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首页> 外文期刊>Scientific reports. >Molecular cloning of novel transcripts of human kallikrein-related peptidases 5, 6, 7, 8 and 9 ( KLK5 – KLK9 ), using Next-generation sequencing
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Molecular cloning of novel transcripts of human kallikrein-related peptidases 5, 6, 7, 8 and 9 ( KLK5 – KLK9 ), using Next-generation sequencing

机译:使用下一代测序,使用下一代测序的人Kallikrein相关肽酶5,6,7,8和9(KLK5-KLK9)的新型转录物的分子克隆

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Alternative splicing of cancer-related genes is a common cellular mechanism accounting for cancer cell transcriptome complexity and affecting cell cycle control, proliferation, apoptosis, angiogenesis, invasion, and metastasis. In this study, we describe the discovery and molecular cloning of thirty novel transcripts of the human KLK5, KLK6, KLK7, KLK8 and KLK9 genes, using 3′ rapid amplification of cDNA ends (3′ RACE) and NGS technology, as well as their expression analysis in many established cell lines, originating from several distinct cancerous and normal tissues. Extensive bioinformatic analysis revealed novel splice variants of these five members of the KLK family, comprising entirely new exons, previously unknown boundaries of the already annotated exons (extensions and truncations) as well as alternative splicing events between these exons. Nested RT-PCR in a panel of human cell lines originating from seventeen cancerous and two normal tissues with the use of variant-specific pairs of primers was carried out for expression analysis of these novel splice variants, and Sanger sequencing of the respective amplicons confirmed our NGS results. Given that some splice variants of KLK family members possess clinical value, novel alternatively spliced transcripts appear as new candidate biomarkers for diagnostic and/or prognostic purposes and as targets for therapeutic strategies.
机译:癌细胞相关基因的替代剪接是癌细胞转录组复杂性和影响细胞周期控制,增殖,凋亡,血管生成,侵袭和转移的常见细胞机制。在这项研究中,我们描述了使用3'CDNA末端(3'播种)和NGS技术的3'快速扩增的人KLK5,KLK6,KLK7,KLK8和KLK9基因的三十个新转录物的发现和分子克隆。许多已建立的细胞系中的表达分析,来自几种不同的癌性癌和正常组织。广泛的生物信息分析揭示了KLK家族的这五个成员的新型剪接变体,包括全新的外显子,先前被带有的外显子(延伸和截断)以及这些外显子之间的替代剪接事件。嵌套RT-PCR在源自17个癌细胞和两个正常组织的人细胞系中,对这些新的剪接变体的表达分析进行了表达分析,并且各个扩增子的Sanger测序证实了我们的NGS结果。鉴于KLK家族成员的一些剪接变异具有临床价值,新颖的可剪接转录物出现为新候选生物标志物,用于诊断和/或预后目的以及治疗策略的目标。

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