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Minimotif Miner 4:百万个肽最小基序,且仍在不断增加。

Minimotif Miner 4: a million peptide minimotifs and counting.

机构信息

Nevada Institute of Personalized Medicine and School of Life Sciences, University of Nevada, Las Vegas, 89154 4004 NV, USA.

Department of Computer Science and Engineering, University of Connecticut, Storrs, CT 06269 2155, USA.

出版信息

Nucleic Acids Res. 2018 Jan 4;46(D1):D465-D470. doi: 10.1093/nar/gkx1085.

Abstract

Minimotif Miner (MnM) is a database and web system for analyzing short functional peptide motifs, termed minimotifs. We present an update to MnM growing the database from ∼300 000 to >1 000 000 minimotif consensus sequences and instances. This growth comes largely from updating data from existing databases and annotation of articles with high-throughput approaches analyzing different types of post-translational modifications. Another update is mapping human proteins and their minimotifs to know human variants from the dbSNP, build 150. Now MnM 4 can be used to generate mechanistic hypotheses about how human genetic variation affect minimotifs and outcomes. One example of the utility of the combined minimotif/SNP tool identifies a loss of function missense SNP in a ubiquitylation minimotif encoded in the excision repair cross-complementing 2 (ERCC2) nucleotide excision repair gene. This SNP reaches genome wide significance for many types of cancer and the variant identified with MnM 4 reveals a more detailed mechanistic hypothesis concerning the role of ERCC2 in cancer. Other updates to the web system include a new architecture with migration of the web system and database to Docker containers for better performance and management. Weblinks:minimotifminer.org and mnm.engr.uconn.edu.

摘要

Minimotif Miner (MnM) 是一个用于分析短功能肽基序(称为 minimotifs)的数据库和网络系统。我们对 MnM 进行了更新,将数据库从约 300000 个 minimotif 共识序列和实例扩展到超过 1000000 个。这种增长主要来自于更新现有数据库的数据,以及使用高通量方法分析不同类型的翻译后修饰的文章进行注释。另一个更新是将人类蛋白质及其 minimotifs 映射到 dbSNP,版本 150,以了解人类变异体。现在,MnM 4 可以用于生成关于人类遗传变异如何影响 minimotifs 和结果的机制假设。一个组合 minimotif/SNP 工具的实用示例确定了在切除修复交叉互补 2 (ERCC2) 核苷酸切除修复基因中编码的泛素化 minimotif 中的一个功能丧失错义 SNP。该 SNP 在许多类型的癌症中达到全基因组显著水平,MnM 4 识别出的变体揭示了关于 ERCC2 在癌症中的作用的更详细的机制假设。网络系统的其他更新包括新的架构,将网络系统和数据库迁移到 Docker 容器中,以提高性能和管理。网络链接:minimotifminer.org 和 mnm.engr.uconn.edu。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5f3/5753208/650b81b3105e/gkx1085fig1.jpg

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