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Field
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-targeting technologies such as siRNA and antisense oligonucleotides. Experience with eCLIP, iCLIP, CLIP-seq, or related RNA–protein interaction assays is highly desirable but not required. Job Description
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numerical simulations to understand molecular mechanisms of epigenetic regulation by the Polycomb and Trithorax group proteins. Project description Chromosomal rearrangements of the human MLL1 gene
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protein expression and purification, biochemical screening assay development, computational structural modeling, cell-based antiviral validation studies, and exposure to preclinical small-animal research
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proof-of-concept studies in developing next-generation prophylactics. What will I be doing and why should I apply? Under a mentor's guidance, you will engage in research that bridges computational protein
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in structural biology are providing new insights into the structures of proteins responsible for food taste and odor perception. The project aims to use the recently solved structure of olfactory
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closely related quantitative field in hand by the start of the appointment. ● Demonstrated expertise in molecular dynamics simulation and enhanced-sampling techniques (e.g., Gaussian accelerated MD/GaMD
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application consists of: An application Transcript(s) – For this opportunity, an unofficial transcript or copy of the student academic records printed by the applicant or by academic advisors from internal
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postdoctoral researcher will develop and apply advanced simulation techniques, and data-driven approaches to explore complex biophysical phenomena at the cell membrane. This role provides a platform for
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are focused on investigating the roles of a G-protein signaling and cell polarity in pancreatic cancer and pancreatitis. Our lab previously demonstrated that pancreas-specific deletion of the G-protein, Ga13
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, alternative protein, biomanufacturing and other emerging topics that shape the future of biotechnology and circular bioeconomy. The relevant research techniques include aseptic cell cultivation, bioreactor