Showing 17,661 - 17,680 results of 30,536 for search '(( 2 step decrease ) OR ( 50 ((((ms decrease) OR (a decrease))) OR (mean decrease)) ))', query time: 0.76s Refine Results
  1. 17661

    Backfilling the FM sensor surface with click chemistry. by Philipp Cedro (22339444)

    Published 2025
    “…Initial surface chemistry; MTz in ridges and Tz in grooves (Step 1). In step 2, the non-binding mutant peptide was injected and primarily reacted with Tz in grooves. …”
  2. 17662

    Internalization segregates active and inactive β<sub>2</sub>ARs. by Tien-Hung Lan (229446)

    Published 2011
    “…Smooth curves are least-squares fits to a hyperbolic function; the derived V/Rluc8 intensity ratio at which net BRET was half-maximal (BRET<sub>50</sub>) was 0.15 in both cases, thus the agonist-induced decrease BRET decrease did not depend on V/Rluc8.…”
  3. 17663
  4. 17664

    Effect of calcium on kinase activity. by Rodrigo F. Oliveira (184716)

    Published 2012
    “…Both PKA and CaMKII activity are summed between 50 and 350 sec. (B) The calcium induced increase in PKA activity is caused by a small activation in PP2A, leading to a small decrease in phosphoThr75 (not shown).…”
  5. 17665
  6. 17666
  7. 17667
  8. 17668
  9. 17669
  10. 17670
  11. 17671
  12. 17672
  13. 17673

    Image6_Overexpression of TaPIP1A enhances drought and salt stress tolerance in Arabidopsis: cross-species conservation and molecular dynamics.jpeg by Jie Han (128758)

    Published 2025
    “…We also discovered that TaPIP1A interacts with TaPIP2-3 and is regulated by the transcription factor TaWRKY71, which binds to its promoter to activate gene expression. …”
  14. 17674

    Image3_Overexpression of TaPIP1A enhances drought and salt stress tolerance in Arabidopsis: cross-species conservation and molecular dynamics.jpeg by Jie Han (128758)

    Published 2025
    “…We also discovered that TaPIP1A interacts with TaPIP2-3 and is regulated by the transcription factor TaWRKY71, which binds to its promoter to activate gene expression. …”
  15. 17675

    Image4_Overexpression of TaPIP1A enhances drought and salt stress tolerance in Arabidopsis: cross-species conservation and molecular dynamics.jpeg by Jie Han (128758)

    Published 2025
    “…We also discovered that TaPIP1A interacts with TaPIP2-3 and is regulated by the transcription factor TaWRKY71, which binds to its promoter to activate gene expression. …”
  16. 17676

    Table3_Overexpression of TaPIP1A enhances drought and salt stress tolerance in Arabidopsis: cross-species conservation and molecular dynamics.docx by Jie Han (128758)

    Published 2025
    “…We also discovered that TaPIP1A interacts with TaPIP2-3 and is regulated by the transcription factor TaWRKY71, which binds to its promoter to activate gene expression. …”
  17. 17677

    Image5_Overexpression of TaPIP1A enhances drought and salt stress tolerance in Arabidopsis: cross-species conservation and molecular dynamics.jpeg by Jie Han (128758)

    Published 2025
    “…We also discovered that TaPIP1A interacts with TaPIP2-3 and is regulated by the transcription factor TaWRKY71, which binds to its promoter to activate gene expression. …”
  18. 17678

    Image1_Overexpression of TaPIP1A enhances drought and salt stress tolerance in Arabidopsis: cross-species conservation and molecular dynamics.jpeg by Jie Han (128758)

    Published 2025
    “…We also discovered that TaPIP1A interacts with TaPIP2-3 and is regulated by the transcription factor TaWRKY71, which binds to its promoter to activate gene expression. …”
  19. 17679

    The role of cell density on drug response in multilayered cell culture. by Maria Håkanson (154559)

    Published 2012
    “…Here, (i) shows cells in 90 µm wide 3D clusters at high density while (ii) and (iii) are cells cultured on the 200 µm wide (A = 3×10<sup>4</sup> µm) 2D patterns at high and low density, respectively. …”
  20. 17680

    Table1_Overexpression of TaPIP1A enhances drought and salt stress tolerance in Arabidopsis: cross-species conservation and molecular dynamics.docx by Jie Han (128758)

    Published 2025
    “…We also discovered that TaPIP1A interacts with TaPIP2-3 and is regulated by the transcription factor TaWRKY71, which binds to its promoter to activate gene expression. …”