Genomic transcription regulatory element location analysis via poisson weighted lasso
Jiang, Xin; Reynaud-Bouret, Patricia; Rivoirard, Vincent; Sansonnet, Laure; Willett, Rebecca (2016), Genomic transcription regulatory element location analysis via poisson weighted lasso, Statistical Signal Processing Workshop (SSP), 2016 IEEE, IEEE. 10.1109/SSP.2016.7551831
Type
Communication / ConférenceDate
2016Conference title
2016 IEEE Statistical Signal Processing Workshop (SSP)Conference date
2016Conference city
Palma de MallorcaConference country
SpainBook title
Statistical Signal Processing Workshop (SSP), 2016 IEEEPublisher
IEEE
Publication identifier
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Show full item recordAuthor(s)
Jiang, XinDepartment of Electrical and Computer Engineering [Durham] [ECE]
Reynaud-Bouret, Patricia
Rivoirard, Vincent
CEntre de REcherches en MAthématiques de la DEcision [CEREMADE]
Sansonnet, Laure
Willett, Rebecca
Abstract (EN)
The distances between DNA Transcription Regulatory Elements (TRE) provide important clues to their dependencies and function within the gene regulation process. However, the locations of those TREs as well as their cross distances between occurrences are stochastic, in part due to the inherent limitations of Next Generation Sequencing methods used to localize them, in part due to biology itself. This paper describes a novel approach to analyzing these locations and their cross distances even at long range via a Poisson random convolution. The resulting deconvolution problem is ill-posed, and sparsity regularization is used to offset this challenge. Unlike previous work on sparse Poisson inverse problems, this paper adopts a weighted LASSO estimator with data-dependent weights calculated using concentration inequalities that account for the Poisson noise. This method exhibits better squared error performance than the classical (unweighted) LASSO both in theoretical performance bounds and in simulation studies, and can easily be computed using off-the-shelf LASSO solvers.Subjects / Keywords
DNA Transcription Regulatory Elements; Poisson Noise; Weighted LASSO; Genomics; Bioinformatics; Inverse problems; Convolution; ConferencesRelated items
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