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Full Time Crispr Genome Editing Jobs (NOW HIRING)

Sr Research Scientist 1

Madison, WI · On-site

$99K - $126K/yr

A major focus of our work over the last decade has been pairing CRISPR genome editing with bioluminescent and fluorescent reporter tags to track the dynamics of endogenously expressed proteins in ...

Sr Research Scientist 1

Madison, WI · On-site

$99K - $126K/yr

A major focus of our work over the last decade has been pairing CRISPR genome editing with ... UNAVAILABLEEmployment Type: FULL_TIME

Apply CRISPR/Cas genome editing, transposase systems, and related genome engineering approaches to generate genetic modifications * Design and implement genome editing strategies in human pluripotent ...

The project integrates mouse and iPSC models, CRISPR genome editing, molecular biology, flow cytometry, and single-cell multi-omics to dissect disease mechanisms. We are committed to mentoring the ...

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Full Time Crispr Genome Editing information

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How much do full time crispr genome editing jobs pay per hour?

As of Sep 11, 2026, the average hourly pay for full time crispr genome editing in the United States is $31.60, according to ZipRecruiter salary data. Most workers in this role earn between $21.39 and $39.66 per hour, depending on experience, location, and employer.

What is full time CRISPR genome editing?

A Full Time CRISPR Genome Editing job typically involves using CRISPR-Cas9 and related genome editing technologies to modify DNA in living organisms. Professionals in this role may design and execute experiments, analyze genetic data, and contribute to research in fields like biotechnology, agriculture, or medicine. The work is laboratory-based and often requires a background in molecular biology, genetics, or related disciplines. These positions are usually found in research institutions, biotech companies, or academic labs.

What are the key skills and qualifications needed to thrive as a full time CRISPR genome editing scientist?

To excel in a Full Time CRISPR Genome Editing role, you need a solid background in molecular biology, genetics, and gene editing techniques, typically supported by a relevant advanced degree (such as a Ph.D. or M.S.). Proficiency with CRISPR-Cas9 systems, next-generation sequencing platforms, and bioinformatics tools is essential. Strong analytical thinking, attention to detail, and effective communication skills help you design experiments, interpret data, and collaborate with research teams. These competencies are crucial for driving scientific innovation, ensuring experimental accuracy, and achieving successful genome editing outcomes.

What are some common challenges faced by professionals working in full time CRISPR genome editing roles?

Professionals in full-time CRISPR genome editing roles often encounter challenges such as optimizing editing efficiency, minimizing off-target effects, and maintaining strict compliance with ethical and safety guidelines. These roles usually require close collaboration with multidisciplinary teams, including bioinformaticians, molecular biologists, and regulatory specialists, to ensure successful project outcomes. Staying up-to-date with rapidly evolving technologies and troubleshooting experimental setbacks are also integral parts of the job, making adaptability and continuous learning essential traits for success.

What is the difference between Full Time Crispr Genome Editing vs Full Time Molecular Biologist?

AspectFull Time Crispr Genome EditingFull Time Molecular Biologist
Required CredentialsTypically requires a degree in genetics, molecular biology, or related fields; experience with CRISPR technologyRequires a degree in biology, biochemistry, or related fields; broad molecular biology skills
Work EnvironmentLaboratories focused on gene editing, biotech companies, research institutionsResearch labs, biotech firms, academic institutions
Employer & Industry UsagePrimarily in biotech, pharmaceutical, and research sectors specializing in gene editingWidely used across research, healthcare, and biotech industries

Full Time Crispr Genome Editing roles focus specifically on gene editing techniques using CRISPR technology, often requiring specialized skills and experience. Full Time Molecular Biologist positions have a broader scope, involving various molecular techniques beyond CRISPR. Both roles are essential in biotech and research settings, but Crispr Genome Editing positions are more specialized in gene editing applications.

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Infographic showing various Full Time Crispr Genome Editing job openings in the United States as of September 2026, with employment types broken down into 2% Internship, 77% Full Time, 17% Part Time, 1% Temporary, and 3% Contract. Highlights an 68% Physical, 5% Hybrid, and 27% Remote job distribution, with an average salary of $65,728 per year, or $31.6 per hour.

Postdoctoral Scientist/Assistant Staff Scientist - Nath Lab

Oklahoma City, OK • On-site

Oklahoma Medical Research Foundation
Scientific Research and Development Services • 201 - 500 employees

Full-time

Medical, Dental, Vision, Retirement, PTO

Re-posted 19 days ago


Job description

Molecular Immunology and Functional Genomics of Lupus
The Nath Lab at the Oklahoma Medical Research Foundation (OMRF) seeks an outstanding Postdoctoral Scientist or Assistant Staff Scientist to join our multidisciplinary research team investigating the molecular mechanisms through which non-coding genetic variants identified by genome-wide association studies (GWAS) contribute to Systemic Lupus Erythematosus (SLE) and other autoimmune diseases.

This position is ideal for a highly motivated molecular biologist with strong expertise in immunology who is interested in applying cutting-edge genomic technologies and artificial intelligence to elucidate the functional consequences of disease-associated genetic variation.

Research Program
Genome-wide association studies have identified hundreds of genetic loci associated with SLE and other autoimmune diseases, and the vast majority of risk variants are located in non-coding regions of the genome. The central challenge is determining how these variants influence gene regulation and immune cell function.

Our laboratory integrates computational genomics, molecular biology, functional genomics, and immunology to elucidate the molecular mechanisms underlying disease-associated variants. We investigate multiple regulatory mechanisms, including: enhancer and promoter activity, alternative RNA splicing (sQTLs), gene expression regulation (eQTLs), chromatin accessibility and epigenetic regulation, and three-dimensional chromatin interactions.

Responsibilities
The successful candidate will:

  • Functionally characterize non-coding GWAS variants associated with SLE and related autoimmune diseases.
  • Design and perform molecular biology experiments to determine how regulatory variants alter gene function.
  • Perform assays including:
    • Reporter gene (luciferase) assays
    • Minigene splicing assays
    • CRISPR/Cas9 genome editing (knockout, knock-in, CRISPRi, CRISPRa)
    • Gene expression analyses (RT-qPCR, RNA-seq)
    • Protein expression analyses (Western blot)
    • Chromatin and regulatory assays
  • Culture and manipulate human immune cell lines and primary immune cells.
  • Perform immunological assays including flow cytometry, T-cell activation, cytokine profiling, proliferation, apoptosis, and related functional studies.
  • Collaborate with computational biologists to integrate GWAS, functional genomics, and AI-based genomic predictions.
  • Analyze experimental data and contribute to publications and grant applications.

Minimum Qualifications

  • Ph.D. in a biological science, chemistry, physics or other relevant area, M.D., or equivalent.

The successful candidate should demonstrate:

  • Strong experimental skills in molecular biology
  • Excellent written and verbal communication skills
  • Ability to work independently and collaboratively
  • Strong publication record appropriate for career stage

Preferred Qualifications

Applicants should have expertise in several of the following areas:

  • Molecular biology
  • Immunology
  • Functional genomics
  • Human genetics
  • CRISPR genome editing
  • Cell culture of mammalian and immune cells
  • RNA biology and gene regulation
  • Flow cytometry
  • Next-generation sequencing
  • Bioinformatics or computational biology (preferred but not required)

Programming experience in R or Python is advantageous.

OMRF Overview
Founded in 1946, the Oklahoma Medical Research Foundation (OMRF) is among the nation’s oldest, most respected independent, nonprofit biomedical research institutes. OMRF is dedicated to understanding and developing more effective treatments for human diseases, focusing on critical research areas such as Alzheimer’s disease, cancer, lupus, multiple sclerosis, and cardiovascular disease. OMRF follows an innovative cross-disciplinary approach to medical research and ranks among the nation’s leaders in patents per scientist.

Located in Oklahoma City, a city that offers a dynamic and flourishing downtown area, with low cost of living, short commute times and a diversified economy, OMRF has been voted one of the Top Workplaces since the inception of the award. This achievement has been accomplished thanks to OMRF individuals who share a unified understanding that our excellence can only be fully realized with a collective commitment to our mission, “. . . so that more may live longer, healthier lives.” Successful candidates will demonstrate commitment to this mission.

OMRF Benefits
We offer competitive salaries and comprehensive benefits to full-time employees including medical, dental, and vision insurance, minimum 8% company retirement contribution, vacation and sick leave, and paid holidays. All employees have access to our onsite café, free onsite fitness center with access to personal trainer, free parking and much more! Relocation assistance available for those located 50 miles outside of Oklahoma City metro. Learn more about our benefits here.

OMRF is an Equal Opportunity Employer.