首页> 美国卫生研究院文献>Human Molecular Genetics >The common missense mutation D489N in TRIM32 causing limb girdle muscular dystrophy 2H leads to loss of the mutated protein in knock-in mice resulting in a Trim32-null phenotype
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The common missense mutation D489N in TRIM32 causing limb girdle muscular dystrophy 2H leads to loss of the mutated protein in knock-in mice resulting in a Trim32-null phenotype

机译:TRIM32中常见的错义突变D489N导致四肢带状肌营养不良症2H导致敲入小鼠的突变蛋白丢失导致Trim32-null表型

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摘要

Mutations in tripartite motif protein 32 (TRIM32) are responsible for several hereditary disorders that include limb girdle muscular dystrophy type 2H (LGMD2H), sarcotubular myopathy (STM) and Bardet Biedl syndrome. Most LGMD2H mutations in TRIM32 are clustered in the NHL β-propeller domain at the C-terminus and are predicted to interfere with homodimerization. To get insight into TRIM32's role in the pathogenesis of LGMD2H and to create an accurate model of disease, we have generated a knock-in mouse (T32KI) carrying the c.1465G > A (p.D489N) mutation in murine Trim32 corresponding to the human LGMD2H/STM pathogenic mutation c.1459G > A (p.D487N). Our data indicate that T32KI mice have both a myopathic and a neurogenic phenotype, very similar to the one described in the Trim32-null mice that we created previously. Analysis of Trim32 gene expression in T32KI mice revealed normal mRNA levels, but a severe reduction in mutant TRIM32 (D489N) at the protein level. Our results suggest that the D489N pathogenic mutation destabilizes the protein, leading to its degradation, and results in the same mild myopathic and neurogenic phenotype as that found in Trim32-null mice. Thus, one potential mechanism of LGMD2H might be destabilization of mutated TRIM32 protein leading to a null phenotype.
机译:三方基序蛋白32(TRIM32)中的突变可导致几种遗传性疾病,包括2H型肢带肌肉萎缩症(LGMD2H),肾小管肌病(STM)和Bardet Biedl综合征。 TRIM32中的大多数LGMD2H突变聚集在C端的NHLβ-螺旋结构域中,并预计会干扰同型二聚体。为了深入了解TRIM32在LGMD2H发病机理中的作用并创建准确的疾病模型,我们制备了一种敲入小鼠(T32KI),其在鼠Trim32中携带c.1465G> A(p.D489N)突变,与该突变相对应。人LGMD2H / STM致病性突变c.1459G> A(p.D487N)。我们的数据表明,T32KI小鼠具有肌病性和神经源性表型,与我们之前创建的Trim32-null小鼠中描述的非常相似。 T32KI小鼠中Trim32基因表达的分析显示正常的mRNA水平,但在蛋白质水平上突变TRIM32(D489N)的严重降低。我们的结果表明,D489N致病性突变使蛋白质不稳定,导致其降解,并导致与Trim32-null小鼠相同的轻度肌病和神经性表型。因此,LGMD2H的潜在机制之一可能是突变的TRIM32蛋白不稳定,导致表型无效。

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