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Localization and intron usage analysis of the human CPT1B gene for muscle type carnitine palmitoyltransferase I

机译:肌肉型肉毒碱棕榈酰转移酶I的人CPT1B基因的定位和内含子使用分析

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We isolated and sequenced cDNA and genomic DNA fragments of the human CPT1B gene, encoding muscle type carnitine palmitoyltransferase I. A recombinant P1 phage containing CPT1B was mapped to chromosome 22qter by fluorescent in situ hybridization. This finding supports the concept that ‘liver type' and ‘muscle type' isoforms of CPT I are encoded by different loci at separate chromosomal positions. Analysis of CPT1B cDNA sequences revealed the presence of an untranslated 5′ exon and differential processing of introns 13 and 19. The alternative splicing of intron 13 causes an in-frame deletion leading to a 10 amino acid residues smaller protein. Using different splice acceptor sites, intron 19 is spliced in the majority of cases, but 4 out of 14 sequenced CPT1B 3′ cDNA clones contain part of intron 19 in stead of exon 20. We found that differential polyadenylation is the mechanism behind the existence of these alternative 3′ CPT1B mRNA forms.
机译:我们分离并测序人类CPT1B基因的cDNA和基因组DNA片段,编码肌型肉碱棕榈酰转移酶I。通过荧光原位杂交将含有CPT1B的重组P1噬菌体定位到22qter染色体。这一发现支持了这样的概念,即CPT I的“肝型”和“肌肉型”同工型在不同的染色体位置由不同的基因座编码。 CPT1B cDNA序列分析显示,存在未翻译的5'外显子,内含子13和19的差异加工。内含子13的可变剪接导致读框内缺失,导致蛋白质减少10个氨基酸残基。在大多数情况下,使用不同的剪接受体位点进行内含子19的剪接,但是14个测序的CPT1B 3'cDNA克隆中有4个包含内含子19的一部分而不是外显子20。我们发现差异聚腺苷酸化是存在内含子的机制。这些替代的3'CPT1B mRNA形式。

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