Publications

MACROPHAGE SYSTEMS BIOLOGY

Information theoretic approach to complex biological network reconstruction: application to cytokine release in RAW 264.7 macrophages.
BMC Systems Biology. 2014 Jun 25; 8: 77 PubMed

Farhangmehr F, Maurya MR, Tartakovsky DM, Subramaniam S.

Time-varying causal inference from phosphoproteomic measurements in macrophage cells.
IEEE Transaction on Biomedical Circuits Systems. 2014 Feb; 8 (1):74-86 PubMed

Masnadi-Shirazi M, Maurya MR, Subramaniam S.

Modeling of eicosanoid fluxes reveals functional coupling between cyclooxygenases and terminal synthases.
Biophysical Journal. 2014 Feb 18; 106 (4): 966-75 PubMed

Kihara Y, Gupta S, Maurya MR, Armando A, Shah I, Quehenberger O, Glass CK, Dennis EA, Subramaniam S.

Omics approaches to microphage biology. Macrophages: Biology and Role in the Pathology of Diseases.

Gupta S, Dinasarapu AR, Gersten M, Maurya MR, Subramaniam S. (2014)

25-Hydroxycholesterol activates the integrated stress response to reprogram transcription and translation in macrophages.
Journal of Biological Chemistry. 2013 Dec 13; 288 (50): 35812–35823
PubMed

Shibata N, Carlin AF, Spann NJ, Saijo K, Morello CS, McDonald JG, Romanoski CE, Maurya MR, Kaikkonen MU, Lam MT, Crotti A, Reichart D, Fox JN, Quehenberger O, Raetz CR, Sullards MC, Murphy RC, Merrill AH Jr, Brown HA, Dennis EA, Fahy E, Subramaniam S, Cavener DR, Spector DH, Russell DW, Glass CK.

A combined omics study on activated macrophages–enhanced role of STATs in apoptosis, immunity and lipid metabolism.
Bioinformatics. 2013 Nov 1; 29 (21): 2735-2743 PubMed

Analysis of inflammatory and lipid metabolic networks across RAW264.7 and thioglycolate-elicited macrophages.
Journal of Lipid Research. 2013 Sep; 54 (9): 2525-2542 PubMed

Maurya MR, Gupta S, Li X, Fahy E, Dinasarapu AR, Sud M, Brown HA, Glass CK, Murphy RC, Russell DW, Dennis EA, Subramaniam S.

Regulated accumulation of desmosterol integrates macrophage lipid metabolism and inflammatory responses.
Cell. 2012 Sep 28; 151 (1): 138-52 PubMed

Spann NJ, Garmire LX, McDonald JG, Myers DS, Milne SB, Shibata N, Reichart D, Fox JN, Shaked I, Heudobler D, Raetz CR, Wang EW, Kelly SL, Sullards MC, Murphy RC, Merrill AH Jr, Brown HA, Dennis EA, Li AC, Ley K, Tsimikas S, Fahy E, Subramaniam S, Quehenberger O, Russell DW, Glass CK.

Mechanisms Establishing TLR4-Responsive Activation States of Inflammatory Response Genes.
PubMed

Escoubet-Lozach L, Benner C, Kaikkonen MU, Lozach J, Heinz S, Spann NJ, Crotti A, Stender J, Ghisletti S, Reichart D, Cheng CS, Luna R, Ludka C, Sasik R, Garcia-Bassets I, Hoffmann A, Subramaniam S, Hardiman G, Rosenfeld MG, Glass CK. (2011)

A global clustering algorithm to identify long intergenic non-coding RNA–with applications in mouse macrophages.
PLoS One. 2011; 6 (9): e24051 PubMed

Garmire LX, Garmire DG, Huang W, Yao J, Glass CK, Subramaniam S.

Integration of lipidomics and transcriptomics data towards a systems biology model of sphingolipid metabolism.
BMC Systems Biology. 2011 Feb 8; 5:26 PubMed

Gupta S, Maurya MR, Merrill AH Jr, Glass CK, Subramaniam S.

A mouse macrophage lipidome.
The Journal of Biological Chemistry. 2010 Dec 17; 285 (51): 39976-39985 PubMed

Dennis EA, Deems RA, Harkewicz R, Quehenberger O, Brown HA, Milne SB, Myers DS, Glass CK, Hardiman G, Reichart D, Merrill AH Jr, Sullards MC, Wang E, Murphy RC, Raetz CR, Garrett TA, Guan Z, Ryan AC, Russell DW, McDonald JG, Thompson BM, Shaw WA, Sud M, Zhao Y, Gupta S, Maurya MR, Fahy E, Subramaniam S.

Regulatory network of microRNAs in RAW 264.7 macrophage cells.
PubMed

Garmire LX, Shen Z, Briggs S, Yeo G, Subramaniam S, Glass C. (2010)

A Clustering Approach to Identify Intergenic Non-coding RNA in Mouse Macrophages.
PubMed

Garmire LX, Subramaniam S, Garmire DG, Glass CK. (2010)

Lipidomics reveals a remarkable diversity of lipids in human plasma.
PubMed

Quehenberger O, Armando AM, Brown AH, Milne SB, Myers DS, Merrill AH, Bandyopadhyay S, Jones KN, Kelly S, Shaner RL, Sullards CM, Wang E, Murphy RC, Barkley RM, Leiker TJ, Raetz CR, Guan Z, Laird GM, Six DA, Russell DW, McDonald JG, Subramaniam S, Fahy E, Dennis EA. (2010)

Subcellular organelle lipidomics in TLR-4-activated macrophages.
PubMed

Andreyev AY, Fahy E, Guan Z, Kelly S, Li X, McDonald JG, Milne S, Myers D, Park H, Ryan A, Thompson BM, Wang E, Zhao Y, Brown HA, Merrill AH, Raetz CR, Russell DW, Subramaniam S, Dennis EA. (2010)

Identification of crosstalk between phosphoprotein signaling pathways in RAW 264.7 macrophage cells.
PubMed

Gupta S, Maurya MR, Subramaniam S. (2010)

Application of proteomic marker ensembles to subcellular organelle identification.
PubMed

Andreyev AY, Shen Z, Guan Z, Ryan A, Fahy E, Subramaniam S, Raetz CR, Briggs S, Dennis EA. (2010)

An integrated model of eicosanoid metabolism and signaling based on lipidomics flux analysis.
PubMed

Gupta S, Maurya MR, Stephens DL, Dennis EA, Subramaniam S. (2009)

Systems biology of macrophages.
PubMed

Maurya MR, Benner C, Pradervand S, Glass C, Subramaniam S. (2007)

Identification of signaling components required for the prediction of cytokine release in RAW 264.7 macrophages.
PubMed

Pradervand S, Maurya MR, Subramaniam S. (2006)

Kdo2-Lipid A of Escherichia coli, a defined endotoxin that activates macrophages via TLR-4.
PubMed

Raetz CR, Garrett TA, Reynolds CM, Shaw WA, Moore JD, Smith DC Jr, Ribeiro AA, Murphy RC, Ulevitch RJ, Fearns C, Reichart D, Glass CK, Benner C, Subramaniam S, Harkewicz R, Bowers-Gentry RC, Buczynski MW, Cooper JA, Deems RA, Dennis EA. (2006)

Molecular determinants of crosstalk between nuclear receptors and toll-like receptors.
PubMed

Ogawa S, Lozach J, Benner C, Pascual G, Tangirala RK, Westin S, Hoffmann A, Subramaniam S, David M, Rosenfeld MG, Glass CK. (2005)