首页> 美国卫生研究院文献>American Journal of Human Genetics >Succinyl CoA: 3-oxoacid CoA transferase (SCOT): human cDNA cloning human chromosomal mapping to 5p13 and mutation detection in a SCOT-deficient patient.
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Succinyl CoA: 3-oxoacid CoA transferase (SCOT): human cDNA cloning human chromosomal mapping to 5p13 and mutation detection in a SCOT-deficient patient.

机译:琥珀酰CoA:3-含氧酸CoA转移酶(SCOT):人cDNA克隆人染色体映射到5p13以及SCOT缺陷患者的突变检测。

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摘要

Succinyl CoA: 3-oxoacid CoA transferase (SCOT; E.C.2.8.3.5) mediates the rate-determining step of ketolysis in extrahepatic tissues, the esterification of acetoacetate to CoA for use in energy production. Hereditary SCOT deficiency in humans causes episodes of severe ketoacidosis. We obtained human-heart SCOT cDNA clones spanning the entire 1,560-nt coding sequence. Sequence alignment of the human SCOT peptides with other known CoA transferases revealed several conserved regions of potential functional importance. A single approximately 3.2-kb SCOT mRNA is present in human tissues (heart > leukocytes >> fibroblasts), but no signal is detectable in the human hepatoma cell line HepG2. We mapped the human SCOT locus (OXCT) to the cytogenetic band 5p13 by in situ hybridization. From fibroblasts of a patient with hereditary SCOT deficiency, we amplified and cloned cDNA fragments containing the entire SCOT coding sequence. We found a homozygous C-to-G transversion at nt 848, which changes the Ser 283 codon to a stop codon. This mutation (S283X) is incompatible with normal enzyme function and represents the first documentation of a pathogenic mutation in SCOT deficiency.
机译:琥珀酰CoA:3-含氧酸CoA转移酶(SCOT; E.C.2.8.3.5)介导肝外组织中酮分解的速率确定步骤,即乙酰乙酸酯化成CoA的能量生产过程。人类的遗传性SCOT缺乏会导致严重的酮症酸中毒。我们获得了跨越整个1,560-nt编码序列的人心脏SCOT cDNA克隆。人SCOT肽与其他已知的CoA转移酶的序列比对揭示了几个具有潜在功能重要性的保守区。人类组织(心脏>白细胞成纤维细胞)中存在单个大约3.2kb的SCOT mRNA,但在人类肝癌细胞系HepG2中未检测到信号。我们通过原位杂交将人类SCOT基因座(OXCT)映射到细胞遗传学带5p13。从遗传性SCOT缺乏症患者的成纤维细胞中,我们扩增并克隆了包含完整SCOT编码序列的cDNA片段。我们发现在nt 848的纯合C到G转换,将Ser 283密码子更改为终止密码子。此突变(S283X)与正常的酶功能不兼容,代表了SCOT缺乏症的致病突变的第一个文献。

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