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Identification of transcripts from a subtraction library which might be responsible for the mild phenotype in an intrafamilially variable course of Duchenne muscular dystrophy.

机译:从减法文库中鉴定出可能是在杜氏肌营养不良症的家族内可变病程中轻度表型的转录本。

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While frame-shift mutations are usually found in Duchenne muscular dystrophy (DMD), in-frame mutations are associated with the less severe phenotype of Becker's muscular dystrophy. Exceptions have been reported in both directions suggesting the existence of modifying genes, which might be helpful for innovation of new therapeutic strategies. We report on the very rare case of an intrafamilially different course of DMD, with the younger brother being far less affected than the older one when compared at the same age. In this context, we constructed a subtraction library enriched for transcripts over-expressed in the patient with the milder phenotype. Twelve random clones were sequenced, followed by database analysis. Six of them, casein kinase 1 alpha 1, RAP2B, dynactin 3 light chain, core binding factor beta, myosin light polypeptide 2 and one hypothetical gene, were further analysed by real-time RT-PCR. All these genes were over-expressed 3-20 times in the less affected patient compared with the more severely affected one. Casein kinase 1 and the hypothetical gene showed even a slightly higher expression than the control. Up-regulation of myosin light polypeptide 2, one of the most sensitive markers of muscle fibre regeneration, obviously reflects the milder phenotype. Casein kinase 1, dynactin and core binding factor are supposed to be involved in cell cycle pathways. RAP is a component of the signalling network which controls fundamental cellular processes such as proliferation and differentiation. All four might be interesting candidates for a therapeutic approach to diminish progression of dystrophy in DMD.
机译:虽然通常在杜氏肌营养不良症(DMD)中发现移码突变,但框内突变与贝克尔肌营养不良症的较轻表型有关。双向都有异常报道,提示存在修饰基因,这可能有助于创新治疗策略。我们报告了非常罕见的DMD家族内不同病程的案例,与同龄人相比,弟弟的患病率要远小于年长的弟弟。在这种情况下,我们构建了一个减法文库,该文库丰富了在较轻表型患者中过表达的转录本。对十二个随机克隆进行测序,然后进行数据库分析。通过实时RT-PCR进一步分析了其中的六个,酪蛋白激酶1α1,RAP2B,强肌动蛋白3轻链,核心结合因子β,肌球蛋白轻多肽2和一个假想基因。与受影响最严重的患者相比,受影响较小的患者中所有这些基因均过表达3至20倍。酪蛋白激酶1和假设的基因显示甚至比对照稍高的表达。肌球蛋白轻多肽2(肌纤维再生最敏感的标志之一)的上调明显反映出较温和的表型。酪蛋白激酶1,动力蛋白和核心结合因子被认为与细胞周期途径有关。 RAP是信号网络的一个组成部分,它控制基本的细胞过程,例如增殖和分化。对于减少DMD中营养不良的进展的治疗方法,所有这四个可能都是有趣的候选者。

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