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strongly encouraged to apply. Lab overview: The Hinshaw Lab uses cryo-electron microscopy, chemical biology, and genetics to study and manipulate the protein assemblies that govern chromosome segregation
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RNA extraction, quantitative PCR, ELISA, microscopy, flow-cytometry, immunostaining, and previous experience with animals (i.e. mouse handling, organ collection). The candidate will be responsible
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relevant analytical techniques (e.g., flow cytometry, high-throughput sequencing (NGS), fluorescence microscopy, qPCR). Proficiency in standard molecular biology techniques (e.g., PCR, Gibson Assembly
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: bacteriology, fluorescence microscopy, electron microscopy, antibiotic assays, biochemical purifications, biochemical assays such as binding assays and protein gel electrophoresis, as well as analytical methods
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experimental approaches for structural biology (e.g., cryo-electron microscopy/tomography, X-ray crystallography) is a significant plus. Experience with antibody engineering (e.g., expression, stability, binding
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, FACS/flow-cytometry analysis, genetic manipulation of cells (e.g., CRISPR), and microscopy. Candidates with experience in computational analysis are encouraged to apply. The position is available
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; (b) chemistry; (c) mathematics. The physics-based subgroup focuses on a wide spectrum of issues ranging from: (i) novel adaptations of aberration-corrected modern electron microscopy and spectroscopy
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and rigor. Excellent written and verbal communication skills. Experience with molecular/cell biology techniques such as cell culture, immunofluorescence staining, RNA sequencing, confocal microscopy
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resources strongly supports these efforts, including genomics, lipidomics, metabolomics, retinoid analytical cores, microscopy, animal facilities, and biostatistical support cores. Responsibilities • Design
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confocal microscopy. · Ability to design, execute, and interpret independent experiments. · Excellent written and oral communication skills in English, with a strong publication record commensurate with