MRT, Functioning with NURF Complex, Regulates Lipid Droplet Size.
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Xun Huang | Jianming Chen | Wei Wang | Mei Ding | Zhonghua Liu | Xia Li | Yan Yao
[1] R. Jiao,et al. HDAC6 Suppresses Age-Dependent Ectopic Fat Accumulation by Maintaining the Proteostasis of PLIN2 in Drosophila. , 2017, Developmental cell.
[2] N. Grishin,et al. Pet10p is a yeast perilipin that stabilizes lipid droplets and promotes their assembly , 2017, The Journal of cell biology.
[3] Yuanyuan Kong,et al. Specific regulation of thermosensitive lipid droplet fusion by a nuclear hormone receptor pathway , 2017, Proceedings of the National Academy of Sciences.
[4] Yong Wang,et al. Drosophila TRF2 and TAF9 regulate lipid droplet size and phospholipid fatty acid composition , 2017, PLoS genetics.
[5] A. Kimmel,et al. The Perilipins: Major Cytosolic Lipid Droplet-Associated Proteins and Their Roles in Cellular Lipid Storage, Mobilization, and Systemic Homeostasis. , 2016, Annual review of nutrition.
[6] Yuanyuan Kong,et al. A Genetic Screen for Mutants with Supersized Lipid Droplets in Caenorhabditis elegans , 2016, G3: Genes, Genomes, Genetics.
[7] J. Frank. Origins of the obesity pandemic can be analysed , 2016, Nature.
[8] Aviv Regev,et al. Changes in nucleosome occupancy associated with metabolic alterations in aged mammalian liver. , 2014, Cell reports.
[9] Xun Huang,et al. A lipid droplet-associated GFP reporter-based screen identifies new fat storage regulators in C. elegans. , 2014, Journal of genetics and genomics = Yi chuan xue bao.
[10] George Liu,et al. Seipin promotes adipose tissue fat storage through the ER Ca²⁺-ATPase SERCA. , 2014, Cell metabolism.
[11] H. Jäckle,et al. A Drosophila in vivo screen identifies store-operated calcium entry as a key regulator of adiposity. , 2014, Cell metabolism.
[12] Sarah C R Elgin,et al. Position-effect variegation, heterochromatin formation, and gene silencing in Drosophila. , 2013, Cold Spring Harbor perspectives in biology.
[13] J. Rothman,et al. COPI buds 60-nm lipid droplets from reconstituted water–phospholipid–triacylglyceride interfaces, suggesting a tension clamp function , 2013, Proceedings of the National Academy of Sciences.
[14] H. Nebb,et al. Fatty acids regulate perilipin5 in muscle by activating PPARδ[S] , 2013, Journal of Lipid Research.
[15] Matthew M. Crane,et al. A conserved role for atlastin GTPases in regulating lipid droplet size. , 2013, Cell reports.
[16] Hongyuan Yang,et al. Perilipin1 promotes unilocular lipid droplet formation through the activation of Fsp27 in adipocytes , 2013, Nature Communications.
[17] Robert V Farese,et al. Triacylglycerol synthesis enzymes mediate lipid droplet growth by relocalizing from the ER to lipid droplets. , 2013, Developmental cell.
[18] H. Sul,et al. Phosphorylation and recruitment of BAF60c in chromatin remodeling for lipogenesis in response to insulin. , 2013, Molecular cell.
[19] Xun Huang,et al. Opposite and redundant roles of the two Drosophila perilipins in lipid mobilization , 2012, Journal of Cell Science.
[20] Anne M. Galea,et al. Controlling the size of lipid droplets: lipid and protein factors. , 2012, Current opinion in cell biology.
[21] P. Li,et al. Fsp27 promotes lipid droplet growth by lipid exchange and transfer at lipid droplet contact sites , 2011, The Journal of cell biology.
[22] Robert V Farese,et al. Phosphatidylcholine synthesis for lipid droplet expansion is mediated by localized activation of CTP:phosphocholine cytidylyltransferase. , 2011, Cell metabolism.
[23] R. Kühnlein. The contribution of the Drosophila model to lipid droplet research. , 2011, Progress in lipid research.
[24] T. Walther,et al. A Role for Phosphatidic Acid in the Formation of “Supersized” Lipid Droplets , 2011, PLoS genetics.
[25] A. Nagel,et al. The Putzig-NURF Nucleosome Remodeling Complex Is Required for Ecdysone Receptor Signaling and Innate Immunity in Drosophila melanogaster , 2011, Genetics.
[26] S. Mandrup,et al. Extensive chromatin remodelling and establishment of transcription factor ‘hotspots’ during early adipogenesis , 2011, The EMBO journal.
[27] Rupali Ugrankar,et al. Lipin Is a Central Regulator of Adipose Tissue Development and Function in Drosophila melanogaster , 2011, Molecular and Cellular Biology.
[28] H. Jäckle,et al. PERILIPIN-dependent control of lipid droplet structure and fat storage in Drosophila. , 2010, Cell metabolism.
[29] K. Clément,et al. Liver X Receptor (LXR) Regulates Human Adipocyte Lipolysis* , 2010, The Journal of Biological Chemistry.
[30] M. Jensen,et al. Regional differences in cellular mechanisms of adipose tissue gain with overfeeding , 2010, Proceedings of the National Academy of Sciences.
[31] A. Nagel,et al. A Novel Pzg-NURF Complex Regulates Notch Target Gene Activity , 2010, Molecular biology of the cell.
[32] Jun Ma,et al. Drosophila CAF-1 regulates HP1-mediated epigenetic silencing and pericentric heterochromatin stability , 2010, Journal of Cell Science.
[33] Robert V Farese,et al. Lipid Droplets Finally Get a Little R-E-S-P-E-C-T , 2009, Cell.
[34] B. Cairns,et al. The biology of chromatin remodeling complexes. , 2009, Annual review of biochemistry.
[35] Noel Southall,et al. COPI Complex Is a Regulator of Lipid Homeostasis , 2008, PLoS biology.
[36] Jiandie D. Lin,et al. Genome-wide coactivation analysis of PGC-1alpha identifies BAF60a as a regulator of hepatic lipid metabolism. , 2008, Cell metabolism.
[37] Robert V Farese,et al. Functional genomic screen reveals genes involved in lipid-droplet formation and utilization , 2008, Nature.
[38] R. Parton,et al. Fld1p, a functional homologue of human seipin, regulates the size of lipid droplets in yeast , 2008, The Journal of cell biology.
[39] B. Fielding,et al. Specialized hepatocyte-like cells regulate Drosophila lipid metabolism , 2007, Nature.
[40] H. Jäckle,et al. Brummer lipase is an evolutionary conserved fat storage regulator in Drosophila. , 2005, Cell metabolism.
[41] Mahadev Rao,et al. Cyclin D1 Inhibits Peroxisome Proliferator-activated Receptor γ-mediated Adipogenesis through Histone Deacetylase Recruitment* , 2005, Journal of Biological Chemistry.
[42] H. Saumweber,et al. Identification of the Drosophila interband-specific protein Z4 as a DNA-binding zinc-finger protein determining chromosomal structure , 2004, Journal of Cell Science.
[43] S. Taniguchi,et al. Identification of a functional peroxisome proliferator-activated receptor responsive element within the murine perilipin gene. , 2004, Endocrinology.
[44] J. Auwerx,et al. Adipose tissue expression of the lipid droplet-associating proteins S3-12 and perilipin is controlled by peroxisome proliferator-activated receptor-gamma. , 2004, Diabetes.
[45] T. Horiba,et al. The Peroxisome Proliferator-activated Receptor γ Regulates Expression of the Perilipin Gene in Adipocytes* , 2004, Journal of Biological Chemistry.
[46] C. Peterson,et al. The SANT domain: a unique histone-tail-binding module? , 2004, Nature Reviews Molecular Cell Biology.
[47] C. Schild-Poulter,et al. Stimulation of preadipocyte differentiation by steroid through targeting of an HDAC1 complex , 2003, The EMBO journal.
[48] H. Jäckle,et al. Control of Fat Storage by a Drosophila PAT Domain Protein , 2003, Current Biology.
[49] Ann-Shyn Chiang,et al. The staufen/pumilio Pathway Is Involved in Drosophila Long-Term Memory , 2003, Current Biology.
[50] R. Tjian,et al. TRF2 associates with DREF and directs promoter-selective gene expression in Drosophila , 2002, Nature.
[51] C. Peterson,et al. Essential role for the SANT domain in the functioning of multiple chromatin remodeling enzymes. , 2002, Molecular cell.
[52] L. Cooley,et al. Mutations in the midway gene disrupt a Drosophila acyl coenzyme A: diacylglycerol acyltransferase. , 2002, Genetics.
[53] N. Perrimon,et al. Targeted gene expression as a means of altering cell fates and generating dominant phenotypes. , 1993, Development.
[54] A. Greenberg,et al. Perilipin, a major hormonally regulated adipocyte-specific phosphoprotein associated with the periphery of lipid storage droplets. , 1991, The Journal of biological chemistry.
[55] L. Sjöström,et al. Impact of obesity on metabolism in men and women. Importance of regional adipose tissue distribution. , 1983, The Journal of clinical investigation.
[56] E. A. Sims,et al. Experimental obesity in man: cellular character of the adipose tissue. , 1971, The Journal of clinical investigation.
[57] M. Lazar,et al. Circadian epigenomic remodeling and hepatic lipogenesis: lessons from HDAC3. , 2011, Cold Spring Harbor symposia on quantitative biology.