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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Human liver mitochondrial carnitine palmitoyltransferase Ⅰ: Characterization of its cDNA and chromosomal localization and partial analysis of the gene
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Human liver mitochondrial carnitine palmitoyltransferase Ⅰ: Characterization of its cDNA and chromosomal localization and partial analysis of the gene

机译:人肝线粒体肉碱棕榈酰转移酶Ⅰ:其cDNA特征,染色体定位及部分基因分析

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摘要

Using the cDNA for rat liver mitochondrial carnitine palmitoyltransferase Ⅰ (CPT Ⅰ; EC 2.3.1.21) as a probe, we isolated its counterpart as three overlapping clones from a human liver cDNA library. Both the nucleotide sequence of the human cDNA and the predicted primary structure of the protein (773 aa) proved to be very similar to those of the rat enzyme (82% and 88% identity, respectively). The CPT Ⅰ mRNA size was also found to be the same (≈4.7 kb) in both species. Screening of a human genomic library with the newly obtained cDNA yielded a positive clone of ≈6.5 kb which, upon partial analysis, was found to contain at least two complete exons linked by a 2.3-kb intron. Oligonucleotide primers specific to upstream and downstream regions of one of the exon/intron junctions were tested in PCRs with DNA from a panel of somatic cell hybrids, each containing a single human chromosome. The results allowed unambiguous assignment of the human liver CPT Ⅰ gene to the q (long) arm of chromosome 11. Additional experiments established that liver and fibroblasts express the same isoform of mitochondrial CPT Ⅰ, legitimizing the use of fibroblast assays in the differential diagnosis of the "muscle" and "hepatic" forms of CPT deficiency. The data provide insights into the structure of a human CPT Ⅰ isoform and its corresponding gene and establish unequivocally that CPT Ⅰ and CPT Ⅱ are distinct gene products. Availability of the human CPT Ⅰ cDNA should open the way to an understanding of the genetic basis of inherited CPT Ⅰ deficiency syndromes, how the liver CPT Ⅰ gene is regulated, and which tissues other than liver express this particular variant of the enzyme.
机译:以大鼠肝线粒体肉碱棕榈酰转移酶Ⅰ(CPTⅠ; EC 2.3.1.21)的cDNA为探针,从人肝cDNA文库中分离出其对应的三个重叠克隆。人cDNA的核苷酸序列和蛋白质的预测一级结构(773aa)都与大鼠酶非常相似(分别为82%和88%相同)。在两个物种中,CPTⅠmRNA的大小也相同(约4.7 kb)。用新获得的cDNA筛选人基因组文库产生了一个约6.5 kb的阳性克隆,经部分分析,发现该克隆含有至少两个由2.3 kb内含子连接的完整外显子。在外显子/内含子连接之一的上游和下游区域特异的寡核苷酸引物在PCR中用来自一组体细胞杂种的DNA进行了测试,每个杂种均包含一个人类染色体。结果使人肝CPTⅠ基因明确分配到11号染色体的q(长)臂上。另外的实验证实,肝和成纤维细胞表达相同的线粒体CPTⅠ亚型,合法化了成纤维细胞测定法在肝癌的鉴别诊断中的应用。 CPT缺乏的“肌肉”和“肝脏”形式。这些数据为人类CPTⅠ同工型及其相应基因的结构提供了见识,并明确地确定CPTⅠ和CPTⅡ是不同的基因产物。人CPTⅠcDNA的可用性应该为了解遗传的CPTⅠ缺乏症候群的遗传基础,肝脏CPTⅠ基因的调控方式以及除肝脏以外的其他组织表达这种特定酶途径开辟道路。

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