Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 month ago
fluorescence studies on the DNA repair protein GEN1 interactions with different structured DNA substrates. The applicant will be expected to conduct single molecule experiments and analyze data on GEN1-DNA
-
: qPCR / RT-qPCR Western blotting Flow cytometry Fluorescence Microscopy Mouse work (including immune and cardiometabolic models) Analyze and interpret genetic and genomic data, including: GWAS and
-
fluorescent confocal microscopy. The technician will maintain lab equipment and provide technical assistance and training to students in the lab. Position Information Examination of cellular organization and
-
related discipline. Prior experience with single-molecule techniques (AFM, Optical Tweezers, Magnetic Tweezers, or single-molecule fluorescence) is highly desirable but not mandatory. Strong proficiency in
-
The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | about 2 months ago
researcher and collaborators, the student will combine mammalian cell biology, molecular biology, quantitative fluorescence imaging, and biochemistry to uncover how CtBP polymerization regulates
-
fundamental problem: techniques that offer rich molecular-level information, such as fluorescence microscopy, require chemical labelling and struggle with long-term or non-invasive imaging, while label-free
-
, bacterial and mammalian cell cultures, flow cytometry, and fluorescence microscopy. Participate in BSL-3 laboratory operations, including mouse infection models and tissue processing, adhering strictly
-
containers clean. Change incandescent and fluorescent lights and clean lighting fixtures as directed. Wash walls, scrub floors with a heavy-duty machine, strip hard floors, apply finish, pick up water with wet
-
, intracellular molecular networks, and molecular messengers. This is accomplished by robust quantification of these subsystems by Quantitative Fluorescence Microscopy, PCR analysis, gel electrophoresis, Western
-
by lentiviral and genome editing (e.g. CRISPR) methods Conduct qualitative and advanced quantitative fluorescence microscopy analyses Isolate proteins and assemblies from cancer cells for proteomic