City of Hope·Duarte, California
Lead independent research projects investigating the molecular mechanisms of circadian clock regulation in skeletal muscle physiology and regeneration. Design and execute mechanistic studies using genetically engineered mouse models and analyze large-scale genomic datasets.
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Please note, the purpose of this posting is to recruit for on-going and future positions.
Pay Rate: $34.25 – $37.82 per hour Join the forefront of groundbreaking research at the Beckman Research Institute of City of Hope, where we're changing lives and making a real difference in the fight against cancer, diabetes, and other life-threatening illnesses.
Our dedicated and compassionate faculty and staff are driven by a common mission: Contribute to innovative approaches in predicting, preventing, and curing diseases, shaping the future of medicine through cutting-edge research.
We are seeking a highly motivated and creative Postdoctoral Fellow to join our multidisciplinary research program investigating the molecular mechanisms by which the circadian clock regulates skeletal muscle physiology, regeneration, metabolism, and muscular dystrophy.
Our laboratory integrates molecular biology, genomics, pharmacology, mouse genetics, and physiology to identify fundamental mechanisms controlling muscle stem cell function and to develop innovative therapeutic strategies for muscle diseases.
You will lead independent research projects while working collaboratively within a highly interactive laboratory environment.
Current research areas include: · Circadian regulation of skeletal muscle regeneration and stem cell biology · Transcriptional and epigenetic mechanisms governing tissue remodeling · Nuclear receptor biology and gene regulatory networks · Drug discovery and development of small-molecule modulators of circadian signaling · Mechanisms underlying Duchenne muscular dystrophy and related muscle diseases · In vivo evaluation of novel therapeutic approaches using mouse models Our laboratory values scientific curiosity, integrity, collaboration, and mentorship.
We seek candidates who enjoy working in a team-oriented environment, openly sharing ideas and expertise while maintaining scientific rigor.
Successful applicants should demonstrate: · Strong interpersonal and communication skills. · Enthusiasm for interdisciplinary and collaborative research. · Willingness to mentor junior trainees and contribute to a positive laboratory culture. · Commitment to reproducible and rigorous science. · Ability to work productively with collaborators across diverse scientific disciplines, including molecular biology, genomics, physiology, computational biology, medicinal chemistry, and translational medicine.
This position provides outstanding opportunities for scientific independence, professional development, collaboration with leading investigators, and publication in high-impact journals.
Candidates interested in pursuing independent academic or biotechnology careers are especially encouraged to apply.
As a successful candidate, you will: · Design, execute, and interpret mechanistic studies addressing fundamental questions in circadian biology and skeletal muscle regeneration. · Perform molecular, cellular, and in vivo experiments using genetically engineered mouse models and disease models of muscular dystrophy. · Apply genomic and biochemical approaches to define transcriptional regulatory mechanisms controlling muscle stem cell function. · Develop and evaluate pharmacological strategies targeting circadian pathways for muscle repair and disease treatment. · Analyze large-scale datasets, including RNA-seq, ATAC-seq, ChIP-seq, and single-cell or single-nucleus sequencing data. · Present research findings at laboratory meetings, scientific conferences, and national/international meetings. · Prepare manuscripts for publication in leading scientific journals and contribute to grant applications. · Mentor graduate students and junior trainees while fostering an inclusive and collaborative laboratory culture.
Requires a Ph.D. in Pharmacology, Molecular Biology, Physiology, or a related biomedical science with a strong publication record. Expertise in skeletal muscle biology, gene regulation, or mouse genetics is essential.
Market context
California research institutions and biotech employers commonly seek postdoctoral fellows in skeletal muscle biology, especially where gene regulation, mouse genetics, and related biomedical methods support translational work. These roles are competitive because a Ph.D., a strong publication record, and demonstrated technical depth are often expected, and the hourly range of USD 34.25–37.82 reflects that specialization. Review the AI-summarized requirements and benefits here to quickly compare fit before applying, since they are distilled from the original job description and save research time.