Search alternatives:
greater decrease » greater increase (Expand Search), greater increases (Expand Search), rate decreased (Expand Search)
gper decrease » teer decrease (Expand Search), step decrease (Expand Search), we decrease (Expand Search)
nn decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
a greater » _ greater (Expand Search), far greater (Expand Search)
a marked » a marker (Expand Search), _ marked (Expand Search), a market (Expand Search)
increase » increased (Expand Search)
greater decrease » greater increase (Expand Search), greater increases (Expand Search), rate decreased (Expand Search)
gper decrease » teer decrease (Expand Search), step decrease (Expand Search), we decrease (Expand Search)
nn decrease » _ decrease (Expand Search), a decrease (Expand Search), mean decrease (Expand Search)
a greater » _ greater (Expand Search), far greater (Expand Search)
a marked » a marker (Expand Search), _ marked (Expand Search), a market (Expand Search)
increase » increased (Expand Search)
-
1
-
2
-
3
Withdrawal of Type I JAKinibs increased STAT phosphorylation, a phenomenon present but markedly lower in Type II JAKinibs.
Published 2025“…(A) pJAK2 peaked at time zero after exposure to baricitinib and ruxolitinib and then decreases. …”
-
4
Image_3_Soy Isoflavones Accelerate Glial Cell Migration via GPER-Mediated Signal Transduction Pathway.jpeg
Published 2020“…These findings indicate that soybean isoflavones exert their action via the GPER to activate the PI3K/FAK/Akt/RhoA/Rac1/Cdc42 signaling pathway, resulting in increased glial cell migration. …”
-
5
Image_1_Soy Isoflavones Accelerate Glial Cell Migration via GPER-Mediated Signal Transduction Pathway.jpeg
Published 2020“…These findings indicate that soybean isoflavones exert their action via the GPER to activate the PI3K/FAK/Akt/RhoA/Rac1/Cdc42 signaling pathway, resulting in increased glial cell migration. …”
-
6
Image_2_Soy Isoflavones Accelerate Glial Cell Migration via GPER-Mediated Signal Transduction Pathway.jpeg
Published 2020“…These findings indicate that soybean isoflavones exert their action via the GPER to activate the PI3K/FAK/Akt/RhoA/Rac1/Cdc42 signaling pathway, resulting in increased glial cell migration. …”
-
7
Image_4_Soy Isoflavones Accelerate Glial Cell Migration via GPER-Mediated Signal Transduction Pathway.jpeg
Published 2020“…These findings indicate that soybean isoflavones exert their action via the GPER to activate the PI3K/FAK/Akt/RhoA/Rac1/Cdc42 signaling pathway, resulting in increased glial cell migration. …”
-
8
-
9
ALS patients’ tissues exhibit increased phosphorylation of MARK2.
Published 2021“…<p>(<b>A</b>) Representative immunoblot analyses of PKCδ, MARK2-<sup>595</sup>T, and eIF2α in the spinal cord tissues from ALS patients and non-ALS controls, indicating that increased phosphorylation of PKCδ-<sup>505</sup>T, MARK2-<sup>595</sup>T, and eIF2α-<sup>51</sup>S is a general phenotype in patient tissues. …”
-
10
Deletion of Hhp2 markedly increased Sre1 activity.
Published 2020“…<p>Deletion of <i>hhp2</i><sup>+</sup> gene markedly increased Sre1 activity in the presence/absence of CLZ (2 μg/ml to 8 μg/ml) (A), TER (2 μg/ml to 8 μg/ml) (B) or CoCl<sub>2</sub> (0.08 mM to 0.32 mM) (C). …”
-
11
-
12
DataSheet_1_Soy Isoflavones Accelerate Glial Cell Migration via GPER-Mediated Signal Transduction Pathway.pdf
Published 2020“…These findings indicate that soybean isoflavones exert their action via the GPER to activate the PI3K/FAK/Akt/RhoA/Rac1/Cdc42 signaling pathway, resulting in increased glial cell migration. …”
-
13
Brain region that showed a greater decrease of alpha band oscillatory brain activity under the stress compared with the control condition.
Published 2020“…<p>Brain region that showed a greater decrease of alpha band oscillatory brain activity under the stress compared with the control condition.…”
-
14
-
15
-
16
-
17
-
18
-
19
-
20
Long-range chromosomal interactions increase and mark repressed gene expression during adipogenesis
Published 2022“…In summary, we identify LRIs that mark repressed regions of the genome, and these interactions increase across adipogenesis, pinpointing developmental regions that need to be repressed in a cell-type specific way for adipogenesis to proceed.…”