mediators that influence the musculoskeletal system. The journal also publishes clinical studies of relevance to bone disease, mineral metabolism, muscle function, and musculoskeletal interactions.
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