Sriram Lab:Publications: Difference between revisions

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==Selected publications==
==Selected publications==
<biblio>
Sriram G, Rahib L, Parr LS, Liao JC, Dipple KM (2010) Moonlighting function of glycerol kinase causes systems-level changes in rat hepatoma cells. Metabolic Engineering 12:332-340. [http://dx.doi.org/10.1016/j.ymben.2010.04.001].
#sriram10 pmid=20399282
 
#sriram9 pmid=19121967
Zheng Y, Sriram G (2010) Mathematical modeling: bridging the gap between concept and realization in synthetic biology. Journal of Biomedicine and Biotechnology article ID 541609, 16 pages.
#sriram8 pmid=18029214
 
#sriram7 pmid=18194425
Rahib L, Sriram G, Harada MK, Liao JC, Dipple KM (2009) Transcriptomic and network component analysis of glycerol kinase in skeletal muscle using a mouse model of glycerol kinase deficiency. Molecular Genetics and Metabolism 96:106-112. [http://dx.doi.org/10.1016/j.ymgme.2008.11.163]
#sriram6 pmid=17888703
 
#sriram5 pmid=17532015
Iyer VV, Sriram G, Fulton DB, Zhou R, Westgate ME, Shanks JV (2008) Metabolic flux maps: An effective tool for studying the effect of temperature on protein and oil biosynthesis in developing soybean cotyledons. Plant, Cell, and Environment 31:506-517. [http://dx.doi.org/10.1111/j.1365-3040.2008.01781.x].
#sriram3 pmid=15877277
 
#sriram2 pmid=15466217
Sriram G, Rahib L, He J-S, Campos AE, Liao JC, Dipple KM (2008) Global metabolic changes due to glycerol kinase overexpression in rat liver cells. Molecular Genetics and Metabolism 93:145-159. [http://dx.doi.org/10.1016/j.ymgme.2007.09.008].
#sriram1 pmid=15113565
 
</biblio>
Sriram G, Iyer VV, Fulton DB, Shanks JV (2007) Identification of hexose hydrolysis products in metabolic flux analytes: A case study of levulinic acid in plant protein hydrolysate. Metabolic Engineering 9: 442-451. [http://dx.doi.org/10.1016/j.ymben.2007.07.003]. (Cover article)
 
Sriram G, Fulton DB, Shanks JV (2007) Flux quantification in central carbon metabolism of Catharanthus roseus hairy roots by 13C labeling and comprehensive bondomer balancing. Phytochemistry 68: 2243-2257. [http://dx.doi.org/10.1016/j.phytochem.2007.04.009].
 
§Sriram G, §González-Rivera O, Shanks JV (2006) Determination of biomass composition of Catharanthus roseus hairy roots for metabolic flux analysis. Biotechnology Progress 22: 1659-1663. [http://dx.doi.org/10.1021/bp060162k]. [§Contributed equally]
 
Sriram G, Martinez JA, McCabe ERB, Liao JC, Dipple KM (2005) Single-gene disorders: What role could moonlighting enzymes play? American Journal of Human Genetics 76: 911-924. [http://dx.doi.org/10.1086/430799].
 
Sriram G, Fulton DB, Iyer VV, Peterson JM, Zhou R, Westgate ME, Spalding MH, Shanks JV (2004) Quantification of compartmented metabolic fluxes in developing soybean embryos by employing biosynthetically directed fractional 13C labeling, two-dimensional [13C, 1H] nuclear magnetic resonance, and comprehensive isotopomer balancing. Plant Physiology 136: 3043-3057. [http://dx.doi.org/10.1104/pp.104.050625]. (Featured in Faculty of 1000 Biology [www.f1000biology.com/article/id/1021697].)
 
Sriram G, Shanks JV (2004) Improvements in metabolic flux analysis using carbon bond labeling experiments: bondomer balancing and Boolean function mapping. Metabolic Engineering 6: 116-132. [http://dx.doi.org/10.1016/j.ymben.2004.02.003].
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Revision as of 10:01, 20 November 2010

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Selected publications

Sriram G, Rahib L, Parr LS, Liao JC, Dipple KM (2010) Moonlighting function of glycerol kinase causes systems-level changes in rat hepatoma cells. Metabolic Engineering 12:332-340. [1].

Zheng Y, Sriram G (2010) Mathematical modeling: bridging the gap between concept and realization in synthetic biology. Journal of Biomedicine and Biotechnology article ID 541609, 16 pages.

Rahib L, Sriram G, Harada MK, Liao JC, Dipple KM (2009) Transcriptomic and network component analysis of glycerol kinase in skeletal muscle using a mouse model of glycerol kinase deficiency. Molecular Genetics and Metabolism 96:106-112. [2]

Iyer VV, Sriram G, Fulton DB, Zhou R, Westgate ME, Shanks JV (2008) Metabolic flux maps: An effective tool for studying the effect of temperature on protein and oil biosynthesis in developing soybean cotyledons. Plant, Cell, and Environment 31:506-517. [3].

Sriram G, Rahib L, He J-S, Campos AE, Liao JC, Dipple KM (2008) Global metabolic changes due to glycerol kinase overexpression in rat liver cells. Molecular Genetics and Metabolism 93:145-159. [4].

Sriram G, Iyer VV, Fulton DB, Shanks JV (2007) Identification of hexose hydrolysis products in metabolic flux analytes: A case study of levulinic acid in plant protein hydrolysate. Metabolic Engineering 9: 442-451. [5]. (Cover article)

Sriram G, Fulton DB, Shanks JV (2007) Flux quantification in central carbon metabolism of Catharanthus roseus hairy roots by 13C labeling and comprehensive bondomer balancing. Phytochemistry 68: 2243-2257. [6].

§Sriram G, §González-Rivera O, Shanks JV (2006) Determination of biomass composition of Catharanthus roseus hairy roots for metabolic flux analysis. Biotechnology Progress 22: 1659-1663. [7]. [§Contributed equally]

Sriram G, Martinez JA, McCabe ERB, Liao JC, Dipple KM (2005) Single-gene disorders: What role could moonlighting enzymes play? American Journal of Human Genetics 76: 911-924. [8].

Sriram G, Fulton DB, Iyer VV, Peterson JM, Zhou R, Westgate ME, Spalding MH, Shanks JV (2004) Quantification of compartmented metabolic fluxes in developing soybean embryos by employing biosynthetically directed fractional 13C labeling, two-dimensional [13C, 1H] nuclear magnetic resonance, and comprehensive isotopomer balancing. Plant Physiology 136: 3043-3057. [9]. (Featured in Faculty of 1000 Biology [www.f1000biology.com/article/id/1021697].)

Sriram G, Shanks JV (2004) Improvements in metabolic flux analysis using carbon bond labeling experiments: bondomer balancing and Boolean function mapping. Metabolic Engineering 6: 116-132. [10].