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在骨质疏松症患者中发现的 V-ATPase a3 同工型突变使其表达缺失,并破坏破骨细胞功能。

V-ATPase a3 isoform mutations identified in osteopetrosis patients abolish its expression and disrupt osteoclast function.

机构信息

Division of Biochemistry, School of Pharmacy, Iwate Medical University, Yahaba, Iwate, 028-3694, Japan.

Department of Biochemistry, Faculty of Pharmaceutical Sciences, Doshisha Women's College, Kyotanabe, Kyoto, 610-0395, Japan.

出版信息

Exp Cell Res. 2020 Apr 15;389(2):111901. doi: 10.1016/j.yexcr.2020.111901. Epub 2020 Feb 8.

Abstract

The a3 isoform of vacuolar-type proton-pumping ATPase (V-ATPase) is essential for bone resorption by osteoclasts. Although more than 90 mutations of the human a3 gene have been identified in patients with infantile malignant osteopetrosis, it is unclear whether they lead to osteoclast dysfunction. We have established an in vitro assay to induce osteoclasts from spleen macrophages derived from a3-knockout mice. Here, we examined the effects of these mutations in a3-knockout osteoclasts. We were interested in four mutations, two short deletions and two missense mutations, previously identified in the a3 cytosolic domain. a3 harboring either of the two short deletions was hardly expressed in osteoclasts and calcium phosphate resorption was impaired. On the other hand, osteoclasts expressing a3 with either of the two missense mutations exhibited no defects. Specifically, expression levels of the mutant proteins, V-ATPase assembly, and calcium phosphate resorption activity were similar to those of the wild type. Moreover, these missense mutants interacted with Rab7, a small GTPase that regulates lysosomal trafficking. These results suggest that the short deletions impair a3 expression and thus disrupt V-ATPase subunit assembly essential for bone resorption, while the missense mutations do not cause osteoclast dysfunction without an additional mutation(s) or impair resorption of bone, but not of calcium phosphate.

摘要

空泡质子泵 V-ATPase 的 a3 同工型对于破骨细胞的骨吸收是必需的。尽管在患有婴儿恶性成骨不全症的患者中已经鉴定出人类 a3 基因的超过 90 种突变,但尚不清楚它们是否导致破骨细胞功能障碍。我们已经建立了一种体外测定法,从 a3 基因敲除小鼠的脾巨噬细胞中诱导破骨细胞。在这里,我们研究了这些突变在 a3 基因敲除破骨细胞中的作用。我们对四个突变感兴趣,两个短缺失和两个错义突变,先前在 a3 胞质结构域中鉴定出。在破骨细胞中,携带两个短缺失中的任一个的 a3 几乎不表达,并且钙磷酸盐吸收受损。另一方面,表达具有任一个错义突变的 a3 的破骨细胞没有缺陷。具体而言,突变蛋白的表达水平、V-ATPase 组装和钙磷酸盐吸收活性与野生型相似。此外,这些错义突变体与 Rab7 相互作用,Rab7 是一种调节溶酶体运输的小 GTPase。这些结果表明,短缺失会破坏 a3 的表达,从而破坏对于骨吸收至关重要的 V-ATPase 亚基组装,而错义突变不会导致破骨细胞功能障碍,除非存在额外的突变或破坏骨吸收而不是钙磷酸盐吸收。

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