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We found that Fn promoted internalization through clathrin-mediated endocytosis and that this pathway resulted in more efficient transfection than caveolae-mediated endocytosis and macropinocytosis.
Inhibiting this pathway resulted in a decreased number of apoptotic cells [34].
In the case of ATC, this pathway resulted dysregulated, reaching significance level in two out of three experimental datasets.
The presence of cyanide (an inhibitor of this pathway) resulted in a complete block of spore germination.
Inhibition of this pathway resulted in the suppression of MMP2, MMP7, and MMP9 expression to stop A549 metastasis.
Mutations in this pathway resulted in a considerable degree of randomization of neurite orientation, which was associated with characteristic changes in the peristaltic activity of the intestine.
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The PI3K pathway has several important nodes that play a crucial role in this pathway, resulting in a diversity of functional outcomes.
It makes sense then that perturbations in this pathway resulting from intrinsic or extrinsic insults would result in inhibition of further growth and promotion of repair and maintenance.
Our results therefore suggest that decreases in NADPH availability limit the flux through this pathway, resulting in low levels of sulfur-containing compound production and a global derepression of the sulfate assimilation pathway.
Clearly, there is an interaction between tensile strain and Wnt3A that promotes β-catenin translocation enhancing the activation of this pathway resulting in the additive/synergistic effects on downstream targets, for example, Lef1, MMPs.
The NOX system can be activated through several signaling pathways, including mitogen-activated protein kinases (MAPKs), protein kinase C (PKC), and Ca2+ (Myhre et al. 2009); thus, it is likely that different PCBs may stimulate different aspects of this pathway, resulting in final assembly of an active enzyme.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com