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MYCbase: a database of functional sites and biochemical properties of Myc in both normal and cancer cells

机译:mycbase:在正常和癌细胞中,Myc的功能位点和生物化学特性的数据库

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摘要

Abstract Background Myc is an essential gene having multiple functions such as in cell growth, differentiation, apoptosis, genomic stability, angiogenesis, and disease biology. A large number of researchers dedicated to Myc biology are generating a substantial amount of data in normal and cancer cells/tissues including Burkitt’s lymphoma and ovarian cancer. Results MYCbase ( http://bicresources.jcbose.ac.in/ssaha4/mycbase ) is a collection of experimentally supported functional sites in Myc that can influence the biological cellular processes. The functional sites were compiled according to their role which includes mutation, methylation pattern, post-translational modifications, protein-protein interactions (PPIs), and DNA interactions. In addition, biochemical properties of Myc are also compiled, which includes metabolism/pathway, protein abundance, and modulators of protein-protein interactions. The OMICS data related to Myc- like gene expression, proteomics expression using mass-spectrometry and miRNAs targeting Myc were also compiled in MYCbase. The mutation and pathway data from the MYCbase were analyzed to look at the patterns and distributions across different diseases. There were few proteins/genes found common in Myc-protein interactions and Myc-DNA binding, and these can play a significant role in transcriptional feedback loops. Conclusion In this report, we present a comprehensive integration of relevant information regarding Myc in the form of MYCbase. The data compiled in MYCbase provides a reliable data resource for functional sites at the residue level and biochemical properties of Myc in various cancers.
机译:摘要背景Myc是具有多种功能的必要基因,例如细胞生长,分化,细胞凋亡,基因组稳定性,血管生成和疾病生物学。致力于MYC生物学的大量研究人员正在产生大量的正常和癌细胞/组织中的数据,包括Burkitt的淋巴瘤和卵巢癌。结果MyCBase(http://bicresources.jcbose.ac.in/ssaha4/mycbase)是Myc中的实验支持的功能网站的集合,可以影响生物细胞过程。根据其作用编制功能位点,包括突变,甲基化模式,翻译后修饰,蛋白质 - 蛋白质相互作用(PPI)和DNA相互作用。此外,也编制了Myc的生化特性,包括代谢/途径,蛋白质丰度和蛋白质 - 蛋白质相互作用的调节剂。与MyC的基因表达有关的OMICS数据,使用质谱和靶向MYC的MIRNA的蛋白质组学表达也在MycBase中编制。分析来自MYCBASE的突变和途径数据以查看不同疾病的模式和分布。在Myc-蛋白相互作用和MyC-DNA结合中发现很少有蛋白质/基因常见,并且这些蛋白质-DNA结合在转录反馈环中起着重要作用。结论在本报告中,我们以MYCBASE形式全面整合有关MYC的相关信息。在MyCBase中编译的数据为各种癌症中的残留水平和MICC的生物化学特性提供了可靠的数据资源。

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