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一种用于发育过程中蛋白质组动力学功能聚类的计算算法。

A computational algorithm for functional clustering of proteome dynamics during development.

作者信息

Wang Yaqun, Wang Ningtao, Hao Han, Guo Yunqian, Zhen Yan, Shi Jisen, Wu Rongling

机构信息

Center for Statistical Genetics, Pennsylvania State University, Hershey, PA 17033, USA.

Center for Computational Biology, Beijing Forestry University, Beijing 100083, China.

出版信息

Curr Genomics. 2014 Jun;15(3):237-43. doi: 10.2174/1389202915666140407212147.

Abstract

Phenotypic traits, such as seed development, are a consequence of complex biochemical interactions among genes, proteins and metabolites, but the underlying mechanisms that operate in a coordinated and sequential manner remain elusive. Here, we address this issue by developing a computational algorithm to monitor proteome changes during the course of trait development. The algorithm is built within the mixture-model framework in which each mixture component is modeled by a specific group of proteins that display a similar temporal pattern of expression in trait development. A nonparametric approach based on Legendre orthogonal polynomials was used to fit dynamic changes of protein expression, increasing the power and flexibility of protein clustering. By analyzing a dataset of proteomic dynamics during early embryogenesis of the Chinese fir, the algorithm has successfully identified several distinct types of proteins that coordinate with each other to determine seed development in this forest tree commercially and environmentally important to China. The algorithm will find its immediate applications for the characterization of mechanistic underpinnings for any other biological processes in which protein abundance plays a key role.

摘要

表型特征,如种子发育,是基因、蛋白质和代谢物之间复杂生化相互作用的结果,但以协调和有序方式运作的潜在机制仍然难以捉摸。在这里,我们通过开发一种计算算法来监测性状发育过程中的蛋白质组变化来解决这个问题。该算法构建在混合模型框架内,其中每个混合成分由一组特定的蛋白质建模,这些蛋白质在性状发育中表现出相似的时间表达模式。基于勒让德正交多项式的非参数方法用于拟合蛋白质表达的动态变化,提高了蛋白质聚类的能力和灵活性。通过分析杉木早期胚胎发生过程中的蛋白质组动力学数据集,该算法成功识别了几种不同类型的蛋白质,它们相互协调以确定这种对中国商业和环境都很重要的林木的种子发育。该算法将立即应用于表征蛋白质丰度起关键作用的任何其他生物过程的机制基础。

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