首页> 美国卫生研究院文献>Biochemical Journal >Transcript heterogeneity of the human reduced folate carrier results from the use of multiple promoters and variable splicing of alternative upstream exons.
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Transcript heterogeneity of the human reduced folate carrier results from the use of multiple promoters and variable splicing of alternative upstream exons.

机译:人类减少的叶酸载体的转录异质性是由于使用多个启动子和可变的上游外显子的可变剪接造成的。

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摘要

We previously identified three separate cDNAs (KS6, KS32 and KS43) for the human reduced folate carrier (RFC) with unique 5' untranslated regions (5' UTRs) [Wong, Proefke, Bhushan and Matherly (1995) J. Biol. Chem. 270, 17468-17475]. Multiple RFC transcripts were confirmed in CCRF-CEM cells and transport-up-regulated K562.4CF cells by 5' rapid amplification of cDNA ends (5' RACE) and/or primer extension analysis. Two groups of 5' RACE clones were identified, one containing a variable length sequence identical with the KS43 cDNA 5' UTR, and another consisting of variants of the KS32 5' UTR, apparently generated by alternative splicing. The 5' UTR for the KS6 cDNA was not detected. A single band was detected on Southern blots of CCRF-CEM genomic DNA probed with a 326 bp genomic fragment common to all three cDNA species. The unique 5' UTRs for the KS43 and KS32 transcripts were localized to separate non-coding exons (exons 1 and 2 respectively), upstream from a large (approx. 3.42 kb) intron; the KS6 5'UTR also mapped to exon 1. Exons 1 and 2 were contiguous with 996 and 342 bp GC-rich 5' flanking regions (designated Pro43 and Pro32 respectively) that contained multiple SP1 and AP2 but no TATA or CAAT boxes. Both Pro43 and Pro32 exhibited strong promoter activities when cloned in front of a luciferase reporter gene and transfected into HT1080 and K562 cells. By an analysis of promoter deletion mutants we identified two 89 bp tandem repeats that seemed to increase Pro32 activity, and a 240 bp distal sequence that repressed Pro43 activity. Taken together, our results show that multiple human RFC transcripts are encoded by a single gene locus and that the heterogeneous 5' UTRs result from multiple transcriptional starts and variable splicing of alternative non-coding exons transcribed from separate promoters.
机译:我们先前鉴定了具有独特的5'非翻译区(5'UTR)的人类还原叶酸载体(RFC)的三个单独的cDNA(KS6,KS32和KS43)[Wong,Proefke,Bhushan和Matherly(1995)J.化学270,17468-17475]。通过cDNA末端的5'快速扩增(5'RACE)和/或引物延伸分析,在CCRF-CEM细胞和转运上调的K562.4CF细胞中证实了多个RFC转录本。鉴定出两组5'RACE克隆,一组包含与KS43 cDNA 5'UTR相同的可变长度序列,另一组由明显由替代剪接产生的KS32 5'UTR的变体组成。未检测到KS6 cDNA的5'UTR。在CCRF-CEM基因组DNA的Southern印迹上检测到一条条带,该条带用所有三个cDNA物种共有的326 bp基因组片段探测。 KS43和KS32转录本的独特5'UTRs定位于一个较大的内含子(约3.42 kb)上游的单独的非编码外显子(分别为外显子1和2)。 KS6 5'UTR也映射到外显子1。外显子1和2与996和342 bp富含GC的5'侧翼区域(分别称为Pro43和Pro32)相邻,其中包含多个SP1和AP2,但没有TATA或CAAT框。 Pro43和Pro32在克隆到萤光素酶报告基因前面并转染到HT1080和K562细胞中时均表现出强大的启动子活性。通过对启动子缺失突变体的分析,我们鉴定出两个似乎增加Pro32活性的89 bp串联重复序列,以及一个抑制Pro43活性的240 bp远端序列。两者合计,我们的结果表明,多个人RFC转录本由一个基因位点编码,并且异质5'UTRs是由多个转录起点和从不同启动子转录的替代非编码外显子的可变剪接产生的。

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