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Two Novel Heparin-binding Vascular Endothelial Growth Factor Splices, L-VEGF144 and L-VEGF138, are Expressed in Human Glioblastoma Cells

机译:在人胶质母细胞瘤细胞中表达了两个新颖的肝素结合血管内皮生长因子剪接,L-VEGF144和L-VEGF138

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The expression levels of different vascular endothelial growth factor A (VEGF) isoforms are associated with the angiogenesis and the patient's prognoses in human cancers. Ribosomes specifically scan from 5' to 3' CUG initiation codon in the long 5'-untranslated region (5'-UTR) of the VEGF mRNA, resulting in the generation of high mol wt VEGF isoform [call large VEGF (L-VEGF)]. Alternative splicing of VEGF mRNA transcripts results in several isoforms with distinct properties that are dependent up their exon compositions. In this study, we observed two novel kinds of splicing VEGF isoforms that transcripted at the first upstream CUG codon, and which we have named large-VEGF144 (L-VEGF144), and large-VEGF138 (L-VEGF138). The expression levels of messenger RNA for the different VEGF splice forms were analyzed by reverse transcriptase-polymerase chain reaction (RT-PCR). After DNA sequencing, the genetic structure of L-VEGF144 involved not only a partial exon 1, exon 6a, and exons 7-8, but also an unique 108-nucleotides insertion of VEGF intron 5 interposed between exon 1 and exon 6. At the same time, L-VEGF144 lacked most of the N-terminal fragments (exons 1-5). We further found that a specific detection model could easily and rapidly confirm the presence of L-VEGF144 mRNA fragments in the biopsies or cell lines via RT-PCR assay. In addition, we used visible fluorescent fusion proteins to prove that both L-VEGF144 and L-VEGF138 have nuclear localization ability. Taken together, the findings of this study indicate that, unlike previously identified isoforms, these novel VEGF isoforms are likely to suggest a further level of complexity in the angiogenic process.
机译:在人类癌症中,不同血管内皮生长因子A(VEGF)同工型的表达水平与血管生成和患者的预后相关。核糖体在VEGF mRNA的长5'-非翻译区(5'-UTR)中特异地从5'到3'CUG起始密码子进行扫描,从而产生了高分子量的VEGF亚型[称为大VEGF(L-VEGF) ]。 VEGF mRNA转录物的选择性剪接产生具有不同特性的几种同工型,这些同工型取决于其外显子组成。在这项研究中,我们观察到了两种新型的剪接VEGF亚型,它们在第一个上游CUG密码子处转录,我们将其命名为large-VEGF144(L-VEGF144)和large-VEGF138(L-VEGF138)。通过逆转录酶-聚合酶链反应(RT-PCR)分析了不同VEGF剪接形式的信使RNA的表达水平。 DNA测序后,L-VEGF144的遗传结构不仅涉及部分外显子1,外显子6a和外显子7-8,而且还涉及插入在外显子1和外显子6之间的VEGF内含子5的独特108个核苷酸插入。同时,L-VEGF144缺少大多数N端片段(外显子1-5)。我们进一步发现,特定的检测模型可以通过RT-PCR分析轻松,快速地确认活检或细胞系中L-VEGF144 mRNA片段的存在。此外,我们使用可见的荧光融合蛋白来证明L-VEGF144和L-VEGF138都具有核定位能力。综上所述,这项研究的发现表明,与以前鉴定的同工型不同,这些新型的VEGF同工型可能提示血管生成过程的复杂性进一步提高。

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