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Bioinformatics Engineer Jobs in Ohio (NOW HIRING)

Bioinformatics & Data Integration: Collaborating with computational scientists to leverage omics ... Protein Engineering: Design, optimize, and characterize proteins and biologics using ...

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... bioinformatics, computer science, pharmaceutical sciences, biophysics, chemical biology, biomedical engineering, statistics, data science, or a related field. * Strong background in AI/ML methods ...

Software Developer / Scientist - Research Data Management for FAIRagro Do you want to contribute to ... Then you're in the right place at the Department of Bioinformatics (IBG-4) at the Institute of Bio ...

Document analytical programming code and data processing procedures in accordance with USAFSAM ... Bioinformatics * Or a closely related quantitative discipline approved by USAFSAM/FES. * Minimum ...

Showing results 21-40

Bioinformatics Engineer information

See Ohio salary details

$40.9K

$124.6K

$226.7K

How much do bioinformatics engineer jobs pay per year?

As of Sep 14, 2026, the average yearly pay for bioinformatics engineer in Ohio is $124,592.00, according to ZipRecruiter salary data. Most workers in this role earn between $91,300.00 and $149,300.00 per year, depending on experience, location, and employer.

What is a bioinformatics engineer?

A Bioinformatics Engineer is a professional who combines expertise in computer science, statistics, and biology to develop software tools and algorithms for analyzing biological data. They often work with large datasets such as genomic sequences, protein structures, and clinical information to help scientists make sense of complex biological systems. Their work is essential in fields like genomics, personalized medicine, and drug discovery, where managing and interpreting vast amounts of data is crucial. Bioinformatics Engineers may also collaborate with researchers to design experiments and interpret results, bridging the gap between biology and technology.

What are the key skills and qualifications needed to thrive as a bioinformatics engineer?

To thrive as a Bioinformatics Engineer, you need a strong background in biology, computer science, and statistics, often supported by a degree in bioinformatics or a related field. Experience with programming languages such as Python or R, familiarity with databases, and knowledge of tools like BLAST, Bioconductor, or next-generation sequencing (NGS) analysis platforms are typically required. Strong problem-solving, analytical thinking, and effective communication skills help you collaborate with interdisciplinary teams and convey complex findings. These skills and qualifications are essential for efficiently analyzing biological data, developing robust computational tools, and advancing research in genomics and life sciences.

What are some common challenges faced by bioinformatics engineers when integrating new data sources into existing pipelines?

Bioinformatics Engineers often encounter challenges such as data format inconsistencies, varying quality of datasets, and the need to ensure compatibility with existing analysis pipelines. Integrating new data sources may require custom scripts or tools for parsing and preprocessing, as well as thorough validation to maintain reproducibility and reliability of results. Collaboration with wet-lab scientists and software engineers is essential to clarify data requirements and streamline the integration process.

What is the difference between Bioinformatics Engineer vs Bioinformatics Analyst?

AspectBioinformatics EngineerBioinformatics Analyst
Required CredentialsBachelor's or Master's in Bioinformatics, Computer Science, or related fields; programming skillsBachelor's or Master's in Bioinformatics, Biology, or related fields; data analysis skills
Work EnvironmentResearch labs, biotech companies, pharmaceutical firmsResearch institutions, healthcare organizations, biotech companies
Employer & Industry UsageDevelops tools, pipelines, and software for biological data analysisInterprets data, performs statistical analysis, and reports findings

While both roles require a background in bioinformatics and involve working with biological data, Bioinformatics Engineers focus on developing software and tools, whereas Bioinformatics Analysts primarily analyze and interpret data to support research and decision-making.

What does a bioinformatics engineer do?

A bioinformatics engineer develops and applies computational tools and algorithms to analyze biological data, such as genetic sequences and molecular structures. They often work with programming languages like Python or R, utilize databases, and collaborate with biologists to interpret data for research or medical purposes.

What are the most commonly searched types of Bioinformatics Engineer jobs in Ohio?

The most popular types of Bioinformatics Engineer jobs in Ohio are:

What job categories do people searching Bioinformatics Engineer jobs in Ohio look for?

The top searched job categories for Bioinformatics Engineer jobs in Ohio are:

What cities in Ohio are hiring for Bioinformatics Engineer jobs?

Cities in Ohio with the most Bioinformatics Engineer job openings:

Infographic showing various Bioinformatics Engineer job openings in Ohio as of August 2026, with employment types broken down into 87% Full Time, 7% Part Time, and 6% Contract. Highlights an 82% Physical, 5% Hybrid, and 13% Remote job distribution, with an average salary of $124,592 per year, or $59.9 per hour.

Wet Lab Protein Engineer

On-site

Other

Medical, Dental, Vision, Retirement

Posted 2 days ago

New


Job description

Worker Type

Regular

Job Description

Biological systems excel at building durable materials capable of withstanding environmental stress. Our biomaterials research translates these natural processes into scalable, high-performance industrial solutions.

We are hiring a Scientist or Engineer to advance key protein and strain engineering initiatives in support of the Biomaterials Branch within the Foundational Technologies Directorate at the Air Force Research Laboratory. The successful candidate will conduct basic and applied research to discover, optimize, and scale enzymes for varied environments, utilizing model and non-model organisms. Key responsibilities include applying modern genetic manipulation techniques and high-throughput screening to isolate candidate proteins and develop host strains. As part of an integrated, cross-functional team, you will collaborate with computational and experimental scientists to engineer biomolecules for the biomanufacturing of precursors, ceramic materials, and other advanced materials.

Key Responsibilities

A successful candidate will have experience in several of the areas below, with knowledge of how-to best interface with experts in areas they are less proficient in. Teaming and collaboration are critical for the role.

Protein & Enzyme Engineering

  • Enzyme Prospecting & Optimization: Rational design, directed evolution, and semi-rational mutagenesis to tailor enzymatic activity and stability under diverse environmental conditions (e.g., pH, temperature, non-aqueous solvents).
  • Structure-Function Characterization: Biochemical assay development, enzyme kinetics, and protein characterization to validate target functionality.
  • Structure-Based Design: Familiarity with computational tools (e.g., AlphaFold, Rosetta) to guide engineering efforts for novel enzymatic pathways.

Strain Engineering & Synthetic Biology

  • Genetic Tool Development: Designing and executing molecular biology protocols including plasmid construction, cloning (Gibson, Golden Gate, Gateway, etc) recombinant expression, CRISPR/gene editing, nucleic acid (DNA/RNA) extraction, and target manipulation, as needed.
  • Metabolic Pathway Engineering: Designing and tuning metabolic pathways to biosynthesize precursor molecules, complex hydrocarbons, and material monomers.
  • High-Throughput Screening (HTS): Designing microplate-based assays, microfluidic workflows, or FACS-based screens to rapidly profile host and enzyme performance.

Bioprocess Development & Material Precursors

  • Biomanufacturing Optimization: Fermentation, scale-up principles, and cultivation strategies tailored to diverse target host systems.

Interdisciplinary & Technical Collaboration

  • Bioinformatics & Data Integration: Collaborating with computational scientists to leverage omics data, predictive modeling, and sequence-function relationships.
  • Cross-Functional Execution: Translating bench-level discoveries into applied biomanufacturing workflows within a multidisciplinary laboratory environment.
Required Qualifications
  • U.S. Citizenship is required due to government facility access requirements.
  • Education: Ph.D. in Chemistry, Biochemistry, Molecular Biology, Bioengineering Biophysics, or a related field with 1-2 years of experience. (Candidates with an M.S. and 4+ years of high-throughput engineering will be considered).
  • Technical Experience:
    • Protein Engineering: Design, optimize, and characterize proteins and biologics using state-of-the-art molecular biology and high-throughput screening techniques. Collaborate cross-functionally to translate engineered proteins into robust, scalable solutions for real-world applications. Demonstrated proficiency in core molecular biology techniques (plasmid construction/cloning, nucleic acid isolation, PCR/qPCR, etc).
    • Proved proficiency in protein expression and purification.
    • Strong quantitative analysis and experimental troubleshooting capabilities.
Preferred Qualifications

Candidates may not possess all of these qualifications; it is expected that they will have experience in some, but not necessarily all, of the listed areas.

  • Automation/High-Throughput Screening: Experience with high-throughput liquid handling robots or automated screening workflows. Demonstrated experience developing and running robust selection/screening assays (e.g., yeast/phage display, plate-based fluorescence, or cell-free translation systems).
  • Bio-Interfacial Modeling: Knowledge of how proteins behave when tethered to solid surfaces (e.g., resin or silica).
  • Library Generation: Hands-on expertise in library construction (e.g., Golden Gate cloning, Gibson Assembly, site-saturation mutagenesis, error-prone PCR).
  • Protein Purification: Familiarity with affinity tag based recombinant protein purification using an FPLC.
  • Mentorship: Demonstrated ability to mentor junior laboratory members and manage multiple concurrent projects.
  • Fermentation Knowledge: Familiarity with bioreactor operation modes during scale-up.
ITAR Requirement

This position requires access to information that is subject to compliance with the International Traffic Arms Regulations (“ITAR”) and/or the Export Administration Regulations (“EAR”). In order to comply with the requirements of the ITAR and/or the EAR, applicants will be asked to provide specific documentation to verify U.S. person status under the ITAR and the EAR. A “U.S. person” according to their definition is a U.S. citizen, U.S. lawful permanent resident (green card holder), or protected individual such as a refugee, or asylee. See 22 CFR § 120.15. Some positions will require current U.S. Citizenship due to contract requirements.

Benefits

AV offers an excellent benefits package including medical, dental vision, 401K with company matching, a 9/80 work schedule and a paid holiday shutdown. For more information about our company benefit offerings please visit: http://www.avinc.com/myavbenefits.

We also encourage you to review our company website at http://www.avinc.com to learn more about us.

Who We Are

Based in California, AeroVironment (AVAV) is a global leader in unmanned aircraft systems (UAS) and tactical missile systems. Founded in 1971 by celebrated physicist and engineer, Dr. Paul MacCready, we’ve been at the leading edge of technical innovation for more than 45 years. Be a part of the team that developed the world’s most widely used military drones and created the first submarine-launched reconnaissance drone, and has seven innovative vehicles that are part of the Smithsonian Institution’s permanent collection in Washington, DC.

Join us today in developing the next generation of small UAS and tactical missile systems that will deliver more actionable intelligence to our customers so they can proceed with certainty - and succeed.

What We Do

Building on a history of technological innovation, AeroVironment designs, develops, produces, and supports an advanced portfolio of unmanned aircraft systems (UAS) and tactical missile systems. Agencies of the U.S. Department of Defense and allied military services use the company’s hand-launched UAS to provide situational awareness to tactical operating units through real-time, airborne reconnaissance, surveillance, and target acquisition.

We are proud to be an EEO/AA Equal Opportunity Employer, including disability/veterans. AeroVironment, Inc. is an Equal Employment Opportunity (EEO) employer and welcomes all qualified applicants. Qualified applicants will receive fair and impartial consideration without regard to race, sex, color, religion, national origin, age, disability, protected veteran status, genetic data, sexual orientation, gender identity or other legally protected status.

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