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Rab32 and Rab38 maintain bone homeostasis by regulating intracellular traffic in osteoclasts
Cell Structure and Function ( IF 1.5 ) Pub Date : 2023-11-17 , DOI: 10.1247/csf.23061
Kanako Tokuda 1 , Shiou-Ling Lu 2 , Zidi Zhang 2 , Yumiko Kato 2, 3 , Siyu Chen 2 , Kazuya Noda 2, 4 , Katsutoshi Hirose 5 , Yu Usami 5 , Narikazu Uzawa 3 , Shinya Murakami 4 , Satoru Toyosawa 5 , Mitsunori Fukuda 6 , Ge-Hong Sun-Wada 7 , Yoh Wada 8, 9 , Takeshi Noda 1, 2, 9
Affiliation  

Osteoclasts play a crucial role in bone homeostasis by forming resorption pits on bone surfaces, resulting in bone resorption. The osteoclast expression of Rab38 protein is highly induced during differentiation from macrophages. Here we generated mice with double knockout (DKO) of Rab38 and its paralogue, Rab32, to investigate the roles of these proteins in osteoclasts. Bone marrow-derived macrophages from Rab32/38 DKO mice differentiated normally into osteoclasts in vitro. However, DKO osteoclasts showed reduced bone resorption activity. These osteoclasts also demonstrated defective secretion of tartrate-resistant acid phosphatase and cathepsin K into culture medium. Furthermore, the plasma membrane localization of a3, an osteoclast-specific a subunit of V-ATPase, was abrogated in DKO mice, substantiating the reduced resorption activity. In vivo, Rab32- and Rab38-positive cells were attached to the bone surface. Eight-week-old DKO mice showed significantly thickened trabecular bones in micro-CT and histomorphometry analysis, as well as reduced serum levels of cross-linked C-telopeptide of type I collagen, indicating diminished bone resorption in vivo. In DKO male mice over 10 weeks of age, hyperostosis appeared at the talofibular syndesmosis, the distal junction of the tibia and fibula. Furthermore, middle-aged mice (10 to 12 months of age) exhibited kyphosis, which is not usually observed in wild-type male mice until around 24 months of age. These results indicate that Rab32 and Rab38 contribute to osteoclast function by supporting intracellular traffic, thereby maintaining normal bone homeostasis.



中文翻译:


Rab32 和 Rab38 通过调节破骨细胞的细胞内交通维持骨稳态

破骨细胞通过在骨表面形成吸收凹坑从而导致骨吸收,在骨稳态中发挥至关重要的作用。Rab38 蛋白的破骨细胞表达在巨噬细胞分化过程中被高度诱导。在这里,我们生成了 Rab38 及其旁系同源物 Rab32 双敲除 (DKO) 的小鼠,以研究这些蛋白质在破骨细胞中的作用。来自 Rab32/38 DKO 小鼠的骨髓来源的巨噬细胞在体外正常分化为破骨细胞。然而,DKO 破骨细胞显示骨吸收活性降低。这些破骨细胞还表现出将抗酒石酸盐酸性磷酸酶和组织蛋白酶 K 分泌到培养基中的缺陷。此外,V-ATP酶的破骨细胞特异性α亚基α3的质膜定位在DKO小鼠中被消除,证实了吸收活性的降低。在体内,Rab32 和 Rab38 阳性细胞附着在骨表面。八周大的 DKO 小鼠在显微 CT 和组织形态计量学分析中显示骨小梁显着增厚,并且 I 型胶原交联 C 端肽的血清水平降低,表明体内骨吸收减少。在10周龄以上的DKO雄性小鼠中,距腓联合韧带(胫骨和腓骨的远端连接处)出现骨质增生。此外,中年小鼠(10至12个月大)表现出脊柱后凸,这在野生型雄性小鼠中通常要到24个月左右才会观察到。这些结果表明 Rab32 和 Rab38 通过支持细胞内交通来促进破骨细胞功能,从而维持正常的骨稳态。

更新日期:2023-11-16
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