All experiment was done according to the Affymetrix manufacturers protocol. The resulting HGF gingiva expression profile(Hereditary gingival fibromatosis patient Gingiva replicate1 and replicate 2)was compared to normal gingiva control(Normal Gingiva replicate1 and replicate2). The data were collected and analyzed by GCOS 1.2 and GeneSpring 7.2 1-way T test.
A novel locus for maternally inherited human gingival fibromatosis at chromosome 11p15.
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View SamplesThree independent sets of purified RNA from body cells and great vessel cells of zebrafish embryos were prepared and labelled. Samples were then hybridized onto a Zebrafish AffymetrixGeneChip.
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Age, Specimen part
View SamplesThe ER-resident protein kinase/endoribonuclease IRE1 is activated through trans-autophosphorylation in response to protein folding overload in the ER lumen and maintains ER homeostasis by triggering a key branch of the unfolded protein response. Here we show that mammalian IRE1a in liver cells is also phosphorylated by a kinase other than itself in response to metabolic stimuli. Glucagon stimulated protein kinase PKA, which in turn phosphorylated IRE1a at Ser724, a highly conserved site within the kinase activation domain. Blocking Ser724 phosphorylation impaired the ability of IRE1a to augment the upregulation by glucagon signaling of the expression of gluconeogenic genes. Moreover, hepatic IRE1a was highly phosphorylated at Ser724 by PKA in mice with obesity, and silencing hepatic IRE1a markedly reduced hyperglycemia and glucose intolerance. Hence, these results suggest that IRE1a integrates signals from both the ER lumen and the cytoplasm in the liver and is coupled to the glucagon signaling in the regulation of glucose metabolism.
PKA phosphorylation couples hepatic inositol-requiring enzyme 1alpha to glucagon signaling in glucose metabolism.
Treatment
View SamplesMice with the spontaneous uncv mutation are hairless. We utilize the uncv null mouse to investigate the underlying mechanisms giving rise to the relevant phenotypes and reveal significant changes in certain signaling pathways by microarray.
No associated publication
No sample metadata fields
View SamplesGlobal warming seriously threats world food supply. However, very few approaches have succeeded in genetically enhancing crop heat tolerance without growth penalty.
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Age, Specimen part
View SamplesTo reveal the underlying molecular mechanism of GH3.5 action in modulating the SA and auxin pathways, we performed transcriptional profiling of gh3.5-1D plants after infection with or without Pst DC3000(avrRpt2) on a global scale using the Affymetrix Arabidopsis ATH1 GeneChip
Dual regulation role of GH3.5 in salicylic acid and auxin signaling during Arabidopsis-Pseudomonas syringae interaction.
No sample metadata fields
View SamplesTo reveal the underlying molecular mechanism of Gif1 action in the control of grain filling and yield improvement, we performed transcriptional profiling of wild type Zhonghua11 and mutant gif1 plants in early filling stage on a global scale using the Affymetrix GeneChip Rice Genome Array
Control of rice grain-filling and yield by a gene with a potential signature of domestication.
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View SamplesTo reveal the underlying molecular mechanism of jasmonate inhibits gibberellins signaling in rice, we performed transcriptional profiling of wild type nipponbare and mutant coi1-13 plants on a global scale using the Affymetrix GeneChip Rice Genome Array
Plant hormone jasmonate prioritizes defense over growth by interfering with gibberellin signaling cascade.
Specimen part
View SamplesMADS family genes in rice control flowering and inflorescence development. In the early flower stages of plant, MADS-box transcripion factors could form protein-protein interaction complexes with other floral homeotic genes and regulate the expression of downstram genes. OsMADS32 in rice is an important transcription factor in controlling flower development
No associated publication
Specimen part
View SamplesTo massively identify genes that are up-regulated by Cd and in particular transporter genes which might transport peptides or oligopeptides.
The Arabidopsis nitrate transporter NRT1.8 functions in nitrate removal from the xylem sap and mediates cadmium tolerance.
Age, Specimen part
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