首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >The osteopetrotic mutation toothless (tl) is a loss-of-function frameshift mutation in the rat Csf1 gene: Evidence of a crucial role for CSF-1 in osteoclastogenesis and endochondral ossification
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The osteopetrotic mutation toothless (tl) is a loss-of-function frameshift mutation in the rat Csf1 gene: Evidence of a crucial role for CSF-1 in osteoclastogenesis and endochondral ossification

机译:骨质疏松突变无牙(tl)是大鼠Csf1基因的功能丧失移码突变:CSF-1在破骨细胞形成和软骨内骨化中起关键作用的证据

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The toothless (tl) mutation in the rat is a naturally occurring, autosomal recessive mutation resulting in a profound deficiency of bone-resorbing osteoclasts and peritoneal macrophages. The failure to resorb bone produces severe, unrelenting osteopetrosis, with a highly sclerotic skeleton, lack of marrow spaces, failure of tooth eruption, and other pathologies. Injections of CSF-1 improve some, but not all, of these. In this report we have used polymorphism mapping, sequencing, and expression studies to identify the genetic lesion in the tl rat. We found a 10-base insertion near the beginning of the open reading of the Csf1 gene that yields a truncated, nonfunctional protein and an early stop codon, thus rendering the tl rat CSF-1~(null). All mutants were homozygous for the mutation and all carriers were heterozygous. No CSF-1 transcripts were identified in rat mRNA that would avoid the mutation via alternative splicing. The biology and actions of CSF-1 have been elucidated by many studies that use another naturally occurring mutation, the op mouse, in which a single base insertion also disrupts the reading frame. The op mouse has milder osteoclas-topenia and osteopetrosis than the tl rat and recovers spontaneously over the first few months of life. Thus, the tl rat provides a second model in which the functions of CSF-1 can be studied. Understanding the similarities and differences in the phenotypes of these two models will be important to advancing our knowledge of the many actions of CSF-1.
机译:大鼠中的无齿(t1)突变是自然发生的常染色体隐性突变,其导致骨吸收破骨细胞和腹膜巨噬细胞的严重缺乏。无法吸收骨骼会导致严重的,不屈不挠的骨质疏松症,具有高度硬化的骨骼,缺乏骨髓间隙,牙齿萌出失败以及其他病理情况。注射CSF-1可以改善其中一些(但不是全部)。在本报告中,我们已使用多态性作图,测序和表达研究来鉴定tl大鼠的遗传损伤。我们在Csf1基因的开放阅读的开始附近发现了一个10个碱基的插入,产生一个截短的,无功能的蛋白质和一个早期终止密码子,从而使t1大鼠CSF-1〜(null)。所有突变体对于突变都是纯合的,而所有载体都是杂合的。在大鼠mRNA中未发现CSF-1转录本,可以通过选择性剪接避免突变。许多使用另一种天然突变的研究(op小鼠)已经阐明了CSF-1的生物学特性和作用,其中单碱基插入也会破坏阅读框架。 op小鼠的骨质疏松症和骨质疏松症比tl大鼠轻,并且在生命的最初几个月内自然恢复。因此,t1大鼠提供了第二模型,其中可以研究CSF-1的功能。理解这两种模型的表型的异同对于增进我们对CSF-1多种作用的认识非常重要。

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