Xiao Guanghua, Wang Xinlei, Khodursky Arkady B
Division of Biostatistics, Department of Clinical Sciences, The University of Texas Southwestern Medical Center at Dallas, Dallas, TX 75390.
J Am Stat Assoc. 2011 Mar;106(493):61-72. doi: 10.1198/jasa.2010.ap0950.
Recent genomic studies have shown that significant chromosomal spatial correlation exists in gene expression of many organisms. Interestingly, coexpression has been observed among genes separated by a fixed interval in specific regions of a chromosome chain, which is likely caused by three-dimensional (3D) chromosome folding structures. Modeling such spatial correlation explicitly may lead to essential understandings of 3D chromosome structures and their roles in transcriptional regulation. In this paper, we explore chromosomal spatial correlation induced by 3D chromosome structures, and propose a hierarchical Bayesian method based on helical structures to formally model and incorporate the correlation into the analysis of gene expression microarray data. It is the first study to quantify and infer 3D chromosome structures in vivo using expression microarrays. Simulation studies show computing feasibility of the proposed method and that, under the assumption of helical chromosome structures, it can lead to precise estimation of structural parameters and gene expression levels. Real data applications demonstrate an intriguing biological phenomenon that functionally associated genes, which are far apart along the chromosome chain, are brought into physical proximity by chromosomal folding in 3D space to facilitate their coexpression. It leads to important biological insight into relationship between chromosome structure and function.
最近的基因组研究表明,许多生物体的基因表达中存在显著的染色体空间相关性。有趣的是,在染色体链特定区域中被固定间隔分开的基因之间观察到了共表达现象,这可能是由三维(3D)染色体折叠结构引起的。明确地对这种空间相关性进行建模可能会带来对3D染色体结构及其在转录调控中作用的重要理解。在本文中,我们探索了由3D染色体结构诱导的染色体空间相关性,并提出了一种基于螺旋结构的分层贝叶斯方法,以正式建模并将这种相关性纳入基因表达微阵列数据的分析中。这是首次使用表达微阵列在体内量化和推断3D染色体结构的研究。模拟研究表明了所提出方法的计算可行性,并且在螺旋染色体结构的假设下,它可以导致对结构参数和基因表达水平的精确估计。实际数据应用展示了一个有趣的生物学现象,即沿着染色体链相距很远的功能相关基因,通过3D空间中的染色体折叠在物理上彼此靠近,以促进它们的共表达。这为染色体结构与功能之间的关系带来了重要的生物学见解。