首页> 外文OA文献 >A lethal variant of osteogenesis imperfecta has a single base mutation that substitutes cysteine for glycine 904 of the alpha 1(I) chain of type I procollagen. The asymptomatic mother has an unidentified mutation producing an overmodified and unstable type I procollagen.
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A lethal variant of osteogenesis imperfecta has a single base mutation that substitutes cysteine for glycine 904 of the alpha 1(I) chain of type I procollagen. The asymptomatic mother has an unidentified mutation producing an overmodified and unstable type I procollagen.

机译:成骨不全症的致死变体具有一个单碱基突变,该突变将半胱氨酸替换为I型胶原原α1(I)链的甘氨酸904。无症状的母亲有一个无法识别的突变,产生了过度修饰和不稳定的I型胶原蛋白。

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摘要

A fraction of the pro alpha 1(I) and pro alpha 2(I) chains in type I procollagen synthesized by the fibroblasts from a proband with a lethal variant of osteogenesis imperfecta were overmodified by posttranslational reactions. After digestion with pepsin, some of the alpha 1(I) chains were recovered as disulfide-linked dimers. Mapping of cyanogen bromide peptides indicated that the disulfide link was contained in alpha 1-CB6, the cyanogen bromide fragment containing amino acid residues 823-1014 of the alpha 1(I) chain. Nucleotide sequencing of cDNA clones demonstrated a substitution of T for G that converted glycine 904 of the alpha 1(I) chain to cysteine. A large fraction of the type I procollagen synthesized by the proband's fibroblasts had a thermostability that was 3-4 degrees C lower than the normal type I procollagen as assayed by brief proteinase digestion. In addition, the type I procollagen synthesized by the proband's fibroblasts was secreted with an abnormal kinetic pattern in that there was a lag period of about 30 min in pulse-chase experiments. The mutation of glycine to cysteine was not found in type I procollagen synthesized by fibroblasts from the proband's parents. Therefore, the mutation was a sporadic one. However, the mother's fibroblasts synthesized a type I procollagen in which part of the pro alpha chains were overmodified and had a lower thermostability. Therefore, the proband may have inherited a mutated allele for type I procollagen from her mother that contributed to the lethal phenotype. The mother was asymptomatic. She was somewhat short and had slightly blue sclerae but no definitive signs of a connective tissue abnormality. The observations on the mother indicated, therefore, that a mutation that causes synthesis of a type I procollagen with a lowered thermal stability does not necessarily produce a heritable disorder of connective tissue.
机译:由成骨细胞从具有致命性成骨缺陷的致死变异体的成纤维细胞合成的I型胶原蛋白中的一部分pro alpha 1(I)和pro alpha 2(I)链被翻译后反应过度修饰。用胃蛋白酶消化后,一些α1(I)链被回收为二硫键连接的二聚体。溴化氰肽的图谱表明,二硫键包含在α1-CB6中,α1-CB6溴化氰片段含有α1(I)链的氨基酸残基823-1014。 cDNA克隆的核苷酸测序表明T取代了T,从而将α1(I)链的甘氨酸904转化为半胱氨酸。由先证者的成纤维细胞合成的大部分I型原胶原的热稳定性比通过常规蛋白酶消化测定的正常I型原胶原低3-4℃。此外,由先证者的成纤维细胞合成的I型原胶原以异常的动力学模式分泌,因为在脉冲追踪实验中存在约30分钟的滞后时间。在先证者父母的成纤维细胞合成的I型原胶原中未发现甘氨酸突变为半胱氨酸。因此,该突变是偶发性的。但是,母亲的成纤维细胞合成了I型原胶原,其中部分原α链被过度修饰,并且热稳定性较低。因此,先证者可能已经从她的母亲那里继承了I型胶原蛋白的突变等位基因,从而导致了致命的表型。母亲没有症状。她有些矮,巩膜稍呈蓝色,但没有结缔组织异常的明确体征。因此,对母亲的观察表明,导致合成I型胶原蛋白的热稳定性降低的突变并不一定会导致遗传性结缔组织疾病。

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