首页> 外文期刊>Journal of proteome research >The Functionally Unannotated Proteome of Human Male Tissues: A Shared Resource to Uncover New Protein Functions Associated with Reproductive Biology
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The Functionally Unannotated Proteome of Human Male Tissues: A Shared Resource to Uncover New Protein Functions Associated with Reproductive Biology

机译:人类男性组织的功能上未经发布的蛋白质组:共享资源,以发现与生殖生物学相关的新蛋白质功能

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摘要

In the context of the Human Proteome Project, we built an inventory of 412 functionally unannotated human proteins for which experimental evidence at the protein level exists (uPE1) and which are highly expressed in tissues involved in human male reproduction. We implemented a strategy combining literature mining, bioinformatics tools to collate annotation and experimental information from specific molecular public resources, and efficient visualization tools to put these unknown proteins into their biological context (protein complexes, tissue and subcellular location, expression pattern). The gathered knowledge allowed pinpointing five uPE1 for which a function has recently been proposed and which should be updated in protein knowledge bases. Furthermore, this bioinformatics strategy allowed to build new functional hypotheses for five other uPE1s in link with phenotypic traits that are specific to male reproductive function such as ciliogenesis/flagellum formation in germ cells (CCDC112 and TEX9), chromatin remodeling (C3orf62) and spermatozoon maturation (CCDC183). We also discussed the enigmatic case of MAGEB proteins, a poorly documented cancer/testis antigen subtype. Tools used and computational outputs produced during this study are freely accessible via ProteoRE (http://www.proteore.org), a Galaxy-based instance, for reuse purposes. We propose these five uPE1s should be investigated in priority by expert laboratories and hope that this inventory and shared resources will stimulate the interest of the community of reproductive biology.
机译:在人类蛋白质组项目的背景下,我们建立了412种功能上未注释的人类蛋白质的清单,其中存在蛋白质水平的实验证据(uPE1),并且在参与人类男性生殖的组织中高度表达。我们实施了一项战略,将文献挖掘、生物信息学工具与高效可视化工具相结合,以整理特定分子公共资源中的注释和实验信息,并将这些未知蛋白质放入其生物环境(蛋白质复合物、组织和亚细胞定位、表达模式)。收集到的知识可以精确定位最近提出的五个uPE1功能,这些功能应该在蛋白质知识库中更新。此外,这种生物信息学策略允许为其他五种UPE1建立新的功能假设,这些假设与雄性生殖功能特有的表型特征有关,例如生殖细胞中的纤毛发生/鞭毛形成(CCDC112和TEX9)、染色质重塑(C3orf62)和精子成熟(CCDC183)。我们还讨论了神秘的MAGEB蛋白案例,这是一种记录不清的癌症/睾丸抗原亚型。本研究中使用的工具和产生的计算结果可通过ProteoRE免费获取(http://www.proteore.org),一个基于Galaxy的实例,用于重用。我们建议专家实验室应优先调查这五种UPE1,并希望该清单和共享资源将激发生殖生物学界的兴趣。

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