1

Mutagenesis Jobs (NOW HIRING)

Perform structure-function analysis through site-directed mutagenesis to optimize protein properties * Discover and clone novel channelrhodopsins and fluorescent biosensors from genomic and ...

Showing results 21-40

Mutagenesis information

What are the key skills and qualifications needed to thrive as a mutagenesis scientist, and why are they important?

To thrive as a Mutagenesis Scientist, you need a strong background in molecular biology, genetics, and laboratory techniques, typically supported by an advanced degree in biological sciences. Experience with CRISPR, site-directed mutagenesis kits, PCR, and DNA sequencing platforms is essential. Attention to detail, critical thinking, and effective teamwork are valuable soft skills in this role. These skills ensure accurate genetic modifications, reliable experimental results, and successful collaboration on research projects.

What is the difference between Mutagenesis vs Genetic Engineer?

AspectMutagenesisGenetic Engineer
Required CredentialsLaboratory skills, knowledge of molecular biology, often a bachelor's or master's degreeAdvanced degrees (Master's or PhD), expertise in genetic modification techniques
Work EnvironmentResearch labs, biotech companies, pharmaceutical labsResearch institutions, biotech firms, pharmaceutical companies
Industry UsageUsed for creating genetic variations, studying mutationsDesigning and implementing genetic modifications in organisms
Common Search/ComparisonMutagenesis vs Genetic Engineer

Mutagenesis involves inducing mutations to study gene functions or create genetic diversity, often using chemical or physical agents. Genetic engineers design and implement specific genetic modifications using advanced techniques like CRISPR. While mutagenesis is more about random mutation induction, genetic engineering focuses on precise gene editing. Both roles are essential in biotechnology and share overlapping skills, but differ in complexity and purpose.

What are some typical challenges faced by scientists working in mutagenesis, and how can they be addressed?

Scientists specializing in mutagenesis often encounter challenges such as ensuring the specificity of induced mutations and accurately screening for desired genetic changes. Maintaining the viability of organisms while introducing mutations and avoiding off-target effects are also common concerns. These issues can be addressed by carefully selecting mutagenic agents, optimizing experimental protocols, and using advanced screening techniques such as next-generation sequencing. Collaboration with bioinformatics specialists and molecular biologists is also essential to interpret results and refine approaches.

What is mutagenesis?

Mutagenesis is a process by which the genetic information of an organism is changed in a stable manner, resulting in a mutation. This can occur naturally or be induced artificially in a laboratory, often using chemicals, radiation, or genetic engineering techniques. Scientists use mutagenesis to study gene function, create genetic diversity, or develop organisms with desirable traits. In research, mutagenesis helps identify the roles of specific genes and understand the effects of genetic changes.
More about Mutagenesis jobs
Infographic showing various Mutagenesis job openings in the United States as of August 2026, with employment types broken down into 100% Full Time. Highlights an 100% In-person job distribution.

Neuroscience (Associate Professor)

Myana

Houston, TX โ€ข On-site

$115 - $190/hr

Other

Posted 8 days ago


Job description

Neuroscience (Associate Professor)

Division: Neuroscience

Work Arrangement:

Location: Houston, TX

Salary Range:

FLSA Status: Exempt

Work Schedule:

Summary

Baylor College of Medicine (www.bcm.edu) is recognized as one of the nation's premier academic health science centers and is known for excellence in education, research, and healthcare and community service. Located in the heart of the world's largest medical center (Texas Medical Center, Houston, TX), Baylor is affiliated with multiple educational, healthcare and research affiliates (Baylor Affiliates). An Associate Professor position (non-tenure track) is available in the St-Pierre lab in the Department of Neuroscience at Baylor College of Medicine in Houston, TX. The applicant will characterize and apply novel light-responsive proteins, including genetically encoded voltage indicators (GEVIs) and optogenetic silencers such as kalium channelrhodopsins (KCRs) and anion channelrhodopsins (ACRs), to advance tools for imaging and controlling neural activity. For examples of our recent work, see our publications in Cell and Nature Neuroscience (https://doi.org/10.1016/j.cell.2022.07.013; https://doi.org/10.1038/s41593-022-01094-6). Characterize light-gated ion channels (including KCRs and ACRs) using patch clamp electrophysiology in HEK293 cells and cultured neurons, assessing photocurrent amplitude, kinetics, ion selectivity, and spectral sensitivity.

Responsibilities
  • Evaluate GEVI performance in mammalian cell culture and brain slice preparations using fluorescence and two-photon microscopy
  • Perform structure-function analysis through site-directed mutagenesis to optimize protein properties
  • Discover and clone novel channelrhodopsins and fluorescent biosensors from genomic and metagenomic sources
  • Maintain and troubleshoot electrophysiology rigs and optical imaging systems
  • Analyze data using commercial software and custom pipelines
  • Mentor and train junior lab members in techniques and experimental design
  • Present research findings in lab meetings and at national or international conferences
  • Take a leading role in writing grants and manuscripts related to their primary projects, and contribute, as appropriate, to other grants and manuscripts from the lab.

Baylor College of Medicine is an Equal Opportunity/Affirmative Action/Equal Access Employer.

#J-18808-Ljbffr