Instituto Gulbenkian de Ciência, 2780-156 Oeiras, Portugal.
Bioinformatics. 2017 Feb 15;33(4):568-570. doi: 10.1093/bioinformatics/btw654.
The Rab family of small GTPases regulates and provides specificity to the endomembrane trafficking system; each Rab subfamily is associated with specific pathways. Thus, characterization of Rab repertoires provides functional information about organisms and evolution of the eukaryotic cell. Yet, the complex structure of the Rab family limits the application of existing methods for protein classification. Here, we present a major redesign of the Rabifier, a bioinformatic pipeline for detection and classification of Rab GTPases. It is more accurate, significantly faster than the original version and is now open source, both the code and the data, allowing for community participation.
Rabifier and RabDB are freely available through the web at http://rabdb.org . The Rabifier package can be downloaded from the Python Package Index at https://pypi.python.org/pypi/rabifier , the source code is available at Github https://github.com/evocell/rabifier .
jsurkont@igc.gulbenkian.pt or jleal@igc.gulbenkian.pt.
Supplementary data are available at Bioinformatics online.
小 GTP 酶 Rab 家族调控并为内膜运输系统提供特异性;每个 Rab 亚家族都与特定的途径相关。因此,Rab 谱的特征提供了关于生物和真核细胞进化的功能信息。然而,Rab 家族的复杂结构限制了现有蛋白质分类方法的应用。在这里,我们对 Rabifier 进行了重大重新设计,这是一种用于检测和分类 Rab GTP 酶的生物信息学管道。它比原始版本更准确,速度也显著提高,现在是开源的,包括代码和数据,允许社区参与。
Rabifier 和 RabDB 可通过 http://rabdb.org 网站免费获取。Rabifier 包可从 Python 包索引 https://pypi.python.org/pypi/rabifier 下载,源代码可在 Github https://github.com/evocell/rabifier 上获取。
jsurkont@igc.gulbenkian.pt 或 jleal@igc.gulbenkian.pt。
补充数据可在生物信息学在线获得。