Showing 38,501 - 38,520 results of 123,450 for search '(( 2 d decrease ) OR ( 5 ((step decrease) OR (((mean decrease) OR (a decrease)))) ))', query time: 2.37s Refine Results
  1. 38501
  2. 38502
  3. 38503
  4. 38504

    Altering the N-terminal arms of the polymerase manager protein UmuD modulates protein interactions by David A. Murison (3821464)

    Published 2017
    “…Full-length UmuD is expressed as a 139-amino-acid protein, which eventually cleaves its N-terminal 24 amino acids to form UmuD′. …”
  5. 38505
  6. 38506
  7. 38507
  8. 38508
  9. 38509
  10. 38510

    TP53RK and BCL2L2 are direct targets of miR-630. by Yan Zhang (8098)

    Published 2015
    “…<p>(A) Predicted binding sites of miR-630 in the 3′-UTRs of TP53RK and BCL2L2 (B and C) Fluorescence was significantly reduced in the miR-630 mimics and wild-type dual-luciferase reporter plasmid-transfected group, while it showed no significant change in the miR-630 mimics and mutant dual-luciferase reporter plasmid-transfected group (D) TP53RK and BCL2L2 protein expression levels decreased in miR-630-transfected cells. …”
  11. 38511
  12. 38512
  13. 38513

    Co-ordinated spatial propagation of blood plasma clotting and fibrinolytic fronts - Fig 1 by Ansar S. Zhalyalov (4233721)

    Published 2017
    “…Time course of clot growth front (A5) or clot growth and lysis fronts (B5) allows to calculate the velocities of clot growth or lysis as the average velocity of growth or lysis front propagation within the first 5 minutes after the onset of the process. …”
  14. 38514

    SRRF-Stream Imaging of Optogenetically Controlled Furrow Formation Shows Localized and Coordinated Endocytosis and Exocytosis Mediating Membrane Remodeling by Jean A. Castillo-Badillo (8577258)

    Published 2020
    “…Here we used a subcellular optogenetic approach to induce this at will and found that furrow formation is mediated by actomyosin contractility, retrograde plasma membrane flow, localized decrease in membrane tension, and endocytosis. FRAP, 4-D imaging, and inhibition or upregulation of endocytosis or exocytosis show that ARF6 and Exo70 dependent localized exocytosis supports a potential model for intercellular bridge elongation. …”
  15. 38515

    SRRF-Stream Imaging of Optogenetically Controlled Furrow Formation Shows Localized and Coordinated Endocytosis and Exocytosis Mediating Membrane Remodeling by Jean A. Castillo-Badillo (8577258)

    Published 2020
    “…Here we used a subcellular optogenetic approach to induce this at will and found that furrow formation is mediated by actomyosin contractility, retrograde plasma membrane flow, localized decrease in membrane tension, and endocytosis. FRAP, 4-D imaging, and inhibition or upregulation of endocytosis or exocytosis show that ARF6 and Exo70 dependent localized exocytosis supports a potential model for intercellular bridge elongation. …”
  16. 38516

    SRRF-Stream Imaging of Optogenetically Controlled Furrow Formation Shows Localized and Coordinated Endocytosis and Exocytosis Mediating Membrane Remodeling by Jean A. Castillo-Badillo (8577258)

    Published 2020
    “…Here we used a subcellular optogenetic approach to induce this at will and found that furrow formation is mediated by actomyosin contractility, retrograde plasma membrane flow, localized decrease in membrane tension, and endocytosis. FRAP, 4-D imaging, and inhibition or upregulation of endocytosis or exocytosis show that ARF6 and Exo70 dependent localized exocytosis supports a potential model for intercellular bridge elongation. …”
  17. 38517

    SRRF-Stream Imaging of Optogenetically Controlled Furrow Formation Shows Localized and Coordinated Endocytosis and Exocytosis Mediating Membrane Remodeling by Jean A. Castillo-Badillo (8577258)

    Published 2020
    “…Here we used a subcellular optogenetic approach to induce this at will and found that furrow formation is mediated by actomyosin contractility, retrograde plasma membrane flow, localized decrease in membrane tension, and endocytosis. FRAP, 4-D imaging, and inhibition or upregulation of endocytosis or exocytosis show that ARF6 and Exo70 dependent localized exocytosis supports a potential model for intercellular bridge elongation. …”
  18. 38518

    SRRF-Stream Imaging of Optogenetically Controlled Furrow Formation Shows Localized and Coordinated Endocytosis and Exocytosis Mediating Membrane Remodeling by Jean A. Castillo-Badillo (8577258)

    Published 2020
    “…Here we used a subcellular optogenetic approach to induce this at will and found that furrow formation is mediated by actomyosin contractility, retrograde plasma membrane flow, localized decrease in membrane tension, and endocytosis. FRAP, 4-D imaging, and inhibition or upregulation of endocytosis or exocytosis show that ARF6 and Exo70 dependent localized exocytosis supports a potential model for intercellular bridge elongation. …”
  19. 38519

    SRRF-Stream Imaging of Optogenetically Controlled Furrow Formation Shows Localized and Coordinated Endocytosis and Exocytosis Mediating Membrane Remodeling by Jean A. Castillo-Badillo (8577258)

    Published 2020
    “…Here we used a subcellular optogenetic approach to induce this at will and found that furrow formation is mediated by actomyosin contractility, retrograde plasma membrane flow, localized decrease in membrane tension, and endocytosis. FRAP, 4-D imaging, and inhibition or upregulation of endocytosis or exocytosis show that ARF6 and Exo70 dependent localized exocytosis supports a potential model for intercellular bridge elongation. …”
  20. 38520

    SRRF-Stream Imaging of Optogenetically Controlled Furrow Formation Shows Localized and Coordinated Endocytosis and Exocytosis Mediating Membrane Remodeling by Jean A. Castillo-Badillo (8577258)

    Published 2020
    “…Here we used a subcellular optogenetic approach to induce this at will and found that furrow formation is mediated by actomyosin contractility, retrograde plasma membrane flow, localized decrease in membrane tension, and endocytosis. FRAP, 4-D imaging, and inhibition or upregulation of endocytosis or exocytosis show that ARF6 and Exo70 dependent localized exocytosis supports a potential model for intercellular bridge elongation. …”