首页> 外文OA文献 >Molecular cloning and nucleotide sequence of complementary DNAs encoding human short chain acyl-coenzyme A dehydrogenase and the study of the molecular basis of human short chain acyl-coenzyme A dehydrogenase deficiency.
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Molecular cloning and nucleotide sequence of complementary DNAs encoding human short chain acyl-coenzyme A dehydrogenase and the study of the molecular basis of human short chain acyl-coenzyme A dehydrogenase deficiency.

机译:编码人短链酰基辅酶A脱氢酶的互补DNA的分子克隆和核苷酸序列以及人短链酰基辅酶A脱氢酶缺陷的分子基础研究。

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摘要

Complementary DNAs encoding the precursor of human placental short chain acyl-coenzyme A (CoA) dehydrogenase (SCAD) (EC 1.3.99.2) were cloned and sequenced. The cDNA inserts in these clones were 1,852 bases in length combined, and encoded the entire 412-amino acid precursor SCAD (mol wt 44,303). This sequence included the 24-amino acid leader peptide moiety (mol wt 2,576) and 388 amino acids corresponding to the mature protein (mol wt 41,727). The comparison of SCAD and medium chain acyl-CoA dehydrogenase sequences revealed a high degree of homology, suggesting that these enzymes evolved from a common ancestral gene and belong to a gene family. We also studied mutant human SCAD in cultured skin fibroblasts from three patients with hereditary SCAD deficiency. Labeling fibroblast cultures with [35S]-methionine followed by immunoprecipitation with anti-SCAD antibody revealed that a normal size variant SCAD protein was synthesized. In all of the three SCAD-deficient cell lines, the size of variant SCAD mRNA as determined by Northern blotting using one of the normal SCAD cDNA as a probe was also normal, and no difference was observed on Southern blots in the restriction patterns of mutant genomic DNA using EcoRI, TaqI, HincII, and BamHI. These results suggest that the defects in SCAD in these cell lines are caused by a point mutation.
机译:克隆编码人胎盘短链酰基辅酶A(CoA)脱氢酶(SCAD)(EC 1.3.99.2)的互补DNA。这些克隆中的cDNA插入片段的长度相加为1,852个碱基,并编码了整个412个氨基酸的前体SCAD(摩尔重量44,303)。该序列包括24个氨基酸的前导肽部分(mol wt,2,576)和对应于成熟蛋白的388个氨基酸(mol wt,41,727)。 SCAD和中链酰基辅酶A脱氢酶序列的比较显示出高度的同源性,表明这些酶从共同的祖先基因进化而来,属于一个基因家族。我们还研究了来自三名遗传性SCAD缺乏症患者的皮肤成纤维细胞中的突变型人SCAD。用[35S]-蛋氨酸标记成纤维细胞培养物,然后用抗SCAD抗体进行免疫沉淀,发现合成了正常大小的SCAD蛋白。在所有三个SCAD缺陷细胞系中,通过以正常SCAD cDNA之一作为探针的Northern印迹法测定的变异SCAD mRNA的大小也是正常的,在Southern印迹法中观察到突变体的限制性酶切图谱没有差异基因组DNA使用EcoRI,TaqI,HincII和BamHI。这些结果表明,这些细胞系中的SCAD缺陷是由点突变引起的。

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