Showing 33,241 - 33,260 results of 109,469 for search '(( 10 μ decrease ) OR ( 5 ((((wt decrease) OR (we decrease))) OR (a decrease)) ))', query time: 1.95s Refine Results
  1. 33241

    Table_3_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.docx by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  2. 33242

    Table_4_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.xls by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  3. 33243

    Image_6_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  4. 33244

    Table_2_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.docx by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  5. 33245

    Image_2_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  6. 33246

    Image_7_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  7. 33247

    Image_3_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  8. 33248

    Image_9_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  9. 33249

    Image_4_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  10. 33250

    Image_1_Spliceostatin C, a component of a microbial bioherbicide, is a potent phytotoxin that inhibits the spliceosome.jpg by Joanna Bajsa-Hirschel (3902302)

    Published 2023
    “…In silico binding studies showed that SPC binds to a pocket between the SF3B3 and PF5A of the spliceosome.…”
  11. 33251

    HR (95% CI) for type 2 diabetes according to the magnitude of change in planetary health diet score during follow-up. <i>n</i> = 11,888. by Solomon A. Sowah (11917472)

    Published 2025
    “…The change categories were constructed at both the first and second follow-ups as follows: an increase or decrease less than 3% was classified as ‘Stable’, a decrease greater than 10% was classified as ‘Large decrease’, a decrease from 3% to 10% was classified as ‘Small decrease’; an increase from 3% to 10% was classified as ‘Small increase’, and an increase greater than 10% classified as ‘Large increase’. ref = reference category. …”
  12. 33252

    Cadmium induces heritable depletion of SLBP protein in BL41 cells. by Ashley Jordan (3728080)

    Published 2017
    “…<p>BL41 cells were exposed to 0μM, 1μM, 2.5μM, or 5μM Ni Cl<sub>2</sub> for 48 hours. After removing the media and washing in PBS, whole cell lysates were collected and run on a 12% SDS PAGE gel after 4 days (A) and 6 days (C). …”
  13. 33253
  14. 33254

    DataSheet_1_FTO promotes liver inflammation by suppressing m6A mRNA methylation of IL-17RA.docx by Xiaojie Gan (13773058)

    Published 2022
    “…Besides, we demonstrated that FTO, rather than methyltransferase-like 3 (METTL3), methyltransferase-like 14 (METTL14), and alkB homolog 5 (ALKBH5) functions as a main modulator for the decrease of m6A mRNA methylation of IL-17RA via knockdown and overexpression of FTO in vitro and in vivo.…”
  15. 33255
  16. 33256

    Fructose–Water–Dimethylsulfoxide Interactions by Vibrational Spectroscopy and Molecular Dynamics Simulations by Vladimiros Nikolakis (1429849)

    Published 2012
    “…Finally, analysis of ATR/FTIR spectra revealed that, with increasing water content, the average hydrogen-bond enthalpy of the fructose hydroxyls decreases by ∼2.5 kJ/mol.…”
  17. 33257
  18. 33258
  19. 33259
  20. 33260