English

Gene network reconstruction using global-local shrinkage priors

Methodology 2015-10-14 v1

Abstract

Reconstructing a gene network from high-throughput molecular data is often a challenging task, as the number of parameters to estimate easily is much larger than the sample size. A conventional remedy is to regularize or penalize the model likelihood. In network models, this is often done locally in the neighbourhood of each node or gene. However, estimation of the many regularization parameters is often difficult and can result in large statistical uncertainties. In this paper we propose to combine local regularization with global shrinkage of the regularization parameters to borrow strength between genes and improve inference. We employ a simple Bayesian model with non-sparse, conjugate priors to facilitate the use of fast variational approximations to posteriors. We discuss empirical Bayes estimation of hyper-parameters of the priors, and propose a novel approach to rank-based posterior thresholding. Using extensive model- and data-based simulations, we demonstrate that the proposed inference strategy outperforms popular (sparse) methods, yields more stable edges, and is more reproducible.

Keywords

Cite

@article{arxiv.1510.03771,
  title  = {Gene network reconstruction using global-local shrinkage priors},
  author = {Gwenaël G. R. Leday and Mathisca C. M. de Gunst and Gino B. Kpogbezan and Aad W. Van der Vaart and Wessel N. Van Wieringen and Mark A. Van de Wiel},
  journal= {arXiv preprint arXiv:1510.03771},
  year   = {2015}
}

Comments

27 pages, 5 figures

R2 v1 2026-06-22T11:19:19.607Z