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首页> 外文期刊>ScientificWorldJournal >Exploration of Potential Roles of a New LOXL2 Splicing Variant Using Network Knowledge in Esophageal Squamous Cell Carcinoma
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Exploration of Potential Roles of a New LOXL2 Splicing Variant Using Network Knowledge in Esophageal Squamous Cell Carcinoma

机译:新型LOXL2拼接变体对食管鳞状细胞癌网络知识的潜在作用探讨

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摘要

LOXL2 (lysyl oxidase-like 2), an enzyme that catalyzes oxidative deamination of lysine residue, is upregulated in esophageal squamous cell carcinoma (ESCC). A LOXL2 splice variant LOXL2-e13 and its wild type were overexpressed in ESCC cells followed by microarray analyses. In this study, we explored the potential role and molecular mechanism of LOXL2-e13 based on known protein-protein interactions (PPIs), following microarray analysis of KYSE150 ESCC cells overexpressing a LOXL2 splice variant, denoted by LOXL2-e13, or its wild-type counterpart. The differentially expressed genes (DEGs) of LOXL2-WT and LOXL2-e13 were applied to generate individual PPI subnetworks in which hundreds of DEGs interacted with thousands of other proteins. These two DEG groups were annotated by Functional Annotation Chart analysis in the DAVID bioinformatics database and compared. These results found many specific annotations indicating the potential specific role or mechanism for LOXL2-e13. The DEGs of LOXL2-e13, comparing to its wild type, were prioritized by the Random Walk with Restart algorithm. Several tumor-related genes such as ERO1L, ITGA3, and MAPK8 were found closest to LOXL2-e13. These results provide helpful information for subsequent experimental identification of the specific biological roles and molecular mechanisms of LOXL2-e13. Our study also provides a work flow to identify potential roles of splice variants with large scale data.
机译:LOX12(赖氨酸氧化酶样2),催化溶滤液残留氧化胺化的酶,在食管鳞状细胞癌(ESCC)中是上调的。在ESCC细胞中过度表达LOX12剪接变体LOX12-E13及其野生型,然后进行微阵列分析。在这项研究中,在过表达LOXL2剪接变体的KYSE150 ESCC细胞的微阵列分析之后,探讨了LOX12-E13的潜在作用和分子机制,其基于LOX12剪接变体的KYSE150 ESCC细胞,由LOX12-E13表示,或野外 - 类型对应物。施加差异表达的LOX12-WT和LOX12-E13的基因(DEGS)以产生单独的PPI子网,其中数百只患者与数千个其他蛋白质相互作用。通过David Bioinformatics数据库中的功能注释图分析,这两种DEG组被注释并进行了比较。这些结果发现了许多特定的注释,表明LOXL2-E13的潜在特定作用或机制。与其野生类型相比,LOXL2-E13的次数由随机散步与重启算法进行优先排序。几种肿瘤相关基因如ERO1L,ITGA3和MAPK8最接近LOX12-E13。这些结果提供了有用的信息,以便随后进行LOX12-E13的特定生物作用和分子机制的实验鉴定。我们的研究还提供了一种工作流程,以确定具有大规模数据的剪切变体的潜在角色。

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