首页> 外文期刊>Nature Genetics >Atp6i-deficient mice exhibit severe osteopetrosis due to loss of osteoclast-mediated extracellular acidification.
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Atp6i-deficient mice exhibit severe osteopetrosis due to loss of osteoclast-mediated extracellular acidification.

机译:缺乏Atp6i的小鼠由于破骨细胞介导的细胞外酸化作用的丧失而表现出严重的骨质疏松。

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Solubilization of bone mineral by osteoclasts depends on the formation of an acidic extracellular compartment through the action of a V-proton pump that has not yet been characterized at the molecular level. We previously cloned a gene (Atp6i, for V-proton pump, H+ transporting (vacuolar proton pump) member I) encoding a putative osteoclast-specific proton pump subunit, termed OC-116kD (ref. 4). Here we show that targeted disruption of Atp6i in mice results in severe osteopetrosis. Atp6i-/- osteoclast-like cells (OCLs) lose the function of extracellular acidification, but retain intracellular lysosomal proton pump activity. The pH in Atp6i-/- liver lysosomes and proton transport in microsomes of Atp6i-/- kidney are identical to that in wild-type mice. Atp6i-/- mice exhibit a normal acid-base balance in blood and urine. Our results demonstrate that Atp6i is unique and necessary for osteoclast-mediated extracellular acidification.
机译:破骨细胞对骨矿物质的溶解取决于在分子水平上尚未表征的V型质子泵的作用,从而形成酸性的细胞外区室。我们先前克隆了一个基因(Atp6i,用于V质子泵,H +转运(真空质子泵)成员I),编码一个假定的破骨细胞特异性质子泵亚基,称为OC-116kD(参考文献4)。在这里,我们显示在小鼠中Atp6i的靶向破坏导致严重的骨质疏松。 Atp6i-/-破骨细胞样细胞(OCL)失去了细胞外酸化的功能,但保留了细胞内溶酶体质子泵的活性。 Atp6i-/-肝溶酶体中的pH值和Atp6i-/-肾脏微粒体中的质子转运与野生型小鼠相同。 Atp6i-/-小鼠的血液和尿液显示出正常的酸碱平衡。我们的结果证明Atp6i是破骨细胞介导的细胞外酸化的独特且必要的条件。

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