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GMMID:基因修饰小鼠信息数据库。

GMMID: genetically modified mice information database.

机构信息

Shenzhen Key Laboratory for Systems Medicine in Inflammatory Diseases, School of Medicine, Shenzhen Campus of Sun Yat-Sen University, 66#, Gongchang Road, Shenzhen, Guangdong 518107, China.

School of Intelligent Systems Engineering, Sun Yat-Sen University, 66#, Gongchang Road, Shenzhen, Guangdong 518107, China.

出版信息

Database (Oxford). 2024 Aug 19;2024. doi: 10.1093/database/baae078.

Abstract

Genetically engineered mouse models (GEMMs) are vital for elucidating gene function and disease mechanisms. An overwhelming number of GEMM lines have been generated, but endeavors to collect and organize the information of these GEMMs are seriously lagging behind. Only a few databases are developed for the information of current GEMMs, and these databases lack biological descriptions of allele compositions, which poses a challenge for nonexperts in mouse genetics to interpret the genetic information of these mice. Moreover, these databases usually do not provide information on human diseases related to the GEMM, which hinders the dissemination of the insights the GEMM provides as a human disease model. To address these issues, we developed an algorithm to annotate all the allele compositions that have been reported with Python programming and have developed the genetically modified mice information database (GMMID; http://www.gmmid.cn), a user-friendly database that integrates information on GEMMs and related diseases from various databases, including National Center for Biotechnology Information, Mouse Genome Informatics, Online Mendelian Inheritance in Man, International Mouse Phenotyping Consortium, and Jax lab. GMMID provides comprehensive genetic information on >70 055 alleles, 65 520 allele compositions, and ∼4000 diseases, along with biologically meaningful descriptions of alleles and allele combinations. Furthermore, it provides spatiotemporal visualization of anatomical tissues mentioned in these descriptions, shown alongside the allele compositions. Compared to existing mouse databases, GMMID considers the needs of researchers across different disciplines and presents obscure genetic information in an intuitive and easy-to-understand format. It facilitates users in obtaining complete genetic information more efficiently, making it an essential resource for cross-disciplinary researchers. Database URL: http://www.gmmid.cn.

摘要

基因工程小鼠模型(GEMMs)对于阐明基因功能和疾病机制至关重要。已经产生了大量的 GEMM 品系,但收集和组织这些 GEMM 信息的努力严重滞后。只有少数几个数据库用于当前 GEMM 的信息,并且这些数据库缺乏等位基因组成的生物学描述,这使得非小鼠遗传学专家难以解释这些小鼠的遗传信息。此外,这些数据库通常不提供与 GEMM 相关的人类疾病信息,这阻碍了 GEMM 作为人类疾病模型提供的见解的传播。为了解决这些问题,我们开发了一种算法,使用 Python 编程语言注释所有已报告的等位基因组成,并开发了基因修饰小鼠信息数据库(GMMID;http://www.gmmid.cn),这是一个用户友好的数据库,整合了来自不同数据库的 GEMM 和相关疾病信息,包括国家生物技术信息中心、小鼠基因组信息学、在线孟德尔遗传数据库、国际小鼠表型分析联盟和 Jax 实验室。GMMID 提供了超过 70055 个等位基因、65520 个等位基因组成和约 4000 种疾病的综合遗传信息,以及等位基因和等位基因组合的生物学意义描述。此外,它还提供了这些描述中提到的解剖组织的时空可视化,与等位基因组成一起显示。与现有的小鼠数据库相比,GMMID 考虑了不同学科研究人员的需求,并以直观、易于理解的格式呈现了模糊的遗传信息。它使用户能够更高效地获得完整的遗传信息,是跨学科研究人员的重要资源。数据库网址:http://www.gmmid.cn。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0848/11334936/1fbbdacdfe64/baae078f1.jpg

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