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Remote Bioinformatician Jobs in Oregon (NOW HIRING)

In this role, you will build the bioinformatics capability within the Data Science development team, establish scalable AWS cloud infrastructure, and ensure the quality and reproducibility of the ...

Natera is seeking an innovative and driven bioinformatics scientist to lead and conduct cutting-edge real-world evidence (RWE) analyses and predictive analytics across oncology, organ health, and ...

Senior Program Manager

OR · On-site +1

$115K - $116K/yr

Remote or On-Site in Boulder, CO (Foresight Dx business unit, a Natera company) Foresight ... We sit at the intersection of molecular biology, bioinformatics, and next-generation sequencing ...

This is a remote-friendly opportunity that can sit in NYC (where our headquarters is located), one of our office hubs, or anywhere else in the US. However, depending upon where the remote work is ...

This is a remote-friendly opportunity that can sit in NYC (where our headquarters is located), one of our office hubs, or anywhere else in the US. However, depending upon where the remote work is ...

Data Scientist

OR · On-site +1

Full remote flexibility. Working at SOSi All interested individuals will receive consideration and will not be discriminated against for any reason.

Data Scientist

OR · On-site +1

Remote work with regular in-person bonding experiences sponsored by the company * Competitive compensation * Holistic perks program (including free therapy, employee wellness, and more) * Excellent ...

Remote Bioinformatician information

What is a remote bioinformatician?

A remote bioinformatician is a professional who applies computational and statistical techniques to analyze biological data, such as DNA, RNA, or protein sequences, while working from a location outside of a traditional office or laboratory. They often use specialized software and programming languages to interpret complex datasets, supporting research in fields like genomics, drug discovery, and personalized medicine. Working remotely allows bioinformaticians to collaborate with teams and institutions worldwide, leveraging digital tools and cloud-based platforms for data analysis and communication.

What are the key skills and qualifications needed to thrive as a remote bioinformatician?

To thrive as a Remote Bioinformatician, you need a strong background in computational biology, statistics, and life sciences, typically supported by a relevant degree (such as bioinformatics, computer science, or biology). Proficiency with programming languages like Python or R, experience with bioinformatics tools (e.g., BLAST, GATK), and familiarity with cloud-based data analysis platforms are essential. Strong problem-solving skills, self-motivation, and effective remote communication set top candidates apart. These skills enable successful analysis of complex biological data, collaboration across distributed teams, and impactful scientific contributions.

How do remote bioinformaticians typically collaborate with research teams and communicate project progress?

Remote bioinformaticians frequently collaborate with multidisciplinary teams using digital communication tools such as Slack, Zoom, and project management platforms. Regular virtual meetings and clear documentation ensure alignment on project goals, data analysis progress, and results interpretation. Effective remote collaboration often requires proactive communication and timely updates to overcome the lack of in-person interaction. Building strong relationships with colleagues and maintaining transparency are key to successful teamwork in a remote setting.

What is the difference between Remote Bioinformatician vs Remote Data Scientist?

AspectRemote BioinformaticianRemote Data Scientist
Required credentialsBachelor's or Master's in Bioinformatics, Biology, or related fields; experience with biological data analysisBachelor's or Master's in Data Science, Computer Science, or related fields; strong statistical and programming skills
Work environmentResearch labs, biotech companies, healthcare institutions, often collaborativeTech companies, finance, healthcare, often project-based and cross-industry
Employer usageResearch-focused organizations, biotech firms, academic institutionsTech firms, consulting agencies, large corporations

Remote Bioinformaticians primarily analyze biological data in research and healthcare settings, requiring specialized biological knowledge. Remote Data Scientists work across various industries, focusing on extracting insights from diverse data types. While both roles involve data analysis and programming, the Bioinformatician emphasizes biological context, whereas the Data Scientist has a broader industry application.

Are remote bioinformaticians in demand?

Remote bioinformaticians are in high demand due to the growth of genomics, personalized medicine, and data-driven research. Employers seek professionals skilled in programming, statistical analysis, and tools like R and Python, often offering flexible work arrangements to meet project needs.

What are the most commonly searched types of Bioinformatician jobs in Oregon?

The most popular types of Bioinformatician jobs in Oregon are:

What are popular job titles related to Remote Bioinformatician jobs in Oregon?

For Remote Bioinformatician jobs in Oregon, the most frequently searched job titles are:

Lead Bioinformatician (cfDNA Algorithms and Pipelines)

Natera

OR • On-site, Remote

Full-time

Posted 24 days ago


Key responsibilities

  • Build and implement algorithms for detecting variants such as SNVs, Indels, CNVs, and SVs in sequencing data.

  • Provide genomics algorithm insights to support panel and assay development, including defining approaches for analytically difficult genes and edge cases.

  • Serve as a genomics consultant during complex production escalations, identifying biological versus analytical causes and contributing to durable solutions.


Natera rating

7.8

Company rating: 7.8 out of 10

Based on 39 frontline employees who took The Breakroom Quiz

55th of 121 rated laboratories


Job description

Natera is seeking a Lead Bioinformatician to advance the algorithmic foundations of our diagnostic assays supporting Women's and Organ health. This is an individual contributor role. You will bring the genomics expertise the team needs to pull reliable signals out of sequencing data that is often ambiguous.

You will build the methodological foundations and implement the algorithms needed for detecting variants (SNVs, Indels, CNVs, SVs) that are hard to call accurately in low fraction (fetal, donor cfDNA) samples. The ideal candidate will have deep experience in algorithmic genomics, strong programming skills, and a passion for developing scalable, clinically impactful computational tools.

Primary Responsibilities:

Panel and Assay Science: Provide genomics algorithm insights to our expanded panel roadmap, including which genes are worth considering and why, working with Product, the Laboratory Directors, and Research, who own that decision jointly. Help define the approach for analytically difficult genes and assay edge cases, and weigh what is scientifically defensible against what is technically possible.

Caller Strategy and Method Development: Define the computational strategy for new targeted and special-purpose callers. Help decide when a new caller is justified and when an existing method should be extended instead. Prototype and benchmark new methods, and work with the engineering team to get methods into production.

Scientific Investigation and Escalation: Serve as a genomics consultant on complex production escalations, separating biological causes from analytical and pipeline ones. Recognize when a result looks suspicious because of where the reads came from and not because the analysis went wrong. Turn one-off investigations into durable rules and design changes that reduce repeat work.

Data Quality and Cross-functional Partnership: Act as bioinformatics liaison with Variant Management, Reporting, and Laboratory Operations on data quality, variant representation, and system integration. Provide the scientific rationale that the accountable Quality and Laboratory functions rely on when they decide a method is ready to deploy.

Ways of Working: Help define what correct looks like for AI-assisted scientific investigation, for example what an agent may and may not conclude from a region-level finding without a human signing off. We do not screen for prior experience with these tools, and many strong candidates come from environments where they were restricted; we provide the tooling and the ramp time.

What success looks like after a year:
  • Contributed to the scientific and bioinformatics rationale of product roadmaps.
  • Deployment-readiness criteria for new analysis methods exist and are in use, and you have contributed to at least one new or extended caller yourself.
  • You take on the bioinformatics aspects inside complex production investigations without waiting to be assigned them.
  • Other groups know they can bring genomics questions about our assays to you.
Qualifications:
  • Degree in Bioinformatics, Computational Biology, Bioinformatics, Human Genetics, or a related field. We do not require a Ph.D. or M.S.: equivalent depth built through work counts fully.
  • 4+ years analyzing short-read sequencing data for screening or diagnostic applications, preferably in a regulated, accredited, or production-adjacent setting. We count relevant experience from the point your work became substantially independent, however you got there.
  • Experience contributing to the bioinformatics workflows behind a sequencing assay or panel.
  • Experience seeing a complex investigation through to resolution across biological, analytical, and systems-level causes.
Knowledge, Skills, and Abilities:What we are screening for
  • Experience developing, validating, or benchmarking bioinformatics methods (e.g. SNVs, CNVs, SVs), particularly for analytically difficult regions.
  • Proficient in Python with demonstrated experience prototyping bioinformatics tools or callers.
  • Enough human genetics depth to contribute to the panel design: variant spectrum, population frequency, and where compromises on accuracy can (and cannot) be made.
  • Familiarity with identifying regions where short reads cannot be placed with confidence: homologous sequence and pseudogenes, low-complexity and repeat structure, and copy-number-heavy regions.
  • Experience contributing to study designs or performance criteria for a bioinformatics analysis method.
Strong candidates may also have
  • Direct non-invasive prenatal, reproductive, or carrier screening experience.
  • Experience with cfDNA, or with another application where the molecules you care about are a small minority of what was sequenced.
  • Experience developing algorithms for both short-read and long-read sequencing platforms (e.g., Illumina, ONT, PacBio).
  • Cross-functional credibility with genetic counseling, variant management, reporting, and production-adjacent groups.
  • Experience in an accredited or high-complexity laboratory, or familiarity with production support or escalation processes.

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