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首页> 外文期刊>Human Molecular Genetics >Fukutin-related protein is essential for mouse muscle, brain and eye development and mutation recapitulates the wide clinical spectrums of dystroglycanopathies
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Fukutin-related protein is essential for mouse muscle, brain and eye development and mutation recapitulates the wide clinical spectrums of dystroglycanopathies

机译:Fukutin相关蛋白对于小鼠肌肉,大脑和眼睛的发育至关重要,并且突变概括了各种营养不良症的临床表现

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Mutations in fukutin-related protein (FKRP) cause a common subset of muscular dystrophies characterized by aberrant glycosylation of alpha-dystroglycan (α-DG), collectively known as dystroglycanopathies. The clinical variations associated with FKRP mutations range from mild limb-girdle muscular dystrophy type 2I with predominantly muscle phenotypes to severe Walker–Warburg syndrome and muscle–eye–brain disease with striking structural brain and eye defects. In the present study, we have generated animal models and demonstrated that ablation of FKRP functions is embryonic lethal and that the homozygous-null embryos die before reaching E12.5. The homozygous knock-in mouse carrying the missense P448L mutation almost completely lacks functional glycosylation of α-DG in muscles and brain, validating the essential role of FKRP in the functional glycosylation of α-DG. However, the knock-in mouse survives and develops a wide range of structural abnormalities in the central nervous system, characteristics of neuronal migration defects. The brain and eye defects are highly reminiscent of the phenotypes seen in severe dystroglycanopathy patients. In addition, skeletal muscles develop progressive muscular dystrophy. Our results confirm that post-translational modifications of α-DG are essential for normal development of the brain and eyes. In addition, both the mutation itself and the levels of FKRP expression are equally critical for the survival of the animals. The exceptionally wide clinical spectrums recapitulated in the P448L mice also suggest the involvement of other factors in the disease progression. The mutant mouse represents a valuable model to further elucidate the functions of FKRP and develop therapies for FKRP-related muscular dystrophies.
机译:福建蛋白相关蛋白(FKRP)中的突变会导致肌肉营养不良的常见子集,其特征是α-营养不良糖基(α-DG)异常糖基化,统称为营养不良性糖病。与FKRP突变相关的临床变异范围从轻度的肢带型2I型肌营养不良(主要表现为肌肉表型)到严重的Walker-Warburg综合征和具有明显结构性脑和眼缺陷的肌肉-眼脑疾病。在本研究中,我们已经生成了动物模型,并证明了FKRP功能的消融对胚胎具有致命性,并且纯合零胚的胚胎在达到E12.5之前就死亡了。具有错义P448L突变的纯合敲入小鼠几乎完全缺乏肌肉和大脑中α-DG的功能糖基化,这验证了FKRP在α-DG的功能糖基化中的重要作用。但是,敲入小鼠存活下来并在中枢神经系统中发展出广泛的结构异常,这是神经元迁移缺陷的特征。脑部和眼睛的缺陷使人联想到重度营养不良性糖尿病患者的表型。另外,骨骼肌发展为进行性肌营养不良。我们的结果证实,α-DG的翻译后修饰对于大脑和眼睛的正常发育至关重要。另外,突变本身和FKRP表达水平对于动物的存活同样重要。在P448L小鼠中概括的异常广泛的临床光谱还表明,其他因素也参与了疾病的发展。突变小鼠代表了一种有价值的模型,可以进一步阐明FKRP的功能并开发针对FKRP相关的肌营养不良症的疗法。

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  • 来源
    《Human Molecular Genetics》 |2010年第20期|p.3995-4006|共12页
  • 作者单位

    McColl-Lockwood Laboratory for Muscular Dystrophy Research, Neuromuscular/ALS Center, Carolinas Medical Center, Charlotte, NC 28231, USA,;

    McColl-Lockwood Laboratory for Muscular Dystrophy Research, Neuromuscular/ALS Center, Carolinas Medical Center, Charlotte, NC 28231, USA,;

    Department of Pathology, Children's Hospital, Boston, MA 02115, USA,;

    Biostatistics Core Facility, Carolinas Medical Center, Charlotte, NC 28231, USA,;

    Orthopaedic Biology Research Laboratory, Carolinas Medical Center, Charlotte, NC 28231, USA,;

    Orthopaedic Biology Research Laboratory, Carolinas Medical Center, Charlotte, NC 28231, USA,;

    Animal Models Laboratory, University of North Carolina, Chapel Hill, NC 27599, USA and;

    MRC Centre for Neuropsychiatric Genetics and Genomics, Department of Psychological Medicine and Neurology, Cardiff University, Henry Wellcome Building, Heath Park, Cardiff F14 4XN, UK;

    McColl-Lockwood Laboratory for Muscular Dystrophy Research, Neuromuscular/ALS Center, Carolinas Medical Center, Charlotte, NC 28231, USA,;

    McColl-Lockwood Laboratory for Muscular Dystrophy Research, Neuromuscular/ALS Center, Carolinas Medical Center, Charlotte, NC 28231, USA,;

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