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Age-resolving Osteopetrosis: A Rat Model Implicating Microphthalmia and the Related Transcription Factor TFE3

机译:年龄分辨性骨质疏松症:牵连小眼症和相关转录因子TFE3的大鼠模型。

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摘要

Microphthalmia (Mi) is a basic helix-loop-helix–leucine zipper (b-HLH-ZIP) transcription factor implicated in pigmentation, mast cells, and bone development. Two dominant-negative mi alleles (mi/mi and Mior/Mior) in mice cause osteopetrosis. In contrast, osteopetrosis has not been observed in a number of recessive mi alleles, suggesting the existence of Mi protein partners important in osteoclast function. An osteopetrotic rat of unknown genetic defect (mib) has been described whose skeletal sclerosis improves dramatically with age and that is associated with pigmentation defects reminiscent of mouse mi alleles. Here we report that this rat strain harbors a large genomic deletion encompassing the 3′ half of mi including most of the b-HLH-ZIP region. Osteoclasts from these animals lack Mi protein in contrast to wild-type rat, mouse, and human osteoclasts. Mi is not detectable in primary osteoblasts. In addition TFE3, a b-HLH-ZIP transcription factor related to Mi, was found to be expressed in osteoclasts, but not osteoblasts, and to coimmunoprecipitate with Mi. These results demonstrate the existence of members of a family of biochemically related transcription factors that may cooperate to play a central role in osteoclast function and possibly in age-related osteoclast homeostasis.
机译:小眼症(Mi)是一种基本的螺旋-环-螺旋-亮氨酸拉链(b-HLH-ZIP)转录因子,与色素沉着,肥大细胞和骨骼发育有关。小鼠中的两个显性阴性mi等位基因(mi / mi和Mior / Mior)引起骨质疏松症。相反,尚未在许多隐性mi等位基因中观察到骨质疏松症,这表明存在着对破骨细胞功能很重要的Mi蛋白伴侣。已经描述了一种具有未知遗传缺陷(mib)的骨质疏松大鼠,其骨骼硬化会随着年龄的增长而显着改善,并且与色素沉着缺陷有关,使人联想到小鼠mi等位基因。在这里我们报告说,该大鼠品系具有一个大的基因组缺失,涵盖了mi的3'一半,包括大部分b-HLH-ZIP区。与野生型大鼠,小鼠和人类破骨细胞相比,这些动物的破骨细胞缺乏Mi蛋白。在原代成骨细胞中未检测到Mi。另外,发现与Mi有关的b-HLH-ZIP转录因子TFE3在破骨细胞中表达,但在成骨细胞中不表达,并与Mi共免疫沉淀。这些结果表明存在与生化相关的转录因子家族的成员,这些成员可以合作在破骨细胞功能以及可能与年龄相关的破骨细胞稳态中发挥中心作用。

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