Eps15EGF (Epidermal Growth Factor) Receptor Pathway Substrate Clone #15
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In order to compare the performance of two geofoam panels and one geofoam panel in the reduction of forces on the wall, two geofoam panels with 15 kg/[m.sup.3] density (EPS15) and a relative thickness of 0.4H (thickness of each panel is 0.2 H) at distances of 50, 100, 150, and 200 cm were modelled and compared with the performance of one geofoam panel with a relative thickness of 0.4 H.
Figure 13 indicates the effect of geofoam, in the cases of using EPS15, EPS20, and EPS25, on the overturning safety factor of yielding retaining walls.
show a reduction of forces on yielding and nonyielding retaining walls in the cases of using EPS15, EPS20, and EPS25, respectively.
Caption: Figure 3: Lateral earth pressure distribution on the cantilever retaining walls: (a, b, and c) yielding and nonyielding conditions without using geofoam and (d, e, and f) yielding condition by using EPS15. (a) H = 3 m.
Caption: Figure 14: Influence of the EPS15 thickness ratio on reduction of lateral pressure.
In the present study, we observed that ROP distinctly increased the expression of EPS15. Considering the role of EPS15 and PI3K/Akt in neuronal survival, our observation is likely to further our understanding of the role of ROP in PD therapy.
A regulated interaction with the UIM protein Eps15 implicates parkin in EGF receptor trafficking and PI(3)K-Akt signalling.
CALM3, EPS15, RIPK5, and PIK3C2B underwent TaqMan real-time PCR in SH-SY5Y cells.
A, CALM3, EPS15, RIPK5, and PIK3C2B underwent TaqMan[R] real-time PCR in HeLa cells.