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6841
A Unique Modification of the Eukaryotic Initiation Factor 5A Shows the Presence of the Complete Hypusine Pathway in <em>Leishmania donovani</em>
Published 2012“…<div><p>Deoxyhypusine hydroxylase (DOHH) catalyzes the final step in the post-translational synthesis of an unusual amino acid hypusine (<em>N</em><sup>€</sup>-(4-amino-2-hydroxybutyl) lysine), which is present on only one cellular protein, eukaryotic initiation factor 5A (eIF5A). …”
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6842
Association of Fluid Status and Body Composition with Physical Function in Patients with Chronic Kidney Disease
Published 2016“…There was no significant relationship between body composition and 2-minute step test.</p><p>Conclusions</p><p>Our results show a significant association of impaired upper and lower extremity muscle endurance with high fluid status and fat tissue. …”
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6843
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6844
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6845
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6846
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6847
Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States
Published 2024“…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
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6848
Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States
Published 2024“…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
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6849
Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States
Published 2024“…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
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6850
Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States
Published 2024“…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
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6851
Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States
Published 2024“…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
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6852
Mechanism Studies on the Chemical Stability of FIrpic, a Typical Blue Phosphorescent Emitter for Electroluminescence, in the Redox States
Published 2024“…Charge analysis indicates a decreasing trend in electronic delocalization between the LP<sub>N</sub> electron donor natural bond orbital (NBO) and the d*<sub>N–Ir(pic.)…”
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6853
Predicting improved protein conformations with a temporal deep recurrent neural network - Fig 5
Published 2018“…<p>(A)–(D) Effect of sequence length (SL) 1, 5, 30 and 50 on precision and recall for the improved state class as a function of training steps tested on validation fold 4. …”
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6854
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6855
Dephosphorylation of AMPK by PP2A phosphatase promotes neuritogenic effect of SIM in SH-SY5Y cells.
Published 2013“…Error bar graph shows the difference in neurite length between SIM, SIM + Fostriecin and SIM + AICAR treated cells for 12 hrs (mean ± SEM; N = 50 cells per condition from 3 separate cultures). …”
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6856
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6857
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6858
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6859
Data Sheet 1_Isoform-specific vs. pan-histone deacetylase inhibition as approaches for countering glioblastoma: an in vitro study.docx
Published 2025“…We characterized the effect of the 3D half-maximal inhibitory concentrations (IC50) on spheroids using a live–dead assay to figure out which inhibitors inhibited cell viability in 3D the most. …”
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6860
The number of Brn3a-expressing RGCs undergoes a reduction during the first postnatal week.
Published 2013“…The inner surface of the retina (RGC layer) is down. The density of Brn3a-expressing cells decreases from P0 to P7 and the retinal ganglion cell layer reorganizes from a multiple cell layer at P0 to a single cell layer at P7. …”