...
首页> 外文期刊>Human Molecular Genetics >Pathological and genetic analysis of the degenerating muscle (dmu) mouse: a new allele of Scn8a.
【24h】

Pathological and genetic analysis of the degenerating muscle (dmu) mouse: a new allele of Scn8a.

机译:变性肌肉(dmu)小鼠的病理和遗传分析:Scn8a的新等位基因。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Here, we describe a novel spontaneous autosomal recessive mutation in the mouse that is characterized by skeletal and cardiac muscle degeneration. We have named this mutant degenerating muscle (dmu). At birth, mutant mice are indistinguishable from their normal littermates. Thereafter, the disease progresses rapidly and a phenotype is first observed at approximately 11 days after birth; the dmu mice are weak and have great difficulty in moving. The principal cause of the lack of mobility is muscle atrophy and wasting in the hindquarters. Affected mice die at or around the time of weaning of unknown causes. Histopathological observations and ultrastructural analysis revealed muscle degeneration in both skeletal and cardiac muscle, but no abnormalities in sciatic nerves. Using linkage analysis, we have mapped the dmu locus to the distal portion of mouse chromosome 15 in a region syntenic to human chromosome 12q13. Interestingly, scapuloperoneal muscular dystrophy (SPMD) in humans has been linked to this region. SPMD patients with associated cardiomyopathy have also been described in the past. Initial analysis of candidate genes on mouse chromosome 15 reveal that although intact transcripts for Scn8a, the gene encoding the sodium channel 8a subunit, are present in dmu mice, their levels are dramatically reduced. Furthermore, genetic complementation crosses between dmu and med (mutation in Scn8a) mice revealed that they are allelic. Our results suggest that at least a portion of the dmu phenotype is caused by a down-regulation of Scn8a, making dmu a new allele of Scn8a.
机译:在这里,我们描述了一种以小鼠骨骼和心肌变性为特征的新型自发常染色体隐性突变。我们已将该突变体退化肌肉(dmu)命名。出生时,突变小鼠与正常同窝小鼠没有区别。此后,疾病迅速发展,并在出生后约11天首次观察到表型。 dmu小鼠虚弱,移动困难很大。缺乏活动能力的主要原因是肌肉萎缩和后肢消瘦。患病小鼠在断奶原因不明的断奶前后死亡。组织病理学观察和超微结构分析显示骨骼肌和心肌均发生肌肉变性,但坐骨神经未见异常。使用连锁分析,我们已将dmu基因座映射到与人类12q13染色体共线的小鼠15号染色体的远端。有趣的是,人类的肩oper腹肌营养不良症(SPMD)与该区域有关。过去也描述了伴有心肌病的SPMD患者。对小鼠15号染色体上候选基因的初步分析表明,尽管dmu小鼠中存在完整的Scn8a转录本(编码钠通道8a亚基的基因),但其水平却大大降低了。此外,dmu和med(Scn8a中的突变)小鼠之间的遗传互补杂交表明它们是等位基因。我们的结果表明,dmu表型的至少一部分是由Scn8a的下调引起的,从而使dmu成为Scn8a的新等位基因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号