Showing 14,581 - 14,600 results of 118,904 for search '(( a mean decrease ) OR ( 5 ((point decrease) OR (((nn decrease) OR (a decrease)))) ))', query time: 1.82s Refine Results
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    DataSheet1_The tumor suppressor 5A2, a synthetic miR-7-5p mimic, targets oncogenic and metabolic pathways, as revealed by transcriptome-wide analysis.PDF by Marion T. J. van den Bosch (16509735)

    Published 2023
    “…Interestingly, Ingenuity Pathway Analysis revealed a new role for 5A2 in metabolic pathways. Validation experiments in vitro showed that 5A2 reduced the expression of key glycolysis and glutaminolysis enzymes, leading to a decrease in glycolysis, lactate secretion and intracellular glutamate availability. …”
  4. 14584

    Image_2_Tumor Suppressor miR-184 Enhances Chemosensitivity by Directly Inhibiting SLC7A5 in Retinoblastoma.TIF by Tian-Geng He (7870724)

    Published 2019
    “…Molecular studies revealed that miR-184-decreased phosphorylation status of known DNA damage repair sensors of the ATR/ATM pathways and induced persistent formation of γH2AX foci depend on targeting SLC7A5, leading to persistent DNA damage. …”
  5. 14585

    Image_3_Tumor Suppressor miR-184 Enhances Chemosensitivity by Directly Inhibiting SLC7A5 in Retinoblastoma.TIF by Tian-Geng He (7870724)

    Published 2019
    “…Molecular studies revealed that miR-184-decreased phosphorylation status of known DNA damage repair sensors of the ATR/ATM pathways and induced persistent formation of γH2AX foci depend on targeting SLC7A5, leading to persistent DNA damage. …”
  6. 14586

    Image_3_Tumor Suppressor miR-184 Enhances Chemosensitivity by Directly Inhibiting SLC7A5 in Retinoblastoma.TIF by Tian-Geng He (7870724)

    Published 2019
    “…Molecular studies revealed that miR-184-decreased phosphorylation status of known DNA damage repair sensors of the ATR/ATM pathways and induced persistent formation of γH2AX foci depend on targeting SLC7A5, leading to persistent DNA damage. …”
  7. 14587

    Image_1_Tumor Suppressor miR-184 Enhances Chemosensitivity by Directly Inhibiting SLC7A5 in Retinoblastoma.TIF by Tian-Geng He (7870724)

    Published 2019
    “…Molecular studies revealed that miR-184-decreased phosphorylation status of known DNA damage repair sensors of the ATR/ATM pathways and induced persistent formation of γH2AX foci depend on targeting SLC7A5, leading to persistent DNA damage. …”
  8. 14588

    Image_1_Tumor Suppressor miR-184 Enhances Chemosensitivity by Directly Inhibiting SLC7A5 in Retinoblastoma.TIF by Tian-Geng He (7870724)

    Published 2019
    “…Molecular studies revealed that miR-184-decreased phosphorylation status of known DNA damage repair sensors of the ATR/ATM pathways and induced persistent formation of γH2AX foci depend on targeting SLC7A5, leading to persistent DNA damage. …”
  9. 14589

    Image_2_Tumor Suppressor miR-184 Enhances Chemosensitivity by Directly Inhibiting SLC7A5 in Retinoblastoma.TIF by Tian-Geng He (7870724)

    Published 2019
    “…Molecular studies revealed that miR-184-decreased phosphorylation status of known DNA damage repair sensors of the ATR/ATM pathways and induced persistent formation of γH2AX foci depend on targeting SLC7A5, leading to persistent DNA damage. …”
  10. 14590

    Flies use sweet-sensing Gr5a<sup>+</sup> GRNs to detect the concentration of sucrose in the food and tune the level of aggression accordingly. by Rod S. Lim (622045)

    Published 2014
    “…(i) Inhibiting the sugar-sensing Gr5a<sup>+</sup> GRNs by expressing TNT decreases sucrose sensitivity (n = 3 and 3 for both genotypes. …”
  11. 14591

    Dynamin inhibition affects secretion of other proteins. by Maaike Kockx (154125)

    Published 2014
    “…Total protein secreted (A) was determined by TCA-precipitation of [<sup>35</sup>S]-labelled proteins from medium of experiments described in Fig. 4. …”
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  19. 14599

    Proximity of V<sub>κ</sub> genes to E2a binding sites correlates with frequencies of long-range interactions. by Ralph Stadhouders (523996)

    Published 2014
    “…<p>(A) Schematic representation of the <i>Igκ</i> locus, showing the location of all functional V<sub>κ</sub> (grey, top), J<sub>κ</sub> and C<sub>κ</sub> gene segments, and the κ regulatory elements Sis, iEκ, and 3′Eκ. …”
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