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of this project is comprehensive analysis of the known and uncharacterized RNA structures present in mRNA molecule encoding one of the most important proteins, tumor suppressor p53. These structures are directly
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determine whether effector proteins from the kiwifruit canker pathogen Pseudomonas syringae pv. actinidiae (Psa) target and modulate EXO70 proteins to enhance host susceptibility. If you are an excellent
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inaccessible regimes. Work in the lab combines optics, protein engineering, chemistry, electrophysiology, simulation, and theory. We work at the levels of individual molecules, single cells, and whole
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2 Maximum Number of References Allowed 3 Keywords optics, protein engineering, chemistry, electrophysiology, simulation, theory, physics
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on electrode chemical modifications and be able to work on computational modelling of the electrode/protein bioiterface. We are seeking highly motivated postdoctoral candidates willing to fully commit
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bioindication. The candidate must be skilled in solving 3D protein structures by X-ray crystallography, heterologous expression and protein purification, as well as other biophysical techniques. Prior experience
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in mammalian cell culture and cell-based functional assays, Enzyme-Linked Immunosorbent Assays and protein biochemistry. The position is fixed for 4 years and is open for appointment from 1st
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proteins remodels the eukaryotic cytoskeleton, including during cancer and viral pathogenic processes. The Atherton group is based in Randall Centre for Cell & Molecular Biophysics , home to a diverse array
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Position Description A Postdoc Fellow position is available at The Yeh Laboratory at CSHL Cancer Center (http://yehlab.labsites.cshl.edu ). We are recruiting new members passionate about drug
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capture methods lack sensitivity and often provide limited molecular information. In this project we will explore molecularly imprinted nanoparticle (nanoMIP) protein binders and mRNA and DNA probes