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15701
Possible Increase in Serum FABP4 Level Despite Adiposity Reduction by Canagliflozin, an SGLT2 Inhibitor
Published 2016“…Treatment with canagliflozin significantly decreased adiposity and levels of fasting glucose and HbA1c but increased average serum FABP4 level by 10.3% (18.0 ± 1.0 vs. 19.8 ± 1.2 ng/ml, P = 0.008), though elevation of FABP4 level after treatment was observed in 26 (66.7%) out of 39 patients. …”
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15702
<i>ACVR2</i> promoter hypermethylation and LOH in colon cancer specimens and the MSS HT29 cell line and correlation of <i>ACVR2</i> promoter hypermethylation and loss of <i>ACVR2</...
Published 2009“…<p>A) ACVR2 promoter with map of positioning of MSP primers B) Using a CpG islands search program, we identified the CpG islands within the <i>ACVR2</i> promoter based upon following stringent criteria: ∼CG percentage>55%; observed CpG/expected CpG >0.65; length >500 bp. …”
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15703
Supplementary Material for: The HDM2 (MDM2) Inhibitor NVP-CGM097 Inhibits Tumor Cell Proliferation and Shows Additive Effects with 5-Fluorouracil on the p53-p21-Rb-E2F1 Cascade in...
Published 2016“…The small molecule NVP-CGM097 is a novel MDM2 inhibitor. We investigated MDM2 inhibition as a target in neuroendocrine tumor cells in vitro. …”
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15704
Data_Sheet_1_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.DOCX...
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15705
Table_13_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15706
Table_12_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xls
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15707
Table_6_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15708
Table_3_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15709
Table_5_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15710
Table_2_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15711
Table_9_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15712
Table_11_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15713
Table_7_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xls
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15714
Table_4_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15715
Table_1_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.docx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15716
Table_10_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xls
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15717
Table_8_Transcriptome and Proteomics Analysis of Wheat Seedling Roots Reveals That Increasing NH4+/NO3– Ratio Induced Root Lignification and Reduced Nitrogen Utilization.xlsx
Published 2022“…However, the mechanisms underlying the response of wheat seedling roots to changes in NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratio remain unclear. In this study, we investigated wheat growth, transcriptome, and proteome profiles of roots in response to increasing NH<sub>4</sub><sup>+</sup>/NO<sub>3</sub><sup>–</sup> ratios (N<sub>a</sub>: 100/0; N<sub>r1</sub>: 75/25, N<sub>r2</sub>: 50/50, N<sub>r3</sub>: 25/75, and N<sub>n</sub>: 0/100). …”
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15718
CDA deficiency leads to excess dCTP, inhibiting PARP-1 activity and leading to UFB formation.
Published 2015“…(G) (1) CDA deficiency leads to intracellular dCTP accumulation, decreasing basal PARP-1 activity. (2) The decrease in basal PARP-1 activity leads to an increase in unreplicated DNA sequences (preferentially at centromeres and CFS sites). (3) During late G2/early mitosis, some of this unreplicated DNA is probably processed by MUS81-EME1 and ERCC1 nucleases as previously suggested [<a href="http://www.plosgenetics.org/article/info:doi/10.1371/journal.pgen.1005384#pgen.1005384.ref036" target="_blank">36</a>, <a href="http://www.plosgenetics.org/article/info:doi/10.1371/journal.pgen.1005384#pgen.1005384.ref012" target="_blank">12</a>], leading to DNA synthesis during metaphase (EdU foci) and preventing supernumerary UFB formation. (4) Some of the excess unreplicated DNA sequences are not processed by the nucleases, leading to supernumerary UFB formation.…”
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15719
Beta power timecourses time-locked to the response (button press at time zero), expressed as percent change from baseline in the SMOT areas.
Published 2018“…After the switch and immediately preceding the response (highlighted in dark blue color), the primed hemisphere rebounds back to baseline while the responding hemisphere continues to decrease. In the right panel, lateralized beta power is presented in the bar graphs as a subtraction of beta power in the contralateral—ipsilateral SMOT in the early (-300 to -200 ms) vs late (-100 to 0 ms) time windows.…”
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15720
Table 1_Trends in the disease burden of maternal sepsis and other maternal infections attributable to iron deficiency from 1990 to 2021 and its projection until 2050.docx
Published 2025“…The ASMR and age-standardized DALY rate of MSMIs attributable to iron deficiency were negatively correlated with SDI. Projections indicated a continued decrease in the burden of MSMIs attributable to iron deficiency by 2050.…”