Showing 861 - 880 results of 100,582 for search '(( 5 non decrease ) OR ( 5 ((wt decrease) OR (((we decrease) OR (a decrease)))) ))', query time: 1.81s Refine Results
  1. 861
  2. 862

    Functional characterization of the V9D and R10C substitutions in chicken ARF. by Doreen Schwochow Thalmann (3912649)

    Published 2017
    “…Spectra of MDM2<sub>204-298</sub>, ARF<sub>1-14</sub><sup>WT</sup>, and complexes of ARF<sub>1-14</sub><sup>WT</sup>/MDM2<sub>204-298</sub>, ARF<sub>1-14</sub><sup>V9D</sup>/MDM2<sub>204-298</sub>, and ARF<sub>1-14</sub><sup>R10C</sup>/MDM2<sub>204-298</sub>. …”
  3. 863
  4. 864
  5. 865

    DHT increases whereas orchidectomy decreases the seminal vesicle weight in wild-type and SOD1-G93A mice. by Young-Eun Yoo (323357)

    Published 2013
    “…Conversely, orchidectomy decreased the seminal vesicle weight in both WT mice (28.4±13 mg, <i>p</i><0.0001) and SOD1 mice (20.8±3.5 mg, <i>p</i><0.0001) compared with control WT and SOD1 mice, respectively. …”
  6. 866

    Relationships between empty body lipid weight decrease and corrected amounts of pollutants excreted through faeces (faecal output–feed input) for TCDD (○, ●), and PCBs 153 (□, ■) and 126 (Δ, ▲) over a 57-day depuration period in ewes receiving a control well-fed and non-supplemented treatments (CTL: ○, □, Δ; <i>n</i> = 4), or an underfed and mineral oil supplemented treatment (UFMO: ●, ■, ▲; <i>n</i> = 5). by Sylvain Lerch (1494349)

    Published 2020
    “…<p>Relationships between empty body lipid weight decrease and corrected amounts of pollutants excreted through faeces (faecal output–feed input) for TCDD (○, ●), and PCBs 153 (□, ■) and 126 (Δ, ▲) over a 57-day depuration period in ewes receiving a control well-fed and non-supplemented treatments (CTL: ○, □, Δ; <i>n</i> = 4), or an underfed and mineral oil supplemented treatment (UFMO: ●, ■, ▲; <i>n</i> = 5).…”
  7. 867
  8. 868
  9. 869
  10. 870
  11. 871

    Table_1_Soil Properties Interacting With Microbial Metagenome in Decreasing CH4 Emission From Seasonally Flooded Marshland Following Different Stages of Afforestation.xlsx by Qian Zhang (49333)

    Published 2022
    “…Compared to the non-afforested land use types, net CH<sub>4</sub> emission decreased from bare land, natural vegetation and 5-year forest plantation and transitioned to net CH<sub>4</sub> sinks in the 10- and 20-year forest plantations. …”
  12. 872

    Image_5_TRAPS mutations in Tnfrsf1a decrease the responsiveness to TNFα via reduced cell surface expression of TNFR1.tif by Takahiko Akagi (13138338)

    Published 2022
    “…T79M is a known mutation responsible for TRAPS, whereas G87V is a TRAPS mutation that we have reported, and T90I is a variant of unknown significance. …”
  13. 873
  14. 874
  15. 875
  16. 876
  17. 877
  18. 878

    Influence of Thiolate Ligands on Reductive N−O Bond Activation. Probing the O<sub>2</sub><sup>−</sup> Binding Site of a Biomimetic Superoxide Reductase Analogue and Examining the P... by Gloria Villar-Acevedo (2232583)

    Published 2011
    “…Like NO-bound <i>trans</i>-cysteinate-ligated SOR (SOR-NO), the rhombic <i>S</i> = 3/2 EPR signal of NO-bound <i>cis</i>-thiolate-ligated [Fe(S<sup>Me<sub>2</sub></sup>N<sub>4</sub>(tren)(NO)]<sup>+</sup> (<b>2</b>; <i>g</i> = 4.44, 3.54, 1.97), the isotopically sensitive ν<sub>NO</sub>(ν<sub><sup>15</sup>NO</sub>) stretching frequency (1685(1640) cm<sup>−1</sup>), and the 0.05 Å decrease in Fe−S bond length are shown to be consistent with <i>the oxidative addition of NO to Fe(II)</i> to afford an Fe(III)−NO<sup>−</sup> {FeNO}<sup>7</sup> species containing high-spin (<i>S</i> = 5/2) Fe(III) antiferromagnetically coupled to NO<sup>−</sup> (<i>S</i> = 1). …”
  19. 879

    Influence of Thiolate Ligands on Reductive N−O Bond Activation. Probing the O<sub>2</sub><sup>−</sup> Binding Site of a Biomimetic Superoxide Reductase Analogue and Examining the P... by Gloria Villar-Acevedo (2232583)

    Published 2011
    “…Like NO-bound <i>trans</i>-cysteinate-ligated SOR (SOR-NO), the rhombic <i>S</i> = 3/2 EPR signal of NO-bound <i>cis</i>-thiolate-ligated [Fe(S<sup>Me<sub>2</sub></sup>N<sub>4</sub>(tren)(NO)]<sup>+</sup> (<b>2</b>; <i>g</i> = 4.44, 3.54, 1.97), the isotopically sensitive ν<sub>NO</sub>(ν<sub><sup>15</sup>NO</sub>) stretching frequency (1685(1640) cm<sup>−1</sup>), and the 0.05 Å decrease in Fe−S bond length are shown to be consistent with <i>the oxidative addition of NO to Fe(II)</i> to afford an Fe(III)−NO<sup>−</sup> {FeNO}<sup>7</sup> species containing high-spin (<i>S</i> = 5/2) Fe(III) antiferromagnetically coupled to NO<sup>−</sup> (<i>S</i> = 1). …”
  20. 880