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首页> 外文期刊>OMICS: A journal of integrative biology >Huge Splicing Frequency in Human Y Chromosomal UTY Gene
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Huge Splicing Frequency in Human Y Chromosomal UTY Gene

机译:人类Y染色体UTY巨大剪接频率基因

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摘要

Over 90% of human genes produce more than one mRNA by alternative splicing (AS). Human UTY (ubiquitously transcribed tetratricopeptide repeat protein on the chromosome Y) has six mRNA-transcripts. UTY is subject to interdisciplinary approaches such as Y chromosomal genetics or development of leukemia immunotherapy based on UTY-specific peptides. Investigating UTY expression in a normal and leukemic setting we discovered an exceptional splicing phenomenon fostering huge transcript diversity. Transcript sequencing identified 90 novel AS-events being almost randomly combined in 284 new transcripts. We uncovered a novel system of transcript architecture and genomic organization in UTY. On a basis of a new UTY-splicing multigraph including a mathematical model we calculated the theoretical yield to exceed 1.3 billion distinct transcripts. To our knowledge, this is the greatest estimated transcript diversity by AS. On protein level we demonstrated interaction of AS-derived proteins with new interactors by yeast-two-hybrid assay. For translational research we predicted new UTY-peptide candidates for leukemia therapy development. Our study provides new insights into the complexity of human alternative splicing and its potential contribution to the transcript diversity of the transcriptome.
机译:超过90%的人类基因产生不止一个信使rna可变剪接(因为)。(无所不在地转录tetratricopeptide重复蛋白在染色体Y) 6mRNA-transcripts。Y等跨学科的方法染色体遗传或白血病的发展基于UTY-specific肽的免疫疗法。在一个正常的和调查UTY表达式我们发现一个异常白血病设置拼接现象培养巨大的成绩单多样性。小说作为事件几乎随机组合284个新记录。成绩单的架构和基因组在UTY组织。UTY-splicing油印包括数学我们计算理论产量模型超过13亿个不同的成绩单。所知,这是最大的估计成绩单的多样性。演示交互所导出的蛋白质与新扶少团团员yeast-two-hybrid化验。为转化研究我们预测新UTY-peptide候选人白血病治疗发展。人类可变剪接的复杂性其潜在的贡献记录转录组的多样性。

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