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Loss and gain of N-linked glycosylation sequons due to single-nucleotide variation in cancer

机译:癌症中单核苷酸变异导致N-联糖基化序列丢失和获得

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摘要

Despite availability of sequence site-specific information resulting from years of sequencing and sequence feature curation, there have been few efforts to integrate and annotate this information. In this study, we update the number of human N-linked glycosylation sequons (NLGs), and we investigate cancer-relatedness of glycosylation-impacting somatic nonsynonymous single-nucleotide variation (nsSNV) by mapping human NLGs to cancer variation data and reporting the expected loss or gain of glycosylation sequon. We find 75.8% of all human proteins have at least one NLG for a total of 59,341 unique NLGs (includes predicted and experimentally validated). Only 27.4% of all NLGs are experimentally validated sites on 4,412 glycoproteins. With respect to cancer, 8,895 somatic-only nsSNVs abolish NLGs in 5,204 proteins and 12,939 somatic-only nsSNVs create NLGs in 7,356 proteins in cancer samples. nsSNVs causing loss of 24 NLGs on 23 glycoproteins and nsSNVs creating 41 NLGs on 40 glycoproteins are identified in three or more cancers. Of all identified cancer somatic variants causing potential loss or gain of glycosylation, only 36 have previously known disease associations. Although this work is computational, it builds on existing genomics and glycobiology research to promote identification and rank potential cancer nsSNV biomarkers for experimental validation.
机译:尽管由于多年的测序和序列特征管理而获得了特定于序列位点的信息,但很少有人努力整合和注释该信息。在这项研究中,我们更新了人类N-连接糖基化序列(NLG)的数量,并通过将人类NLG映射到癌症变异数据并报告预期结果,研究了影响糖基化的体非同义单核苷酸变异(nsSNV)的癌症相关性丢失或获得糖基化后代。我们发现,在所有人类蛋白质中,有75.8%的蛋白质至少具有一种NLG,总共59,341种独特的NLG(包括预测的和实验验证的)。所有NLG中只有27.4%是在4,412个糖蛋白上经过实验验证的位点。关于癌症,仅8,895个仅体细胞的nsSNV消除了5,204种蛋白质中的NLG,而12,939个仅体细胞的nsSNVs消除了癌症样品中7,356种蛋白质中的NLG。在三种或更多种癌症中,鉴定出导致23种糖蛋白上的24个NLG缺失的nsSNV和在40种糖蛋白上产生41个NLG的nsSNV。在所有鉴定出的可能导致糖基化丧失或获得的体细胞变异中,只有36种具有先前已知的疾病关联。尽管这项工作是计算性的,但它建立在现有的基因组学和糖生物学研究的基础上,以促进鉴定和对潜在的癌症nsSNV生物标记物进行分级以进行实验验证。

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