Institute of Musculoskeletal Medicine, University Hospital Muenster, Albert-Schweitzer-Campus 1, Building D3, 48149, Muenster, Germany.
Department of Cell Biology, Helmholtz Centre for Infection Research (HZI), Braunschweig, Germany.
Sci Rep. 2024 Apr 6;14(1):8109. doi: 10.1038/s41598-024-58110-x.
Bone resorption is highly dependent on the dynamic rearrangement of the osteoclast actin cytoskeleton to allow formation of actin rings and a functional ruffled border. Hem1 is a hematopoietic-specific subunit of the WAVE-complex which regulates actin polymerization and is crucial for lamellipodia formation in hematopoietic cell types. However, its role in osteoclast differentiation and function is still unknown. Here, we show that although the absence of Hem1 promotes osteoclastogenesis, the ability of Hem1 osteoclasts to degrade bone was severely impaired. Global as well as osteoclast-specific deletion of Hem1 in vivo revealed increased femoral trabecular bone mass despite elevated numbers of osteoclasts in vivo. We found that the resorption defect derived from the morphological distortion of the actin-rich sealing zone and ruffled border deformation in Hem1-deficient osteoclasts leading to impaired vesicle transport and increased intracellular acidification. Collectively, our data identify Hem1 as a yet unknown key player in bone remodeling by regulating ruffled border formation and consequently the resorptive capacity of osteoclasts.
骨吸收高度依赖于破骨细胞肌动蛋白细胞骨架的动态重排,以允许形成肌动蛋白环和功能性皱襞边缘。Hem1 是 WAVE 复合物的造血特异性亚基,它调节肌动蛋白聚合,对于造血细胞类型中的片状伪足形成至关重要。然而,其在破骨细胞分化和功能中的作用尚不清楚。在这里,我们表明,尽管 Hem1 的缺失促进了破骨细胞的生成,但 Hem1 破骨细胞降解骨的能力严重受损。体内 Hem1 的缺失无论是全局性的还是破骨细胞特异性的,都导致体内破骨细胞数量增加,但股骨小梁骨量增加。我们发现,破骨细胞中富含肌动蛋白的封闭区的形态扭曲和皱襞边缘变形导致囊泡运输受损和细胞内酸化增加,从而导致吸收缺陷。总之,我们的数据表明,Hem1 通过调节皱襞边缘的形成,从而调节破骨细胞的吸收能力,是骨重塑中一个未知的关键参与者。