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首页> 外文期刊>Human Molecular Genetics >P4HA1 mutations cause a unique congenital disorder of connective tissue involving tendon, bone, muscle and the eye
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P4HA1 mutations cause a unique congenital disorder of connective tissue involving tendon, bone, muscle and the eye

机译:P4HA1突变导致涉及肌腱,骨骼,肌肉和眼睛的独特先天性障碍

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摘要

Collagen prolyl 4-hydroxylases (C-P4Hs) play a central role in the formation and stabilization of the triple helical domain of collagens. P4HA1 encodes the catalytic a(I) subunit of the main C-P4H isoenzyme (C-P4H-I). We now report human bi-allelic P4HA1 mutations in a family with a congenital-onset disorder of connective tissue, manifesting as early-onset joint hypermobility, joint contractures, muscle weakness and bone dysplasia as well as high myopia, with evidence of clinical improvement of motor function over time in the surviving patient. Similar to P4ha1 null mice, which die prenatally, the muscle tissue from P1 and P2 was found to have reduced collagen IV immunoreactivity at the muscle basement membrane. Patients were compound heterozygous for frameshift and splice site mutations leading to reduced, but not absent, P4HA1 protein level and C-P4H activity in dermal fibroblasts compared to age-matched control samples. Differential scanning calorimetry revealed reduced thermal stability of collagen in patient-derived dermal fibroblasts versus age-matched control samples. Mutations affecting the family of C-P4Hs, and in particular C-P4H-I, should be considered in patients presenting with congenital connective tissue/myopathy overlap disorders with joint hypermobility, contractures, mild skeletal dysplasia and high myopia.
机译:胶原蛋白脯氨酰4-羟基酶(C-P4HS)在胶原胶原三螺旋结构域的形成和稳定中起着核心作用。 P4HA1编码主要C-P4H同工酶(C-P4H-I)的催化A(I)亚基。我们现在在一个家庭中举报人均p4ha1突变,并表现为结缔组织的先天性疾病,表现为早上的关节高兴,关节挛缩,肌肉弱点以及骨发育不良以及高近视,具有临床改善的证据在存活的患者中的电机功能随着时间的推移。类似于P4Ha1含氟小鼠,其在原始地死于p1和p2的肌肉组织在肌肉基底膜处减少了胶原IV免疫反应性。与年龄匹配的对照样品相比,患者对框架的杂合而均为杂合的杂合,均均突变,但在皮肤成纤维细胞中的C-P4H活性和C-P4H活性。差分扫描量热法显示出患者衍生的皮肤成纤维细胞与年龄匹配的对照样品中胶原蛋白的热稳定性降低。影响C-P4HS系列,特别是C-P4H-I的突变应考虑在患有先天性结缔组织/肌病重叠障碍的患者中,具有关节高兴,挛缩,轻度骨骼发育性和高近视。

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  • 来源
    《Human Molecular Genetics 》 |2017年第12期| 共11页
  • 作者单位

    NINDS Neuromuscular &

    Neurogenet Disorders Childhood Se NIH Bldg 36 Rm 4D04 Bethesda MD 20892;

    NINDS Neuromuscular &

    Neurogenet Disorders Childhood Se NIH Bldg 36 Rm 4D04 Bethesda MD 20892;

    Fac Biochem &

    Mol Med Bioctr Oulu Oulu Ctr Cell Matrix Res Oulu Finland;

    NINDS Neuromuscular &

    Neurogenet Disorders Childhood Se NIH Bldg 36 Rm 4D04 Bethesda MD 20892;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum Sect Heritable Disorders Bone &

    Extracellular;

    NINDS Neuromuscular &

    Neurogenet Disorders Childhood Se NIH Bldg 36 Rm 4D04 Bethesda MD 20892;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum Sect Phys Biochem NIH Bethesda MD USA;

    NINDS Neuromuscular &

    Neurogenet Disorders Childhood Se NIH Bldg 36 Rm 4D04 Bethesda MD 20892;

    NINDS Neuromuscular &

    Neurogenet Disorders Childhood Se NIH Bldg 36 Rm 4D04 Bethesda MD 20892;

    NINDS Neuromuscular &

    Neurogenet Disorders Childhood Se NIH Bldg 36 Rm 4D04 Bethesda MD 20892;

    Univ Penn Childrens Hosp Philadelphia Perelman Sch Med Div Human Genet Dept Pediat Philadelphia;

    Hosp Sick Children Ctr Genet Med Div Clin &

    Metab Genet Toronto ON Canada;

    Eastern Virginia Med Sch Dept Maternal Fetal Med Norfolk VA 23501 USA;

    Ghent Univ Hosp Ctr Med Genet De Pintelaan 185 B-9000 Ghent Belgium;

    Massachusetts Gen Hosp Analyt &

    Translat Genet Unit Boston MA 02114 USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum Sect Phys Biochem NIH Bethesda MD USA;

    Eunice Kennedy Shriver Natl Inst Child Hlth &

    Hum Sect Heritable Disorders Bone &

    Extracellular;

    Fac Biochem &

    Mol Med Bioctr Oulu Oulu Ctr Cell Matrix Res Oulu Finland;

    NINDS Neuromuscular &

    Neurogenet Disorders Childhood Se NIH Bldg 36 Rm 4D04 Bethesda MD 20892;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学 ;
  • 关键词

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