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We describe a new yeast model system focused on the initial stages of Aβ42 oligomerization.
In this study, we present a yeast model system focused on the initial steps of Aβ42 oligomerization.
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We consider a region of tissue actively undergoing angiogenesis with numerous sprouts projecting towards a distant VEGF source, e.g. a tumor; our model system focuses on one of those sprouts, to capture the behavior of proteases and VEGF around it.
Following our successful proof of concept studies for the combined dithiomaleimide PABC linker strategy on a small molecule model system, we focused our attention on developing a linker-drug conjugate that would be suitable for conjugation to an antibody fragment.
Studies of DNA replication, both in eukaryotic and in simpler prokaryotic model systems, are focused on understanding the enzymatic activities such as polymerases, helicases, primases and topoisomerases required for replication; the firing of replication origins and their coordination with the cell cycle; and the processes of chromosome segregation and cytokinesis.
Here, we have investigated the molecular mechanism underlying the generation of such anti-spiral waves in simple glycolytic model systems which focus on the allosteric activation of the glycolytic enzyme phosphofructokinase (PFK).
So far, most patient and model system studies have focused on P MRS. Within the P spectrum, the three nucleoside triphosphate (NTP) peaks, composed primarily of ATP, together with the inorganic phosphate (Pi) and phosphocreatine peaks, are indicative of energetic status.
Despite paying attention to management information needs, the information systems were modelled upon the epidemiological surveillance system, focusing on a single disease (e.g. diarrhoeal disease, or acute respiratory disease) or on a group of diseases (e.g. the Expanded Programme on Immunization (EPI).
Figure 1 details the model of the SDMA FBMC-OQAM system, focusing on antenna N T at the base station (n T =1,…,N T ), on receiver N R (n R =1,…,N R ), and on subchannel k and its two adjacent subchannels k−1 and k+1 (k+1M/2,…,M/2−1).
KiPar [ 14], an information retrieval system, focuses on kinetic modeling of metabolic pathways using a rule-based approach.
The results for this model system suggested that focusing on specific complexes in other compartments could yield interesting results.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com