Characteristics of plasma membrane Video
Fluid mosaic model - Cells - Biology - FuseSchoolCharacteristics of plasma membrane - not
The Inter active Fly Maternally transcribed genes. This study used in vivo fluorescence imaging to characterize the organization and diffusional properties of the PM in the early embryonic syncytium. Before cellularization, the PM is polarized into discrete domains having epithelial-like characteristics. One domain resides above individual nuclei and has apical-like characteristics, while the other domain is lateral to nuclei and contains markers associated with basolateral membranes and junctions. Pulse-chase photoconversion experiments show that molecules can diffuse within each domain but do not exchange between PM regions above adjacent nuclei. Drug-induced F-actin depolymerization disrupted both the apicobasal-like polarity and the diffusion barriers within the syncytial PM. These events correlated with perturbations in the spatial pattern of dorsoventral Toll signaling. It is proposed that epithelial-like properties and an intact F-actin network compartmentalize the PM and shape morphogen gradients in the syncytial embryo Mavrakis, To study the organization of the PM and the spatiotemporal dynamics of membrane components in living Drosophila embryos, transgenic animals were generated expressing different PM proteins tagged with Cerulean or Venus fluorescent proteins. The proteins were selected because they have different modes of membrane attachment and potentially different PM distributions. characteristics of plasma membraneThe effect of the functional electrode layers involved in the structure of a solid oxide fuel cell on its efficiency is studied.
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It is shown that the inclusion of a thin nm thick cathode functional layer into the structure of the membrane—electrode assembly enhances the fuel cell efficiency by reducing the polarization losses on electrodes. The simultaneous presence of anode and cathode functional layers is found to be unwelcome because gives rise to diffusion limitations on the anode.
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Will, J. Huang, H. Soloviev, A. Article Google Scholar. Qiu, L. Samat, A. Sol-Gel Sci. Zhao, F. Sato, K. Power Sources, vol. Dieterle, L. Energy Mater. Yamaguchi, T. Hydrogen Energy, vol.
Chrzan, A. Acta, vol. Chen, K. Solovyev, A. Choi, H. Yoon, J. Shin, S. Smolyanskiy, E. Series: J. Physics, vol. Hildenbrand, N. Noh, H. Sochugov, N. Chen, D. Okada, S.]
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