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首页> 外文期刊>Mammalian genome: official journal of the International Mammalian Genome Society >Testing of SHIRPA, a mouse phenotypic assessment protocol, on Dmd~(mdx) and Dmd~(mdx3cv) dystrophin-deficient mice
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Testing of SHIRPA, a mouse phenotypic assessment protocol, on Dmd~(mdx) and Dmd~(mdx3cv) dystrophin-deficient mice

机译:在Dmd〜(mdx)和Dmd〜(mdx3cv)肌营养不良蛋白缺乏症小鼠上测试SHIRPA,一种小鼠表型评估方案

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摘要

The SHIRPA protocol was proposed as a rapid, comprehensive screening method for qualitatively abnormal phenotypes in the mouse (Rogers et al., Mamm Genome 8, 711, 1997). This screening technique is currently being used to identify mutants induced by N-ethylnitrosourea (ENU) mutagenesis (Brown and Nolan, Hum Mol Genet 7, 1627, 1998). SHIRPA can be used to identify mutants with neuromuscular abnormalities, but the sensitivity of the protocol is unknown. We tested two dystrophindeficient mutants Dmd~(mdx) and Dmd~(mdx3cv), both of which are indistinguishable from wild-type by a simple visual assessment, at different ages, using the primary screen of the SHIRPA protocol. The most dramatic observation was that both Dmd~(mdx) and Dmd~(mdx3cv) mice showed extreme fatigue after testing, while mice from the same C57BL strains appeared unaffected. Each strain of dystrophin-deficient mice showed a different profile in locomotor activity and deficiencies in the wire maneuver, righting reflex, and negative geotaxis tests. Furthermore, the wire maneuver test indicated an earlier onset of muscular impairment in Dmd~(mdx) than Dmd~(mdx3cv) mice. These data suggest that the SHIRPA primary screen is effective not only in identifying subtle neuromuscular mutants, but also in distinguishing qualitative differences between mutants with neuromuscular abnormalities.
机译:提出了SHIRPA方案作为对小鼠中定性异常表型的快速,全面的筛选方法(Rogers等,Mamm Genome 8,711,1997)。该筛选技术目前正用于鉴定由N-乙基亚硝基脲(ENU)诱变诱导的突变体(Brown and Nolan,Hum Mol Genet 7,1627,1998)。 SHIRPA可用于鉴定具有神经肌肉异常的突变体,但该方案的敏感性尚不清楚。我们通过使用SHIRPA协议的主屏幕,通过简单的视觉评估,在不同的年龄下测试了两个肌营养不良蛋白缺陷型突变体Dmd_(mdx)和Dmd_(mdx3cv),它们与野生型没有区别。最引人注目的观察结果是,测试后Dmd〜(mdx)和Dmd〜(mdx3cv)小鼠均表现出极度疲劳,而来自相同C57BL株的小鼠则未受影响。肌营养不良蛋白缺陷型小鼠的每种品系在运动活动和线操纵,扶正反射和负地轴测试中均表现出不同的运动能力和缺陷。此外,导线操纵测试表明,Dmd_(mdx)小鼠比Dmd_(mdx3cv)小鼠更早出现肌肉损伤。这些数据表明,SHIRPA初筛不仅可以识别细微的神经肌肉突变体,而且可以区分具有神经肌肉异常的突变体之间的质量差异。

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