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69001
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69002
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69003
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69004
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69005
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69006
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69007
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69008
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69009
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69010
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69011
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69012
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69013
Effect of Oxidation and Protonation States on [2Fe–2S] Cluster Nitrosylation Giving {Fe(NO)<sub>2</sub>}<sup>9</sup> Dinitrosyl Iron Complexes (DNICs)
Published 2018“…Density functional theory calculations based on the structure of <b>3</b><sup><b>–</b></sup> indicate that the electronic ground-state properties of <b>3</b><sup><b>–</b></sup> and <b>3H</b> are similar, although the NO(π*) → Fe 3d π-donation is slightly increased and π-backbonding is slightly decreased upon protonation. As a result, protonation has a significant effect on the NO stretching frequencies, but only minor effects on the Fe–(NO)<sub>2</sub> modes. …”
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69014
Mannitol uptake is repressed in vitro, but mannitol reaches <i>S</i>Tm inside host cells without affecting the host or bacterial metabolism.
Published 2023“…<i>p</i>-values are highly significant (8.3·10<sup>-7</sup> and 6.5·10<sup>-4</sup>) from a two-sample <i>t</i> test. …”
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69015
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69016
Table_1_The Impact of Gut Microbiome on Metabolic Disorders During Catch-Up Growth in Small-for-Gestational-Age.docx
Published 2021“…Transcriptomic data revealed that insulin-like growth factor-2 expression was significantly decreased in CUG-SGA rats and was associated with a decrease in Lactobacillus bacteria.…”
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69017
<i>Haemophilus influenzae</i> type b disease in the era of conjugate vaccines: critical factors for successful eradication
Published 2020“…<p>Prior to implementation of <i>Haemophilus influenzae</i> type b (Hib)-conjugate vaccination programs in the 1990s, Hib was the commonest cause of bacterial meningitis in children aged <5 years. While the burden of all Hib disease has significantly decreased in the post-vaccination era, Hib still accounted for >29,000 deaths worldwide in children aged <5 years in 2015.…”
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69018
BRCA1 protein levels are altered by γ irradiation.
Published 2010“…<p><b>A</b>. BRCA1 protein levels rapidly drop in response to γ irradiation in HeLa cells. …”
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69019
Impact of <i>luxR</i> complementation on bioluminescene during long term culturing of <i>Vibrio fischeri</i>.
Published 2013“…<p>Relative bioluminescence output from the dark <i>V. fischeri</i> MJ1 Lineage 10 with a <i>luxR</i> mutation complimented with a functional <i>luxR</i> gene under control of its own promoter on pLS6luxR. …”
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69020
Genetic screen in haploid ESCs for PMP resistance identifies Anoikis modulators.
Published 2022“…<b>(B)</b> SAG and PMP decrease survival of ESCs treated for 48 hours with SΗΗ (50 to 500 ng/ml), SAG (0.5 to 5 μM), PMP (1 to 10 μM), Cyclopamine-KAAD (1 to 5 μM), and SANT-1 (10 to 50 μM). …”