Genome Biology

official impact factor 6.89

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Identifying genetic networks underlying myometrial transition to labor

Nathan Salomonis, Nathalie Cotte, Alexander C Zambon, Katherine S Pollard, Karen Vranizan, Scott W Doniger, Gregory Dolganov and Bruce R Conklin*

Genome Biology 2005, 6:R12 doi:10.1186/gb-2005-6-2-r12

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The bovine lactation genome: insights into the evolution of mammalian milk

Danielle G Lemay, David J Lynn, William F Martin, Margaret C Neville, Theresa M Casey, Gonzalo Rincon, Evgenia V Kriventseva, Wesley C Barris, Angie S Hinrichs, Adrian J Molenaar, Katherine S Pollard, Nauman J Maqbool, Kuljeet Singh, Regan Murney, Evgeny M Zdobnov, Ross L Tellam, Juan F Medrano, J Bruce German, Monique Rijnkels Genome Biology 2009, 10:R43 (24 April 2009)

This article is part of a collection on Bovine: the companion...

Comparison of milk protein and mammary genes in the bovine genome with those from other mammals gives insights into the evolution of lactation.

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GenMAPP 2: new features and resources for pathway analysis

Nathan Salomonis, Kristina Hanspers, Alexander C Zambon, Karen Vranizan, Steven C Lawlor, Kam D Dahlquist, Scott W Doniger, Josh Stuart, Bruce R Conklin, Alexander R Pico BMC Bioinformatics 2007, 8:217 (24 June 2007)

Proceedings   Open Access

Functional genomics of the pregnant uterus: from expectations to reality, a compilation of studies in the myometrium

Michèle Breuiller-Fouche, Gilles Charpigny, Guy Germain BMC Pregnancy and Childbirth 2007, 7(Suppl 1):S4 (1 June 2007)

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Pathways and genes differentially expressed in the motor cortex of patients with sporadic amyotrophic lateral sclerosis

Carsten W Lederer, Antonietta Torrisi, Maria Pantelidou, Niovi Santama, Sebastiano Cavallaro BMC Genomics 2007, 8:26 (23 January 2007)

Identification of genes misregulated in the motor cortex of people with amyotrophic lateral sclerosis (ALS) has uncovered novel aspects of ALS pathology and points to using existing medication to rapidly develop new symptomatic therapies.

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Molecular processes during fat cell development revealed by gene expression profiling and functional annotation

Hubert Hackl, Thomas Burkard, Alexander Sturn, Renee Rubio, Alexander Schleiffer, Sun Tian, John Quackenbush, Frank Eisenhaber, Zlatko Trajanoski Genome Biology 2005, 6:R108 (19 December 2005)

In-depth bioinformatics analyses of expressed sequence tags found to be differentially expressed during differentiation of 3T3-L1 pre-adipocyte cells were combined with de novo functional annotation and mapping onto known pathways to generate a molecular atlas of fat-cell development.