Feltrin Erika, Campanaro Stefano, Diehl Alexander D, Ehler Elisabeth, Faulkner Georgine, Fordham Jennifer, Gardin Chiara, Harris Midori, Hill David, Knoell Ralph, Laveder Paolo, Mittempergher Lorenza, Nori Alessandra, Reggiani Carlo, Sorrentino Vincenzo, Volpe Pompeo, Zara Ivano, Valle Giorgio, Deegan Jennifer
CRIBI- Interdepartmental Biotechnology Center, University of Padua, Padua, Italy.
BMC Med Genomics. 2009 Jan 29;2:6. doi: 10.1186/1755-8794-2-6.
The Gene Ontology Project provides structured controlled vocabularies for molecular biology that can be used for the functional annotation of genes and gene products. In a collaboration between the Gene Ontology (GO) Consortium and the muscle biology community, we have made large-scale additions to the GO biological process and cellular component ontologies. The main focus of this ontology development work concerns skeletal muscle, with specific consideration given to the processes of muscle contraction, plasticity, development, and regeneration, and to the sarcomere and membrane-delimited compartments. Our aims were to update the existing structure to reflect current knowledge, and to resolve, in an accommodating manner, the ambiguity in the language used by the community.
The updated muscle terminologies have been incorporated into the GO. There are now 159 new terms covering critical research areas, and 57 existing terms have been improved and reorganized to follow their usage in muscle literature.
The revised GO structure should improve the interpretation of data from high-throughput (e.g. microarray and proteomic) experiments in the area of muscle science and muscle disease. We actively encourage community feedback on, and gene product annotation with these new terms. Please visit the Muscle Community Annotation Wiki http://wiki.geneontology.org/index.php/Muscle_Biology.
基因本体论项目为分子生物学提供了结构化的受控词汇表,可用于基因和基因产物的功能注释。在基因本体论(GO)联盟与肌肉生物学界的合作中,我们对GO生物过程和细胞成分本体进行了大规模补充。本体开发工作的主要重点是骨骼肌,特别考虑了肌肉收缩、可塑性、发育和再生过程,以及肌节和膜界定的区室。我们的目标是更新现有结构以反映当前知识,并以包容的方式解决该领域使用的语言中的模糊性。
更新后的肌肉术语已纳入GO。现在有159个新术语涵盖关键研究领域,57个现有术语已得到改进并重新组织,以符合其在肌肉文献中的用法。
修订后的GO结构应能改善对肌肉科学和肌肉疾病领域高通量(如微阵列和蛋白质组学)实验数据的解释。我们积极鼓励大家对这些新术语提供反馈并进行基因产物注释。请访问肌肉社区注释维基http://wiki.geneontology.org/index.php/Muscle_Biology。